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@Plasma-derived atomic hydrogen enables Eley-Rideal-type CO2 methanation at low temperature. JACS Au, ASAPiDOIF10.1021/jacsau.4c00857jB‚Ü‚½A–{Œ¤‹†ŠÖ˜A‹LŽ–‚ª2024”N11ŒŽ21“ú•t“ú–{ŒoÏV•·“dŽq”łɌfÚ‚³‚ê‚Ü‚µ‚½BiXV“úF2024”N11ŒŽ22“ú)
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- ’†–ìŠÂ‹³Žöi‚•ªŽq‹@”\‰ÈŠwŒ¤‹†•”–åj‚Ɖi’¼•¶‹³ŽöiŽÅ‰YH‹Æ‘åŠwj‚Ì‹¤“¯Œ¤‹†‚̬‰Ê‚ªƒvƒŒƒXƒŠƒŠ[ƒX‚³‚ê‚Ü‚µ‚½BuBringing the Kelvin problem solutions to life with the first-ever polymeric Weaire-Phelan structuresv(XV“úF2022”N12ŒŽ2“ú)
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- uCO2‚ð—˜—p‚µ‚½ƒvƒƒpƒ“Ž_‰»’E…‘f‚É—LŒø‚ÈG”}‚ðŠJ”viŒÃìX–çy‹³Žö/G”}Þ—¿Œ¤‹†•”–å)
Ternary platinum-cobalt-indium nanoalloy on ceria as a highly efficient catalyst for the oxidative dehydrogenation of propane using CO2. Nature Catalysis, 2022, 5, 55-65. ˜_•¶i‰{——ê—p”Åj‚Ö‚ÌƒŠƒ“ƒN(XV“úF2022”N1ŒŽ28“ú) - ÂFLED‚ÌŒõ‚ŋ쓮‚·‚éƒNƒƒXƒJƒbƒvƒŠƒ“ƒO”½‰ž‚ðŠJ”BàV‘º³–狳Žöi–k‘å—Šw•”EWPI-ICReDDjA’·’Jì~–狳ŽöiG”}—˜_Œ¤‹†•”–åj‚Ƃ̋¤“¯Œ¤‹†‚̬‰Ê‚Å‚·B(XV“úF2022”N1ŒŽ17“ú)
- G”}ƒrƒbƒOƒf[ƒ^‚©‚çuG”}¢ŠE’n}v‚ð•`ŽÊiûü‹´Œ[‰îy‹³Žö/ŽYŠwН˜AŒgG”}Œ¤‹†ƒ†ƒjƒbƒgjBConstructing Catalyst Knowledge Networks from Catalysts Big Data in Oxidative Coupling for Methane for Designing Catalysts. Chem. Sci. 2021, Advance Article. (DOI: 10.1039/D1SC04390K).(XV“úF2021”N9ŒŽ27“ú)
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- ‚PƒJŒŽŠÔˆÀ’è‚É‹@”\‚·‚éƒvƒƒpƒ“’E…‘fG”}‚ðŠJ”iŒÃìX–çy‹³Žö/G”}Þ—¿Œ¤‹†•”–å)BDoubly Decorated Platinum–Gallium Intermetallics as Stable Catalysts for Propane Dehydrogenation. Angewandte Chemie International Edition, 2021, in press.(DOI:10.1002/anie.202107210)(XV“úF2021”N7ŒŽ28“ú)
- ƒnƒCƒXƒ‹[ƒvƒbƒgŽÀŒ±‚ÆG”}ƒCƒ“ƒtƒHƒ}ƒeƒBƒNƒX‚ªŽÀŒ»‚·‚éƒ[ƒ‚©‚ç‚ÌG”}ÝŒvBG”}‰ÈŠwŒ¤‹†Š•‘®G”}˜AŒgŒ¤‹†ƒZƒ“ƒ^[EŽYŠwН˜AŒgG”}Œ¤‹†ƒ†ƒjƒbƒg‚Ì‚‹´Œ[‰îæ¶‚ªAACS Catalysis‚ÉŒ¤‹†¬‰Ê‚ð”•\‚³‚ê‚Ü‚µ‚½BLearning Catalyst Design Based on Bias-Free Data Set for Oxidative Coupling of Methane. ACS Catal. 2021, 11, 1797–1809. iXV“úF2021”N1ŒŽ29“ú)
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- ‘N“x•ÛŽ‹Zp‚ÌŠˆ—p‚É‚æ‚é•à—¯‚Ü‚èŒüã‚ð–ÚŽw‚·ƒt[ƒhƒƒX팸ƒRƒ“ƒ\[ƒVƒAƒ€‚ðÝ—§`H•i‚Ì”pŠüƒƒX팸‚É‚æ‚Á‚ÄSDGs‚ÉvŒ£`i•Ÿ‰ª~‹³Žö/•¨Ž¿•ÏŠ·Œ¤‹†•”–åj–{Œ¤‹†ŠÖ˜A‹LŽ–‚ª2020”N9ŒŽ29“ú•t “úŒo‘¬•ñƒjƒ…[ƒXA2020”N9ŒŽ30“ú ƒŠƒAƒ‹ƒGƒRƒmƒ~[A2020”N9ŒŽ30“ú•t –kŠC“¹V•·’©Š§‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiXV“úF2020”N10ŒŽ2“ú)
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Isolated Indium Hydrides in CHA Zeolites: Speciation and Catalysis for Nonoxidative Dehydrogenation of Ethane, J. Am. Chem. Soc., in press. (DOI: 10.1021/jacs.9b13865)iXV“úF2020”N3ŒŽ6“ú)
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- Vidyasirimedhi Institute of Science and Technology(VISTEC)‚ÌSareeya Bureekaewæ¶‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†i20B1001j‚̬‰Ê‚ðJournal of Molecular Liquids‚É”•\‚³‚ê‚Ü‚µ‚½BMD Studies of Methanol Confined in the Metal-Organic Framework MOF MIL-88B-Cl, J. Mol. Liq. 2022, In Press. (DOI: 10.1016/j.molliq.2022.119252)(XV“úF2022”N5ŒŽ13“ú)
- _“Þì‘åŠw Îì—Žj•‹³‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê‚ðJournal of the American Chemical Society‚É”•\‚³‚ê‚Ü‚µ‚½BOxidation Catalysis over Solid-State Keggin-Type Phosphomolybdic Acid with Oxygen Defects,J. Am. Chem. Soc. 2022. (DOI:10.1021/jacs.2c00125)(XV“úF2022”N5ŒŽ10“ú)
- Žº—–H‹Æ‘åŠw _“cN°‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê‚ðJournal of Catalysis‚É”•\‚³‚ê‚Ü‚µ‚½BEnhancement of the hydrodesulfurization and C−S bond cleavage activities of rhodium phosphide catalysts by platinum addition,Journal of Catalysis. 2022. (DOI:10.1016/j.jcat.2022.03.001)(XV“úF2022”N5ŒŽ10“ú)
- “Œ‹ž—‰È‘åŠw ’å´³²uŽt‚ç‚̃Oƒ‹[ƒv‚ª‹¤“¯—˜—pE‹¤“¯ Œ¤‹†‚̬‰Ê‚ðJournal of the American Chemical Society‚É”•\‚³‚ê‚Ü‚µ‚½BSuper Mg2+ Conductivity around 10–3 S cm–1 Observed in a Porous Metal–Organic Framework,J. Am. Chem. Soc. 2022. (DOI: 10.1021/jacs.2c01612)(XV“úF2022”N5ŒŽ10“ú)
- Utrecht University 㑺—m•½”ŽŽm‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi18A1005j‚ðThe Journal of Physical Chemistry Letters‚É”•\‚³‚ê‚Ü ‚µ‚½BHole Dynamics in Photoexcited Hematite Studied with Femtosecond Oxygen K-edge X-ray Absorption Spectroscopy,J. Phys. Chem. Lett. 2022.(DOI:10.1021/acs.jpclett.2c00295).(XV“úF2022”N5ŒŽ10“ú)
- ‘åã•{—§‘åŠw@‰ª“cŒ’Žiy‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi21B1019)‚ðAngew. Chem. Int. Ed.‚É”•\‚³‚ê‚Ü‚µ‚½BGuest Alignment and Defect Formation during Pore Filling in Metal-Organic Framework Films, 2022,e202201725.(XV“úF2022”N5ŒŽ9“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä’¹‰®”ö—²•‹³iG”}Þ—¿Œ¤‹†•”–åj‚̘_•¶‚ª”•\‚³‚ê‚Ü‚µ‚½BEffect of oxygen storage materials on the performance of Pt-based three-way catalysts. Catal. Sci. Technol., 2022,Advance Article. (DOI: 10.1039/D2CY00469K)(XV“úF2022”N4ŒŽ28“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚ÄŽRŒû–¾Œ[y‹³Žöi•ºŒÉŒ§—§‘åŠwj‚ª˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½BIn situ fluorescence yield soft X-ray absorption spectroscopy of electrochemical nickel deposition processes with and without ethylene glycol, RSC Advances, 2022. (DOI: 10.1039/D2RA01050J)(XV“úF2022”N4ŒŽ11“ú)
- “Œ‹žH‹Æ‘åŠw ‹{ú±‰ë‹`•‹³‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi21A1002)‚ðJournal of the American Chemical Society‚É”•\‚³‚ê‚Ü‚µ‚½BHexagonal BaTiO(3-x)Hx Oxyhydride as a Water-Durable Catalyst Support for Chemoselective Hydrogenation, J. Am. Chem. Soc. 2022. (DOI: 10.1021/jacs.2c00976)(XV“úF2022”N4ŒŽ11“ú)
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- ’†“‡y‹³Žö‚ªAEindhoven University of Technology‚ÌEmiel J.M. Hensen‹³Žö‚Ƃ̋¤“¯—˜—pE‹¤“¯Œ¤‹†(20A1002)‚̬‰Ê‚ðChemCatChemނɔ•\‚³‚ê‚Ü‚µ‚½BA Catalytic Strategy for Selective Production of 5-Formylfuran-2-carboxylic Acid and Furan-2,5-dicarboxylic Acid. ChemCatChem, 2022, e202200191.(XV“úF2022”N3ŒŽ29“ú)
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- Eindhoven University of Technology ‚ÌEmiel J.M. Hensen‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20A1002)‚̬‰Ê‚ðACS Sustainable Chemistry & Engineeringނɔ•\‚³‚ê‚Ü‚µ‚½BProtection Strategies for the Conversion of Biobased Furanics to Chemical Building Blocks. ACS Sustainable Chem. Eng. 2022, ASAP. (DOI: 10.1021/acssuschemeng.1c06723)(XV“úF2022”N3ŒŽ2“ú)
- ‹ãB‘åŠw ù–ØŒ\Žq‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi18A1001,19B1002, 20A1001, 21A1001)‚ðJournal of Alloys and Compounds‚É”•\‚³‚ê‚Ü‚µ‚½BFabrication of graphitic carbon nitride/ZnTi-mixed metal oxide heterostructure: Robust photocatalytic decomposition of ciprofloxacin. J.Alloys Compd., 2022, 15, 164294.(XV“úF2022”N3ŒŽ1“ú)
- ‘åã‘åŠw ŽRŒû•‹³‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi21B1005)‚ðJACS Au‚É”•\‚³‚ê‚Ü‚µ‚½BSelective Hydrodeoxygenation of Esters to Unsymmetrical Ethers over a Zirconium Oxide-Supported Pt–Mo Catalyst. JACS Au, 2022. (DOI: 0.1021/jacsau.1c00535)(XV“úF2022”N2ŒŽ28“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä‘å—F—ºˆêy‹³Žöi–kŠC“¹‘åŠw‘åŠw‰@’n‹…ŠÂ‹«‰ÈŠwŒ¤‹†‰@EŠÂ‹«‰ÈŠw‰@j‚ª˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½BA rapid synthesis of Hf-Beta zeolite as highly active catalyst for Meerwein-Ponndorf-Verley reduction by controlling water content of precursor gel. Microporous Mesoporous Mater. 2022, In Press. (DOI: 10.1016/j.micromeso.2022.111743)(XV“úF2022”N2ŒŽ15“ú)
- ’†“‡y‹³Žö‚ªAEindhoven University of Technology‚ÌEmiel J.M. Hensen‹³Žö‚Ƃ̋¤“¯—˜—pE‹¤“¯Œ¤‹†(20A1002)‚̬‰Ê‚ðChemSusChemނɔ•\‚³‚ê‚Ü‚µ‚½BEffective Oxidation of (5-Hydroxymethyl)furfural to 2,5-Diformylfuran by an Acetal Protection Strategy. ChemSusChem 2022, e202200059.(XV“úF2022”N2ŒŽ14“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä´…Œ¤ˆê‹³ŽöiG”}Þ—¿Œ¤‹†•”–åj‚̘_•¶‚ª”•\‚³‚ê‚Ü‚µ‚½BContinuous CO2 Capture and Selective Hydrogenation to CO over Na-Promoted Pt Nanoparticles on Al2O3. ACS Catal. 2022, 12, 2639−2650.(XV“úF2022”N2ŒŽ14“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä’¹‰®”ö—²•‹³iG”}Þ—¿Œ¤‹†•”–åj‚̘_•¶‚ª”•\‚³‚ê‚Ü‚µ‚½BRole of Ba in an Al2O3-Supported Pd-based Catalyst under Practical Three-Way Catalysis Conditions. ChemCatChem 2022, e202101462.(XV“úF2022”N2ŒŽ7“ú)
- ŠÖ¼‘åŠw ‘å“´NŽk‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê‚ðChemCatChem‚É”•\‚µ‚Ü‚µ‚½BN,N-Dimethylformamide-protected Fe2O3 Combined with Pt Nanoparticles: Characterization and Catalysis in Alkene Hydrosilylation. ChemCatChem 2022,14, e2021016.(XV“úF2022”N2ŒŽ7“ú)
- ‹ãB‘åŠw ù–ØŒ\Žq‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi18A1001, 19B1002, 20A1001, 21A1001)‚ðJournal of Industrial and Engineering Chemistry‚É”•\‚³‚ê‚Ü‚µ‚½BFabrication of visible-light-active ZnCr mixed metal oxide/fly ash for photocatalytic activity toward pharmaceutical waste ciprofloxacin. J. Ind. Eng. Chem. 2022. (DOI: 10.1016/j.jiec.2022.01.006)(XV“úF2022”N1ŒŽ25“ú)
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- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä’©‘q´ûü‹³ŽöiG”}•\–ÊŒ¤‹†•”–åj‚̘_•¶‚ª”•\‚³‚ê‚Ü‚µ‚½BAbnormal Metal Bond Distances in PtAu Alloy Nanoparticles: In Situ Back-Illumination XAFS Investigations of the Structure of PtAu Nanoparticles on a Flat HOPG Substrate Prepared by Arc Plasma Deposition, J. Phys. Chem. C 2022. (DOI: 10.1021/acs.jpcc.1c08393)(XV“úF2022”N1ŒŽ17“ú)
- ‘åã‘åŠw –ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê(21A1005)‚ðJACS Au‚É”•\‚³‚ê‚Ü‚µ‚½BPhosphorus-Alloying as a Powerful Method for Designing Highly Active and Durable Metal Nanoparticle Catalysts for the Deoxygenation of Sulfoxides: Ligand and Ensemble Effects of Phosphorus. JACS Au. 2022. (DOI: 10.1021/jacsau.1c00461)(XV“úF2022”N1ŒŽ12“ú)
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- ‘åã‘åŠw ¯–{—zˆêy‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê‚ðCommunications Chemistry‚É”•\‚³‚ê‚Ü‚µ‚½BA boron-transfer mechanism mediating the thermally induced revival of frustrated carbene–borane pairs from their shelf-stable adducts. Comm. Chem. 2021, 4, 137.(XV“úF2021”N9ŒŽ29“ú)
- Vidyasirimedhi Institute of Science and Technology (VISTEC)‚Ì ¬ì½‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹† (21B1013)‚̬‰Ê‚ðChem. Commun. ‚É”•\‚³‚ê‚Ü‚µ‚½BMechanochemical syntheses of all-inorganic iodide perovskites from layered cesium titanate and bismuth (and antimony) iodide. Chem. Commun. 2021, Advance Article. (DOI: 10.1039/D1CC03615G)(XV“úF2021”N9ŒŽ24“ú)
- ŒF–{‘åŠw ’–ŒÒ —Y‰î•‹³‚Ƃ̋¤“¯—˜—pE‹¤“¯Œ¤‹†(19B1020, 20B1021)‚̬‰Ê‚ªACS Catalysis‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BAnalogous Mechanistic Features of NH3-SCR over Vanadium Oxide and Copper Zeolite Catalysts. ACS Catal. 2021, 11, 11180-11192.(XV“úF2021”N8ŒŽ30“ú)
- “Œ‹žˆã‰ÈŽ•‰È‘åŠw ˜a“cŒhL•‹³‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(18B1006)‚̬‰Ê‚ðClinical Oral Investigations‚É”•\‚³‚ê‚Ü‚µ‚½BInfluence of 10-methacryloyloxydecyl dihydrogen phosphate (MDP) incorporated experimental cleaners on the bonding performance of saliva-contaminated zirconia ceramic. Clin Oral Invest. 2021. (DOI:10.1007/s00784-021-04153-7)(XV“úF2021”N8ŒŽ25“ú)
- Monash‘åŠw Akshat Tanksale y‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(19A1005)‚̬‰Ê‚ðJournal of Energy Chemistry‚É”•\‚³‚ê‚Ü‚µ‚½BDimethoxymethane production via CO2 hydrogenation in methanol over novel Ru based hierarchical BEA. J. Energy Chem. 2022, 66, 181–189.(XV“úF2021”N8ŒŽ24“ú)
- L“‡‘åŠw ’Öì’n’¼•‹³‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(19A1001, 20B1004)‚Æ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ðPhys. Chem. Chem. Phys.‚É”•\‚³‚ê‚Ü‚µ‚½BLocal structure and NO
adsorption/desorption property of Pd2+ cations at different paired Al sitesin CHA zeolite. Phys. Chem. Chem. Phys., 2021, Advance Article. (DOI:10.1039/D1CP02668B)(XV“úF2021”N8ŒŽ24“ú) - •¨Ž¿•ÏŠ·Œ¤‹†•”–å@¬—Ñæ¶‚̘_•¶‚ªPhysical Chemistry Chemical Physics‚ÉŒfÚ‚³‚êAƒJƒo[ƒA[ƒg‚Æ‚µ‚Ä‘Io‚³‚ê‚Ü‚µ‚½B
Impact of tensile and compressive forces on the hydrolysis of cellulose and chitin. Phys. Chem. Chem. Phys., 2021, 23, 15908-15916.iXV“úF2021”N8ŒŽ5“ú) - ‘åã‘åŠw –ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(21A1005)‚̬‰Ê‚ðACS Sustain. Chem. Eng.‚É”•\‚³‚ê‚Ü‚µ‚½BHydrotalcite-Supported Cobalt Phosphide Nanorods as a Highly Active and Reusable Heterogeneous Catalyst for Ammonia-Free Selective Hydrogenation of Nitriles to Primary Amines. ACS Sustain. Chem. Eng. 2021.(DOI: 10.1021/acssuschemeng.1c03667)(XV“úF2021”N8ŒŽ4“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä‹ž“s‘åŠw ˆ¢•”—³‹³Žö‚ª˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½BRhOx cocatalyst for efficient water oxidation over TaON photoanodes in wide pH range under visible-light irradiation. J. Photochem. Photobiol., A 2021, In Press.(DOI: 10.1016/j.jphotochem.2021.113463 )(XV“úF2021”N8ŒŽ3“ú)
- Vidyasirimedhi Institute of Science and Technology (VISTEC)‚Ì ¬ì½‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹† (21B1013)‚̬‰Ê‚ðChem. Commun. ‚É”•\‚³‚ê‚Ü‚µ‚½BFormation of BiOX (X=Cl and Br) in a mesoporous silica by the infiltration of Bi salts and the subsequent reaction with HX vapor. Chem. Commun. 2021, Article in Press. (DOI: 10.1039/D1CC03138D)(XV“úF2021”N7ŒŽ27“ú)
- ƒhƒŒƒXƒfƒ“H‰È‘åŠw‚Ì Dr. Andreas Schneemann‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1030)‚̬‰Ê‚ðDalton Trans.‚É”•\‚³‚ê‚Ü‚µ‚½BAlkyl decorated metal–organic frameworks for selective trapping of ethane from ethylene above ambient pressures. 2021, Advance Article.(DOI: 10.1039/D1DT01477C)(XV“úF2021”N7ŒŽ19“ú)
- ‘åã‘åŠw –ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(21A1005)‚̬‰Ê‚ðEur. J. Inorg. Chem.‚É”•\‚³‚ê‚Ü‚µ‚½BEfficient D-Xylose Hydrogenation to D-Xylitol over a Hydrotalcite-Supported Nickel Phosphide Nanoparticle Catalyst. Eur. J. Inorg. Chem. 2021.(DOI: 10.1002/ejic.202100432)(XV“úF2021”N7ŒŽ13“ú)
- “Œ–k‘åŠw åM‰º”¿æ¶‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê‚ðIndustrial & Engineering Chemistry Research‚É”•\‚µ‚Ü‚µ‚½BMechanochemical Route for Preparation of MFI-Type Zeolites Containing Highly Dispersed and Small Ce Species and Catalytic Application to Low-Temperature Oxidative Coupling of Methane. 2021, in press. (DOI:10.1021/acs.iecr.1c01664)(XV“úF2021”N7ŒŽ13“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä‘åã‘åŠw —LàVŒõO‹³Žö‚ª˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½BPreparation of a platinum nanoparticle catalyst located near photocatalyst titanium oxide and its catalytic activity to convert benzyl alcohols to the corresponding ethers. RSC Adv., 2021, 11, 22230-22237.(XV“úF2021”N6ŒŽ30“ú)
- ‘åã•{—§‘åŠw ‰ª“cŒ’Žiy‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(21B1019)‚̬‰Ê‚ðChemical Science‚É”•\‚³‚ê‚Ü‚µ‚½BInfrared crystallography for framework and linker orientation in metal–organic framework films. Chem. Sci. 2021, Advance Article.(DOI: 10.1039/D1SC02370E)(XV“úF2021”N6ŒŽ22“ú)
- ŽR—z¬–ì“cŽs—§ŽRŒû“Œ‹ž—‰È‘åŠw `Tˆêæ¶‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹† (20B1034)‚̬‰Ê‚ðColloid and Interface Science Communications‚É”•\‚³‚ê‚Ü‚µ‚½BPd nanoparticles on zeolite imidazolide framework-8: Preparation, characterization, and evaluation of fixed-bed hydrogenation activity toward isomeric nitrophenols. Colloids Interface Sci. Commun. 2021, 43, 100446.(XV“úF2021”N6ŒŽ15“ú)
- Vidyasirimedhi Institute of Science and Technology (VISTEC)‚Ì Sareeya Bureekaewæ¶‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹† (20B1001)‚̬‰Ê‚ðInorganic Chemistry‚É”•\‚³‚ê‚Ü‚µ‚½BBandgap Modulation in Zr-Based Metal–Organic Frameworks by Mixed-Linker Approach. Inorg. Chem. 2021. In Press. (DOI: 10.1021/acs.inorgchem.1c00792)(XV“úF2021”N6ŒŽ15“ú)
- “Œ‹ž“s—§‘åŠw ‘ºŽR“Á”C‹³Žö‚ç‚Æ‚Ì‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi20B1021)‚ªNature Communications‚ÌEditors' Highlights‚É‘Io‚³‚ê‚Ü‚µ‚½B(XV“úF2021”N6ŒŽ9“ú)
- _“Þì‘åŠw Îì—Žjæ¶‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(18A1002)‚̬‰Ê‚ðChemcatchem‚É”•\‚³‚ê‚Ü‚µ‚½BNb−V Mixed Oxide with a Random Assembly of Pentagonal Units: A Catalyst for Oxidative Dehydrogenation of Ethane and Propane. Chemcatchem 2021,13, 1-9.(XV“úF2021”N6ŒŽ3“ú)
- “Œ‹ž‘åŠw ¬‘q Œ«‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(19B1020)‚̬‰Ê‚ðCatalysis Science & Technology‚É”•\‚³‚ê‚Ü‚µ‚½BKinetic and spectroscopic insights into the behaviour of Cu active site for NH3-SCR over zeolites with several topologies. Catal. Sci. Technol. 2021, 11, 2718-2733.(XV“úF2021”N6ŒŽ3“ú)
- ‹ãB‘åŠw ù–ØŒ\Žq‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(18A1001, 19B1002, 20A1001)‚̬‰Ê‚ðChemical Engineering Journal‚É”•\‚³‚ê‚Ü‚µ‚½BSingle-step synthesis of oxygen-doped hollow porous graphitic carbon nitride for photocatalytic ciprofloxacin decomposition. Chem. Eng. J. 2021, In Press. (DOI: 10.1016/j.cej.2021.130502)(XV“úF2021”N6ŒŽ1“ú)
- Vidyasirimedhi Institute of Science and Technology (VISTEC) Sareeya Bureekaewæ¶‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1001)‚̬‰Ê‚ðJournal of Physical Chemistry C‚É”•\‚³‚ê‚Ü‚µ‚½BMolecular Insight into the Swelling of a MOF: A Force-Field Investigation of Methanol Uptake in MIL-88B(Fe)–Cl. J. Phys. Chem. C. 2021, In Press. (DOI: 10.1021/acs.jpcc.1c01033)(XV“úF2021”N6ŒŽ1“ú)
- G”}•\–ÊŒ¤‹†•”–å ‚‘–Ø’Bæ¶‚ÌŒ¤‹†¬‰Ê‚ªJournal of Physical Chemistry C‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½B\‘¢‚Ì‹K’肳‚ê‚é’PŒ‹»Ž_‰»•¨‚ðŽg‚¢A¢ŠE‚ʼn‚ß‚ÄOperando XAFS‚É‚æ‚èA”½‰žðŒ‰º‚ÅPtƒiƒm—±Žq‚ÌŠˆ«“_‚Æ\‘¢•ω»‚𑨂¦‚Ü‚µ‚½BDevelopment of Operando Polarization-Dependent Total Reflection Fluorescence X-ray Absorption Fine Structure Technique for Three-Dimensional Structure Determination of Active Metal Species on a Model Catalyst Surface under Working Conditions. J. Phys. Chem. C 2021.(DOI: 10.1021/acs.jpcc.1c02913)iXV“úF2021”N5ŒŽ31“ú)
- •¨Ž¿Þ—¿Œ¤‹†‹@\ ˆäo—T‰îŽåвŒ¤‹†ˆõ‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(17B1016)‚̬‰Ê‚ðApplied Catalysis B: Environmental‚É”•\‚³‚ê‚Ü‚µ‚½BIn Situ Blue Titania via Band Shape Engineering for Exceptional Solar H2 Production in Rutile TiO2. Appl. Catal., B 2021, In Press.iDOI: 10.1016/j.apcatb.2021.120380j(XV“úF2021”N5ŒŽ25“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä‹ž“s‘åŠw‹g“cŽõ—Y‹³Žö‚ª˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½BObservation of Adsorbed Hydrogen Species on Supported Metal Catalysts by Inelastic Neutron Scattering. Top. Catal. 2021, In Press.iDOI: 10.1007/s11244-021-01448-7j(XV“úF2021”N5ŒŽ25“ú)
- “Œ–k‘åŠw ¬“ˆ—²K•‹³‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1006, 21A1004)‚̬‰Ê‚ðRSC Advances‚É”•\‚³‚ê‚Ü‚µ‚½BSynthesis of Co2FeGe Heusler alloy nanoparticles and catalysis for selective hydrogenation of propyne. RSC Adv. 2021,11, 18074-18079.(XV“úF2021”N5ŒŽ25“ú)
- ‘åã‘åŠw –ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1027)‚̬‰Ê‚ðScientific Reports‚É”•\‚³‚ê‚Ü‚µ‚½BA nickel phosphide nanoalloy catalyst for the C-3 alkylation of oxindoles with alcohols. Sci. Rep. 2021,11, 10673.(XV“úF2021”N5ŒŽ24“ú)
- ƒo[ƒWƒjƒAH‰È‘åŠwAyman M. Karimæ¶‚ª‹¤“¯Œ¤‹†i20A1004j‚̬‰Ê‚ðJ. Phys. Chem. C‚É”•\‚³‚ê‚Ü‚µ‚½BReduction and Agglomeration of Supported Metal Clusters Induced by High-Flux X-ray Absorption Spectroscopy Measurements. J. Phys. Chem. C, 2021. (DOI: 10.1021/acs.jpcc.1c01823)(XV“úF2021”N5ŒŽ18“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä–kŠC“¹‘åŠw‘åŠw‰@HŠwŒ¤‹†‰@’†“‡ˆê‹Iy‹³Žö‚ª˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½BFabrication of silica on chitin in ambient conditions using silicatein fused with a chitin-binding domain, Bioprocess and Biosystems Engineering, 2021. (DOI: https://doi.org/10.1007/s00449-021-02568-w) (XV“ú 2021”N5ŒŽ17“ú)
- Marcin Janczarekæ¶iPoznan University of Technologyj‚ÆEwa Kowalskay‹³ŽöiŒõG”}‰ÈŠwŒ¤‹†•”–åj‚Ì‹¤“¯Œ¤‹†‚̬‰Ê‚ªCatalysts‚Ìfeature paperAƒtƒƒ“ƒgƒJƒo[‚É‘Io‚³‚ê‚Ü‚µ‚½BComputer Simulations of Photocatalytic Reactors. Catalysts, 2021, 11, 198. (XV“úF2021”N5ŒŽ7“ú)
- Marcin Janczarekæ¶iPoznan University of Technologyj‚ÆEwa Kowalskay‹³ŽöiŒõG”}‰ÈŠwŒ¤‹†•”–åj“™‚Ì‹¤“¯Œ¤‹†‚̬‰Ê‚ªJournal of Materials Chemistry A‚̃oƒbƒNƒJƒo[‚É‘Io‚³‚ê‚Ü‚µ‚½BOn the mechanism of photocatalytic reactions on CuxO@TiO2 core–shell photocatalysts. J. Mater. Chem. A, 2021, 9, 10135-10145(XV“úF2021”N5ŒŽ6“ú)
- ‘åã‘åŠw –ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1027)‚̬‰Ê‚ðACS Sustainable Chemistry & Engineering‚É”•\‚³‚ê‚Ü‚µ‚½BSupport-Boosted Nickel Phosphide Nanoalloy Catalysis in the Selective Hydrogenation of Maltose to Maltitol. ACS Sustainable Chem. Eng. 2021, just accepted. (DOI: 10.1021/acssuschemeng.1c00447)(XV“úF2021”N4ŒŽ21“ú)
- _ŒË‘åŠw ‘å¼—m‹³Žö‚ª‹¤“¯—˜—p‚̬‰Ê‚ðPhysical Chemistry Chemical Physics‚É”•\‚µ‚Ü‚µ‚½BThe role of the shell in core–shell-structured La-doped NaTaO3 photocatalysts. Phys. Chem. Chem. Phys. 2021, 23, 8868-8879.(XV“úF2021”N4ŒŽ19“ú)
- ¬æü‘åŠw ‘哇ˆê^æ¶‚ª‹¤“¯Œ¤‹†i20B1010j‚̬‰Ê‚ðJ. Phys. Chem. C‚É”•\‚³‚ê‚Ü‚µ‚½BMechanochemical Effect in Mixing Sponge Copper with Amorphous ZrO2 Creates Effective Active Sites for Methanol Synthesis by CO2 Hydrogenation. J. Phys. Chem. C, 2021. (DOI:10.1021/acs.jpcc.0c10917)(XV“úF2021”N4ŒŽ13“ú)
- “Œ‹žH‹Æ‘åŠw ‚ŽR‘åŠÓæ¶‚ª‹¤“¯Œ¤‹†i19B1005, 20B1007j‚̬‰Ê‚ðChem. Commun.‚É”•\‚³‚ê‚Ü‚µ‚½BHydrosilylation of carbonyls over electron-enriched Ni sites of intermetallic compound Ni3Ga heterogeneous catalyst. Chem. Commun., 2021. (DOI: 10.1039/D0CC07916B)(XV“úF2021”N4ŒŽ13“ú)
- ‘åã‘åŠw –ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(19A1002, 20B1027)‚̬‰Ê‚ðJACS Au‚É”•\‚µ‚Ü‚µ‚½BSingle-Crystal Cobalt Phosphide Nanorods as a High-Performance Catalyst for Reductive Amination of Carbonyl Compounds. JACS Au, 2021, Just Accepted. (DOI: 10.1021/jacsau.1c00125)(XV“úF2021”N4ŒŽ8“ú)
- ƒXƒCƒX˜A–MEƒ|[ƒ‹ƒVƒFƒ‰[Œ¤‹†Š 㑺—m•½”ŽŽmŒ¤‹†ˆõ‚Ƃ̋¤“¯—˜—pE‹¤“¯Œ¤‹†(18A1005)‚̬‰Ê‚ªJ. Phys. Chem. C‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BFemtosecond Charge Density Modulations in Photoexcited CuWO4, J. Phys. Chem. C 2021, in Press. (DOI: 10.1021/acs.jpcc.0c10525)(XV“úF2021”N3ŒŽ30“ú)
- ‘åã‘åŠw –ž—¯Œhly‹³Žö‚Ƃ̋¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1027)‚̬‰Ê‚ªGreen Chemistry‚ÌEditor's Choice ‚É‘I’肳‚ê‚Ü‚µ‚½B(XV“úF2021”N3ŒŽ22“ú)
- Vidyasirimedhi Institute of Science and Technology(VISTEC)‚̬싳Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê‚ðInorg. Chem. ‚É”•\‚µ‚Ü‚µ‚½BSuppressing the Photocatalytic Activity of Titania by Precisely Controlled Silica Coating. 2021, in Press. (DOI: 10.1021/acs.inorgchem.0c03476)(XV“úF2021”N3ŒŽ18“ú)
- ’‚‘fŽ_‰»•¨iNOj‚É‚æ‚Á‚ÄCHAŒ^ƒ[ƒIƒ‰ƒCƒg×E“à‚ł̃oƒ‹ƒNóPd‚ªPdƒJƒ`ƒIƒ“‚ւ̕ϊ·‚ª‘£i‚³‚ê‚邱‚Æ‚ðŒ©o‚µ‚½Œ¤‹†¬‰Ê‚ªACS Asia Insights‚ÅЉ‚ê‚Ü‚µ‚½Bi‘O–ì‘T“Á”CuŽt/G”}Þ—¿Œ¤‹†•”–åj
Transformation of Bulk Pd to Pd Cations in Small-Pore CHA Zeolites Facilitated by NO. JACS Au, 2021, 1, 2, 201–211iXV“úF2021”N3ŒŽ1“ú) - “Œ‹žˆã‰ÈŽ•‰È‘åŠw ˜a“cŒhL•‹³‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1017, 18B1006)‚̬‰Ê‚ðSensors ‚É”•\‚µ‚Ü‚µ‚½B
Development of a Wearable Mouth Guard Device for Monitoring Teeth Clenching during Exercise. Sensors, 2021, 21, 1503.(XV“úF2021”N3ŒŽ1“ú) - ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚Ä–kŠC“¹‘åŠw‘åŠw‰@HŠwŒ¤‹†‰@@’O“c‹³Žö‚ª˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½BMagic thickness of 25 Å makes periodic metal-insulator transitions.arXiv, 2021. (XV“ú 2021”N2ŒŽ22“ú)
- –kŠC“¹‘åŠw‘åŠw‰@’n‹…ŠÂ‹«‰ÈŠw‰@@”ª–Ø‹³Žö‚̘_•¶‚É‹Zp•”‚Ö‚ÌŽÓŽ«‚ªŒfÚ‚³‚ê‚Ü‚µ‚½B
Impact of Heterometallic Cooperativity of Iron and Copper Active Sites on Electrocatalytic Oxygen Reduction Kinetics. ACS Catal. 2021, 11, 2356–2365. (XV“ú 2021”N2ŒŽ9“ú) - –kŠC“¹‘åŠw‘åŠw‰@’n‹…ŠÂ‹«‰ÈŠw‰@ ”ª–Ø‹³Žö‚̘_•¶‚É‹Zp•”‚Ö‚ÌŽÓŽ«‚ªŒfÚ‚³‚ê‚Ü‚µ‚½B
Bilayer Lipid Membranes on SAM-Modified Gold Electrode. Electrochim. Acta, 2021, In Press. (DOI: 10.1016/j.electacta.2021.137888) (XV“ú 2021”N2ŒŽ8“ú) - –L“cH‹Æ‘åŠw ŽR•ûŒ[æ¶‚ª‹¤“¯Œ¤‹†i17A1001j‚̬‰Ê‚ðACS Catalysis ‚É”•\‚µ‚Ü‚µ‚½BCore–Shell Double Doping of Zn and Ca on β-Ga2O3 Photocatalysts for Remarkable Water Splitting. ACS Catal., 2021, 11, 1911-1919.(XV“úF2021”N2ŒŽ1“ú)
- “Œ‹ž“s—§‘åŠw ’–ŒÒ—Y‰î“Á”C•‹³‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1021)‚̬‰Ê‚ðNature Communications ‚É”•\‚µ‚Ü‚µ‚½BBulk tungsten-substituted vanadium oxide for low-temperature NOx removal in the presence of water. Nat. Commun., 2021, 12, 557.‹IˆÉ–¯•ú(2021”N1ŒŽ26“ú)‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½B(XV“úF2021”N1ŒŽ28“ú)
- ‹ãB‘åŠw ù–ØŒ\Žq‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(19B1002, 20A1001)‚̬‰Ê‚ðInternational Forum for Green Asia 2020 ‚É”•\‚µ‚Ü‚µ‚½BElectronic structure of ferric doped montmorillonite and its application to photocatalytic reduction of chromate. International Forum for Green Asia 2020, 2020.(XV“úF2021”N1ŒŽ26“ú)
- ‘åã‘åŠw –ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1027)‚̬‰Ê‚ðGreen Chemistry ‚É”•\‚µ‚Ü‚µ‚½BAir-stable and reusable nickel phosphide nanoparticle catalyst for the highly selective hydrogenation of D-glucose to D-sorbitol. Green Chem., 2021. (DOI: 10.1039/D0GC03301D)(XV“úF2021”N1ŒŽ26“ú)
- ‹ž“s‘åŠw œA£’ŽŠy‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1032)‚̬‰Ê‚ðJ. Phys. Chem. Lett. ‚É”•\‚µ‚Ü‚µ‚½BTuning Transition Electric and Magnetic Dipole Moments: [7]Helicenes Showing Intense Circularly Polarized Luminescence, J. Phys. Chem. Lett., 2021, 12, 686–695.(XV“úF2021”N1ŒŽ12“ú)
- ‹ž“s‘åA‘åã‘åŠw, ƒA[ƒwƒ“H‰È‘åŠw,ƒXƒRƒ‹ƒRƒ{Œ¤‹†Š, ƒAƒƒŠƒJ‘—§•W€‹ZpŒ¤‹†Š“™‚̘_•¶‚É‹Zp•”‚Ö‚ÌŽÓŽ«‚ªŒfÚ‚³‚ê‚Ü‚µ‚½B Conduction Band Control of Oxyhalides with a Triple-Fluorite Layer for Visible Light Photocatalysis, J. Am. Chem. Soc., 2021, DOI: 10.1021/jacs.0c10288. (XV“ú 2021”N1ŒŽ12“ú)
- ‹ãB‘åŠw ù–ØŒ\Žq‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(18A1001, 19B1002, 20A1001)‚̬‰Ê‚ðApplied Surface Science‚É”•\‚µ‚Ü‚µ‚½BA promising Zn-Ti layered double hydroxide/Fe-bearing montmorillonite composite as an efficient photocatalyst for Cr(VI) reduction: Insight into the role of Fe impurity in montmorillonite. Appl. Surf. Sci., 2020, 148835.(XV“úF2021”N1ŒŽ4“ú)
- ‘åã‘åŠw –ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1027)‚̬‰Ê‚ðACS Catalysis‚É”•\‚µ‚Ü‚µ‚½BAir-Stable and Reusable Cobalt Phosphide Nanoalloy Catalyst for Selective Hydrogenation of Furfural Derivatives. ACS Catal., 2021, 750–757.(XV“úF2021”N1ŒŽ4“ú)
- “Œ‹žˆã‰ÈŽ•‰È‘åA•ªŽqŒ¤“™‚Æ’©‘qŒ¤‚Ì‹¤“¯Œ¤‹†‚ª”•\‚³‚ê‚Ü‚µ‚½B Extracting the local electronic states of Pt polycrystalline films surface under electrochemical conditions using polarization-dependent total reflection luorescence X-ray absorption near edge structure spectroscopy. 2020, Electron. Struct., in press.(DOI: 10.1088/2516-1075/abd1ca) (XV“ú 2020”N12ŒŽ14“ú)
- ‘åã‘åŠw@–ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(20B1027)‚̬‰Ê‚ðOrganic & Biomolecular Chemistry‚É”•\‚µ‚Ü‚µ‚½BNickel phosphide nanoalloy catalyst for the selective deoxygenation of sulfoxides to sulfides under ambient H2 pressure. Org. Biomol. Chem., 2020,18, 8827-8833.(XV“úF2020”N12ŒŽ10“ú)
- ‘åã‘åŠw@–ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(19A1002)‚̬‰Ê‚ðChemistry - A European Journal‚É”•\‚µ‚Ü‚µ‚½BNi2P Nanoalloy as an Air]Stable and Versatile Hydrogenation Catalyst in Water: P]Alloying Strategy for Designing Smart Catalysts. Chem. - Eur. J., 2020, just accepted (DOI: org/10.1002/chem.202005037). (XV“úF2020”N12ŒŽ10“ú)
- ƒXƒCƒX˜A–MEƒ|[ƒ‹ƒVƒFƒ‰[Œ¤‹†Š@㑺—m•½”ŽŽmŒ¤‹†ˆõ‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi15A1004, 18A1005j‚ðApplied Science‚É”•\‚³‚ê‚Ü‚µ‚½BTracking the Local Structure Change during the Photoabsorption Processes of Photocatalysts by the Ultrafast Pump-Probe XAFS Method. Appl. Sci. 2020, 10, 7818. (XV“úF2020”N12ŒŽ3“ú)
- ’}”g‘åŠw@Žsì~Žm‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi20A1005j‚ðOrganic Letters‚É”•\‚³‚ê‚Ü‚µ‚½BCopper-Catalyzed [3 + 2] Annulation of Azides with a (Difluorovinyl)zinc Complex, Fluoroacetylene Equivalent. Org. Lett. 2020. (DOI: 10.1021/acs.orglett.0c03476) (XV“úF2020”N11ŒŽ30“ú)
- “Œ‹žH‹Æ‘åŠw@–{‘qŒ’y‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi19B1004, 20B1013j‚ðACS Catalysis‚É”•\‚³‚ê‚Ü‚µ‚½BControllable Factors of Supported Ir Complex Catalysis for Aromatic C−H Borylation. ACS Catal. 2020, 10, 14552–14559. (XV“úF2020”N11ŒŽ26“ú)
- –kŠC“¹‘åŠw‘åŠw‰@HŠwŒ¤‹†‰@@‘åŒF‹³Žö‚̘_•¶‚É‚“xŽÀ‘HŒ¤CƒvƒƒOƒ‰ƒ€‚Ö‚ÌŽÓŽ«‚ªŒfÚ‚³‚ê‚Ü‚µ‚½B
Photosensitized Intramolecular [2+2] Cycloaddition of 1H-Pyrrolo[2,3-b]pyridines Enabled by the Assistance of Lewis Acids. J. Org. Chem. 2020iDOI: 10.1021/acs.joc.0c02231) (XV“ú 2020”N11ŒŽ24“ú) - ‹¤“¯Œ¤‹†‚̬‰Ê@¬æü‘åŠw@‘哇ˆê^æ¶‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi19B1012j‚ðJournal of the Japan Petroleum Institute‚É”•\‚³‚ê‚Ü‚µ‚½BDimethyl Ether Synthesis from CO2–H2 Mixture over Cu/Amorphous-ZrO2 Mixed with FER-type Zeolite. J. Japan Pet. Inst. 2020, 6, 388-393 (XV“úF2020”N11ŒŽ5“ú)
- ŽRŒû‘åŠw@‹g“c^–¾y‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi17B1002, 20B1033j‚ðJ. Phys. Chem. C‚É”•\‚µ‚Ü‚µ‚½BOperando Observations of a Manganese Oxide Electrocatalyst for Water Oxidation Using Hard/Tender/Soft X-ray Absorption Spectroscopy. 2020, Just Accepted. (DOI: 10.1021/acs.jpcc.0c05571)(XV“úF2020”N10ŒŽ26“ú)
- ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚ÄA–kŠC“¹‘åŠw‘åŠw‰@”_ŠwŒ¤‹†‰@@ŠâŸº‹³Žö‚ª˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½B
Effects of Different Feedstock Type and Carbonization Temperature of Biochar on Oat Growth and Nitrogen Uptake in Coapplication with Compost. J. Soil Sci. Plant Nutr. 2020, Just Accepted.(DOI: 10.1007/s42729-020-00359-y)(XV“ú 2020”N10ŒŽ20“ú) - ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚ÄA’©‘q‹³ŽöiG”}•\–ÊŒ¤‹†•”–åj‚̘_•¶‚ª”•\‚³‚ê‚Ü‚µ‚½B
Bent crystal Laue analyser combined with total reflection fluorescence X-ray absorption fine structure (BCLA + TRF-XAFS) and its application to surface studies. J. Synchrotron Rad. 2020 (DOI: 10.1107/S1600577520011170)(XV“ú 2020”N10ŒŽ20“ú) - ‘åã‘åŠw@—LàVŒõO‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê(19B1016)‚ðOrganic Letters‚É”•\‚µ‚Ü‚µ‚½BSelf-Assembled Multilayer Iron(0) Nanoparticle Catalyst for Ligand-Free Carbon-Carbon/Carbon-Nitrogen Bond-Forming Reactions. Org. Lett. 2020, 18. 7244-7249.(XV“úF2020”N10ŒŽ19“ú)
- ‘åãŽs—§‘åŠw@“c‘º³ƒæ¶‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê(19A1006)‚ðACS Catalysis‚É”•\‚µ‚Ü‚µ‚½BMechanistic Study on Deoxydehydration and Hydrogenation of Methyl Glycosides to Dideoxy Sugars over ReOx-Pd/CeO2 catalyst. ACS Catal. 2020, Just Accepted. (DOI: 10.1021/acscatal.0c02309)(XV“úF2020”N9ŒŽ23“ú)
- “Œ‹ž“s—§‘åŠw@‚–ØT‰î‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê‚ðACS Appl. Mater. Interfaces‚É”•\‚³‚ê‚Ü‚µ‚½B
Optically Transparent Colloidal Dispersion of TiO2 Nanoparticles Storable for longer than One year Prepared by Sol/Gel Progressive Hydrolysis/Condensation. ACS Appl. Mater. Interfaces 2020, Just Accepted. (DOI: 10.1021/acsami.0c12951)(XV“úF2020”N9ŒŽ16“ú) - ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚ÄA–kŠC“¹‘åŠw‘åŠw‰@’n‹…ŠÂ‹«‰ÈŠw‰@@”ª–Ø‹³Žö‚ª˜_•¶‚ð”•\‚µ‚Ü‚µ‚½B
Terahertz Raman Spectroscopy of Ligand-Protected Au8 Clusters. J. Phys. Chem. Lett. 2020,11. 7996-8001.(XV“ú 2020”N9ŒŽ16“ú) - Vidyasirimedhi Institute of Science and Technology(VISTEC)‚̬싳Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Ê‚ðRSC Advances.‚É”•\‚µ‚Ü‚µ‚½B
Crystallization of well-defined anatase nanoparticles in SBA-15 for the photocatalytic decomposition of acetic acid, RSC Adv. 2020, 10, 32350-32356.(XV“úF2020”N9ŒŽ7“ú) - ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚ÄA–kŠC“¹‘åŠw‘åŠw‰@’n‹…ŠÂ‹«‰ÈŠw‰@@”ª–Ø‹³Žö‚ª˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½BElectronic Effects of Nitrogen Atoms of Supports on Pt-Ni Rhombic Dodecahedral Nanoframes for Oxygen Reduction, ACS appl. energy mater. 2020, 7, 6768–6774.(XV“ú 2020”N8ŒŽ28“ú)
- ¬æü‘åŠw@‘哇ˆê^•‹³‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi19B1012j‚ðInd. Eng. Chem. Res.‚É”•\‚µ‚Ü‚µ‚½B
Selective Phenol Recovery by Catalytic Cracking of Thermal Decomposition Gas from Epoxy-Based Carbon-Fiber-Reinforced Plastic. Ind. Eng. Chem. Res. 2020, 30, 13460–13466.(XV“úF2020”N8ŒŽ27“ú) - ‹ãB‘åŠw@ù–ØŒ\Žq‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi18A1001,19B1002,20A1001j‚ðJ. Colloid Interface Sci.‚É”•\‚µ‚Ü‚µ‚½B
Fabrication and characterization of ternary sepiolite/g-C3N4/Pd composites for improvement of photocatalytic degradation of ciprofloxacin under visible light irradiation. J. Colloid Interface Sci. 2020, 577, 397–405.(XV“úF2020”N8ŒŽ20“ú) - ‹Zp•”‚ª‹¦—Í‚µ‚½Œ¤‹†‚̬‰Ê‚ɂ‚¢‚ÄA–kŠC“¹‘åŠw”_ŠwŒ¤‹†‰@@‰Y–ØNŒõ‹³Žö‚ª ˜_•¶‚ð”•\‚³‚ê‚Ü‚µ‚½BPreparation of kraft lignin-based activated carbon fiber electrodes for electric double layer capacitors using an ionic liquid electrolyte, Holzforschung, 2020, 74(6), 577–588.(XV“ú 2020”N8ŒŽ17“ú)
- _ŒË‘åŠw@‘å¼—m‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi19B1003j‚ðThe Journal of Physical Chemistry C‚É”•\‚µ‚Ü‚µ‚½B
Water-Splitting Activity of La-Doped NaTaO3 Photocatalysts Sensitive to Spatial Distribution of Dopants, J. Phys. Chem. C 2020, 124, 15285–15294.(XV“úF2020”N8ŒŽ11“ú) - G”}‰ÈŠwŒ¤‹†Š‹¤“¯Œ¤‹†ƒtƒFƒ[EŽR•ûŒ[æ¶i–L“cH‹Æ‘åŠwj‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚̬‰Êi17A1001j‚ðThe Journal of Chemical Physics‚É”•\‚µ‚Ü‚µ‚½B
Enhancement of photoelectrochemical activity of TiO2 electrode by particulate/dense double-layer formation, J. Chem. Phys. 2020, 152, 241101. (XV“úF2020”N6ŒŽ30“ú) - ‰ªŽR‘åŠw@ˆË”n³‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(19A1003)‚̬‰Ê‚ðChemical Science‚É”•\‚µ‚Ü‚µ‚½BBack cover‚É‘I’肳‚ê‚Ü‚µ‚½BAluminum porphyrins with quaternary ammonium halides as catalysts for copolymerization of cyclohexene oxide and CO2: Metal–ligand cooperative catalysis, 2020, 11, 5669 - 5675 (DOI: 10.1039/d0sc01609h) (XV“úF2020”N6ŒŽ11“ú)
- ‘åã‘åŠw@–ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—pE‹¤“¯Œ¤‹†(19A1002, 20B1027)‚̬‰Ê‚ðChemical Science‚É”•\‚µ‚Ü‚µ‚½BCobalt phosphide catalyst for hydrogenation of nitrile. Chem. Sci., 2020, Just Accepted (DOI: 10.1039/D0SC00247J) (XV“úF2020”N6ŒŽ11“ú)
- ’´‚‘Ï‹v«‚ðŽ¦‚·ƒvƒƒpƒ“’E…‘fG”}‚ðŠJ”iŒÃìX–çy‹³Žö/G”}Þ—¿Œ¤‹†•”–åj
Single-atom platinum in intermetallics as an ultrastable and selective catalyst for propane dehydrogenation. Nature Communication, 2020, 11, 2838.iXV“úF2020”N6ŒŽ8“ú) - G”}‰ÈŠwŒ¤‹†Š•‘®G”}˜AŒgŒ¤‹†ƒZƒ“ƒ^[EŽYŠwН˜AŒgG”}Œ¤‹†ƒ†ƒjƒbƒg‚Ì‹qˆõy‹³Žö ‚‹´Œ[‰îæ¶‚ªACatalyst Acquisition by Data Sciencei’ÊÌCADSj‚ÌŠJ”‚ɬŒ÷‚µ‚Ü‚µ‚½BCADS‚̓EƒFƒuƒuƒ‰ƒEƒUã‚ł̊ȒP‚ȃ}ƒEƒX‘€ì‚݂̂ÅAƒvƒƒOƒ‰ƒ~ƒ“ƒO‚ð‚·‚é‚±‚ƂȂG”}ƒCƒ“ƒtƒHƒ}ƒeƒBƒNƒX‚ð—p‚¢‚ÄG”}ÝŒvA‹y‚ÑG”}ƒf[ƒ^‚Ì‹¤—L‚ð‰Â”\‚Æ‚·‚éƒvƒ‰ƒbƒgƒtƒH[ƒ€‚Å‚·BiXV“ú2020”N5ŒŽ26“új
- Dr. Felix E Feiten(ƒtƒŠƒbƒcƒn[ƒo[Œ¤‹†Š)‚Æ’©‘q´ûü‹³ŽöiG”}•\–ÊŒ¤‹†•”–åj‚ÌŒ¤‹†¬‰Ê‚ªPCCP 2020 Hot Article‚É‘I‚΂ê‚Ü‚µ‚½B
Model Building Analysis - a novel method for statistical evaluation of Pt L3-edge EXAFS data to unravel the structure of Pt-alloy nanoparticles for the oxygen reduction reaction on highly oriented pyrolytic graphite. Phys. Chem. Chem. Phys., Advance Article (DOI: 10.1039/C9CP06891K.)iXV“úF2020”N5ŒŽ15“ú) - ‰ªŽR‘åŠw ˆË”n³‹³Žö‚ª‹¤“¯—˜—p (19A1003)‚̬‰Ê‚ðChemical Communicationsނɔ•\‚³‚ê‚Ü‚µ‚½BSynthesis of silyl formates, formamides, and aldehydes via solvent-free organocatalytic hydrosilylation of CO2. Chem.Commun, Accepted (DOI: 10.1039/D0CC01371D) (XV“úF2020”N4ŒŽ20“ú)
- G”}Þ—¿Œ¤‹†•”–åi‘O–ì‘T“Á”CuŽtA’¹‰®”ö—²•‹³A´…Œ¤ˆê‹³Žöj‚̃Cƒ“ƒWƒEƒ€ƒqƒhƒŠƒh‚Ì’E…‘fG”}ì—p‚ÉŠÖ‚·‚é˜_•¶‚ªAJACSŽ‚Ì•\ކ‚ÉÌ—p
Isolated Indium Hydrides in CHA Zeolites: Speciation and Catalysis for Nonoxidative Dehydrogenation of Ethane. J. Am. Chem. Soc., 2020, 142, 4820-4832iXV“úF2020”N3ŒŽ26“ú) - ‘åã‘åŠw –ž—¯Œhly‹³Žö‚ª‹¤“¯—˜—p (19A1002)‚̬‰Ê‚ðACS Catalysis‚É”•\‚³‚ê‚Ü‚µ‚½B
Unique Catalysis of Nickel Phosphide Nanoparticles to Promote the Selective Transformation of Biofuranic Aldehydes into Diketones in Water. ACS Catal., Just Accepted (DOI: 10.1021/acscatal.9b05120) (XV“úF2020”N3ŒŽ11“ú) - ƒAƒCƒ“ƒgƒz[ƒtƒFƒ“H‰È‘åŠwEEmiel Hensen‹³Žö‚Æ’†“‡´—²y‹³Žöi•¨Ž¿•ÏŠ·Œ¤‹†•”–åj‚̑ۋ¤“¯Œ¤‹†‚̬‰Ê‚ªGreen Chemistry‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½B
Selective hydrogenation of 5-hydroxymethylfurfural and its acetal with 1,3-propanediol to 2,5-bis(hydroxymethyl)furan using supported rhenium-promoted nickel catalysts in water. Green Chem., 2020, 22, 1229. (DOI: 10.1039/c9gc03856f) (XV“úF2020”N3ŒŽ11“ú) - ãŠC‘åŠw‚ÌD. Zhangæ¶‚ª‹¤“¯Œ¤‹†(18B1015)‚̬‰Ê‚ðEnviron. Sci. Technol.‚É”•\‚³‚ê‚Ü‚µ‚½B
SO2-tolerant Selective Catalytic Reduction of NOx over Meso-TiO2@Fe2O3@Al2O3 Metal-based Monolith Catalysts. Environ. Sci. echnol., 2019, 53, 6462-6473, DOI: 10.1021/acs.est.9b00435 (XV“úF2020”N2ŒŽ17“ú) - ´‰Ø‘åŠw‚ÌW. Lvæ¶‚ª‹¤“¯Œ¤‹†(19B1024)‚̬‰Ê‚ðACS Appl. Mater. Interfaces‚É”•\‚³‚ê‚Ü‚µ‚½B
L-Cysteine-Modified Acacia Gum as a Multifunctional Binder for Lithium-Sulfur Batteries. ACS Appl. Mater. Interfaces, 2019, 11, 47956-47962, DOI: 10.1021/acsami.9b17458 (XV“úF2020”N2ŒŽ17“ú) - ‹Zp•”‚̬‰Ê‚ªJ. Phys. Chem. CŒfڂ̘_•¶iDOI: 10.1021/acs.jpcc.0c00995j‚ÉŽÓŽ«ŒfÚ‚³‚ê‚Ü‚µ‚½BiXV“ú2020”N2ŒŽ17“új
- G”}Þ—¿Œ¤‹†•”–åi’¹‰®”ö—²æ¶A‘O–ì‘Tæ¶A´…Œ¤ˆêæ¶j‚¨‚æ‚ÑG”}•\–ÊŒ¤‹†•”–åi‚‘–Ø’Bæ¶j‚ÌG”}ƒCƒ“ƒtƒHƒ}ƒeƒBƒNƒX‚ÉŠÖ‚·‚é‘à˜_•¶‚ªACSCatalysis‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiG”}Þ—¿Œ¤‹†•”–å/’¹‰®”ö—²•‹³j
Machine Learning for Catalysis Informatics: Recent Applications and Prospects. ACS Catal. 2020, 10, 2260-2297.iXV“úF2020”N1ŒŽ30“ú) - uƒOƒŠƒZƒ[ƒ‹‚©‚çƒAƒ~ƒmŽ_‚ð‡¬‚·‚éRu-Ni‡‹àG”}‚ðŠJ”vNing Yanæ¶iƒVƒ“ƒKƒ|[ƒ‹‘—§‘åjA’©‘q”Žsæ¶i‹ž“s‘åj‘¼‚Ƃ̑ۋ¤“¯Œ¤‹†‚̬‰Ê‚ªAngewandte Chemie International edition‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiG”}Þ—¿Œ¤‹†•”–å/ŒÃìX–çy‹³Žöj
Catalytic production of alanine from waste glycerol, Angew. Chem. Int. Ed. 2020, 59, 2289-2293 (XV“úF2020”N1ŒŽ29“ú) - ŽYŠwН˜AŒgG”}Œ¤‹†ƒ†ƒjƒbƒg‹qˆõy‹³ŽöE‚‹´Œ[‰îæ¶‚ÌŒ¤‹†¬‰Ê‚ªƒvƒŒƒXƒŠƒŠ[ƒX‚³‚ê‚Ü‚µ‚½BHigh-Throughput Experimentation and Catalyst Informatics for Oxidative Coupling of Methane, ACS Catal.(DOI:10.1021/acscatal.9b04293)iXV“úF2020”N1ŒŽ6“ú)
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- –L“cH‹Æ‘åŠw@ŽR•ûŒ[æ¶‚ª‹¤“¯Œ¤‹†i17A1001j‚̬‰Ê‚ðApplied Catalysis, B: Environmental‚É”•\‚³‚ê‚Ü‚µ‚½B
Enhancement of UV-responsive photocatalysts aided by visible-light responsive photocatalysts: role of WO3 for H2 evolution on CuCl. Appl. Catal., B, 2019, DOI:https://doi.org/10.1016/j.apcatb.2019.118333 (XV“úF2019”N11ŒŽ5“ú) - 2018”N‚Ì‹¤“¯Œ¤‹†i18A1005j‚̬‰Ê‚Æ‚µ‚Ä㑺—m•½”ŽŽm‚ç‚̃Oƒ‹[ƒv‚ª’´‚‘¬Xü‹zŽû‚Æ‹¤–”ñ’e«XüŽU—–@‚Ōő̃wƒ}ƒ^ƒCƒg‚ÌŒõ‹zŽû‰ß’ö‚ɂƂà‚È‚¤“dŽqó‘ԕω»‚ð‰‚߂˾‚ç‚©‚É‚³‚ê‚Ü‚µ‚½B
Direct observation of the electronic states of photoexcited hematite with ultrafast 2p3d X-ray absorption spectroscopy and resonant inelastic X-ray scattering. Phys. Chem. Chem. Phys. 2019, DOI: 10.1039/C9CP03374B. iXV“úF2019”N10ŒŽ23“új - G”}—˜_Œ¤‹†•”–å‚̉t‘̃Cƒ“ƒWƒEƒ€•\–Êã‚ł̃ƒ^ƒ“Šˆ«‰»‚ÉŠÖ‚·‚é˜_•¶‚ªAThe Journal of Physical Chemistry A‚ÌSupplementary Cover‚ŃnƒCƒ‰ƒCƒg‚³‚ê‚Ü‚µ‚½BTheoretical Study on the C–H Activation of Methane by Liquid Metal Indium: Catalytic Activity of Small Indium Clusters. J. Phys. Chem. A, 2019, 123, 41, 8907-8912.iXV“úF2019”N10ŒŽ18“ú)
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Statistical Analysis and Discovery of Heterogeneous Catalysts Based on Machine Learning from Diverse Published Data, ChemCatChem, 2019, 11, 4537-4547.iXV“úF2019”N10ŒŽ11“ú) - G”}Þ—¿Œ¤‹†•”–åi’¹‰®”ö—²æ¶A‘O–ì‘Tæ¶A‚‘–Ø’Bæ¶AŒÃìX–çæ¶A´…Œ¤ˆêæ¶j‚ÌŽ_‰»ƒ`ƒ^ƒ“•\–Êã‚ł̕ªŽq‹z’…‚ÉŠÖ‚·‚é˜_•¶‚ªAThe Journal of Physical Chemistry C‚ÌSupplementary Cover‚ŃnƒCƒ‰ƒCƒg‚³‚ê‚Ü‚µ‚½B
Linear Correlations between Adsorption Energies and HOMO Levels for the Adsorption of Small Molecules on TiO2 Surfaces, J. Phys. Chem. C, 2019, 123, 20988-20997.iXV“úF2019”N10ŒŽ11“ú) - u10•ª‚Ì1‚Ì‹M‹à‘®—ʂŔrƒKƒXò‰»G”}‚̒ቷ쓮‰»A‰·ŽºŒø‰ÊƒKƒX팸‚ɬŒ÷vF“–ŠY˜_•¶‚ªChemical Science‚ÌFront Cover‚¨‚æ‚ÑHOT Article‚É‘I‚΂ê‚Ü‚µ‚½BiG”}Þ—¿Œ¤‹†•”–å/ŒÃìX–çy‹³Žöj
Cu–Pd single-atom alloy catalyst for highly efficient NO reduction, Chem. Sci., 2019, 10, 8292–8298.
‚Ü‚½–{Œ¤‹†ŠÖ˜A‹LŽ–‚ªChemistry Worldi2019”N8ŒŽ28“új‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiXV“úF2019”N9ŒŽ26“új - “Þ—Ç—Žq‘åŠw Œ´“c‰ëŽjy‹³Žö‚ª‹¤“¯Œ¤‹†i16B1015j‚̬‰Ê‚ð˜_•¶‚É”•\‚³‚ê‚Ü‚µ‚½B
’´”÷—±Žq‚̇‹à\‘¢‚ð‚ƒGƒlƒ‹ƒM[Xü‰ñÜAXAFS‚Æ‹tƒ‚ƒ“ƒeƒJƒ‹ƒ–@‚ð‘g‚݇‚킹‚ÄA¸–§‚ÉŒˆ’肳‚ꂽ¬‰Ê‚ð‰p‘‰¤—§‹¦‰ï‚Ì RSC Advances‚É”•\‚³‚ê‚Ü‚µ‚½B
Reverse Monte Carlo modeling for local structures of noble metal nanoparticles using high-energy XRD and EXAFS. (RSC Adv., 2019, 9, 29511-29521.) iXV“úF2019”N‚XŒŽ19“új - Žñ“s‘åŠw“Œ‹ž@’–ŒÒ—Y‰î“Á”C•‹³‚Ƃ̋¤“¯—˜—pE‹¤“¯Œ¤‹†(19B1016)‚̬‰Ê‚ªACS Catalysis‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiŽó“ü‹³ˆõ@´…Œ¤ˆê‹³Žöj
Bulk Vanadium Oxide versus Conventional V2O5/TiO2: NH3SCR Catalysts Working at a Low Temperature Below 150Ž. ACS Catal. Just Accepted.(DOI: 10.1021/acscatal.9b02695)iXV“ú2019”N9ŒŽ2“ú) - •Ÿ‰ªŒ¤‹†Žº‚ÅŠJ”‚³‚ꂽG”}‚ªAH•iƒƒX‚Ì팸‚ÉŒü‚¯‚ăZƒCƒR[ƒ}[ƒgŠÖ˜A‰ïŽÐ‚ɂĊˆ—p‚³‚ê‚Ä‚¢‚Ü‚·B
“ú–{ŒoÏV•·i2019”N8ŒŽ29“újA–kŠC“¹V•·(2019”N8ŒŽ29“ú)AƒŠƒAƒ‹ƒGƒRƒmƒ~[i2019”N9ŒŽ19“új‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiXV“ú2019”N9ŒŽ19“új - ƒoƒCƒIƒvƒ‰ƒXƒ`ƒbƒNŒ´—¿‚ð‘å—ʇ¬‚·‚é‹Zp‚ðŠJ”`ŠÂ‹«’²˜aŒ^G”}”½‰žƒvƒƒZƒX‚É‚æ‚éCĶ‰Â”\Ž‘Œ¹‚ðŠˆ—p‚µ‚½ƒoƒCƒI‰»Šw•i»‘¢‹Zp`iG”}‰ÈŠwŒ¤‹†Š@y‹³Žö@’†“‡´—²j
–{Œ¤‹†ŠÖ˜A‹LŽ–‚ªA“úŒoŽY‹ÆV•·(2019”N4ŒŽ23“ú)‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiXV“ú2019”N8ŒŽ27“új - •Ÿ‰ªŒ¤‹†Žº‚ÅŠJ”‚³‚ꂽG”}‚ª‰Ê•¨‚Ì’·Šú•Û‘¶‚Ì‚½‚߂ɎÀ—p‰»‚³‚ê‚Ü‚µ‚½B–{Œ¤‹†ŠÖ˜A‹LŽ–‚ªA–kŠC“¹V•·“dŽq”Å(7ŒŽ18“ú)‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiXV“ú2019”N7ŒŽ22“új
- G”}Þ—¿Œ¤‹†•”–åiSMA Hakim Siddikiæ¶A’¹‰®”ö—²æ¶A‘O–ì‘Tæ¶A´…Œ¤ˆêæ¶j‚̃oƒCƒIƒ}ƒX•ÏŠ·‚ÉŠÖ‚·‚é˜_•¶‚ªAChemSusChem‚ÌCover Feature‚ŃnƒCƒ‰ƒCƒg‚³‚ê‚Ü‚µ‚½B
Selective Transformations of Triglycerides into Fatty Amines, Amides, and Nitriles by using Heterogeneous Catalysis. (ChemSusChem, 2019, 12, 3115-3125)iXV“ú2019”N7ŒŽ16“ú) - G”}Þ—¿Œ¤‹†•”–åi‘O–ì‘Tæ¶A’¹‰®”ö—²æ¶A´…Œ¤ˆêæ¶j‚ÆG”}—˜_Œ¤‹†•”–åi’†ŽR“Næ¶iŒ»“Œ‹ž‘åŠwE‹³ŽöjA’·’Jì~–çæ¶j‚Ƃ̋¤“¯Œ¤‹†‚̘_•¶‚ªAPhysChemChemPhys‚ÌFront Cover ‚ŃnƒCƒ‰ƒCƒg‚³‚ê‚Ü‚µ‚½BExperimental and theoretical study of multinuclear indium–oxo clusters in CHA zeolite for CH4 activation at room temperature. (PhysChemChemPhys, 2019, 21, 13415–13427)iXV“ú2019”N7ŒŽ4“ú)
- Ning Yanæ¶iƒVƒ“ƒKƒ|[ƒ‹‘—§‘åj‚Ƃ̌¤‹†¬‰Ê‚ªACS Catalysis‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiŒÃìX–çy‹³Žö/G”}Þ—¿Œ¤‹†•”–åjIdentification of an Active NiCu Catalyst for Nitrile Synthesis from Alcohol. (ACS Catalysis, 2019, 9, 6681-6691)iXV“ú2019”N7ŒŽ2“új
- ACS Catalysis‚ÌSupplementary Cover‚É‘I‚΂ê‚Ü‚µ‚½BiŒÃìX–çy‹³Žö/G”}Þ—¿Œ¤‹†•”–åj
Heterogeneous Additive-Free Hydroboration of Alkenes Using Cu–Ni/Al2O3: Concerted Catalysis Assisted by Acid-Base Properties and Alloying Effects.(ACS catal. 2019, 9, 5096–5103.)iXV“ú2019”N6ŒŽ10“új - ¬‰Íãù•½æ¶iJST‚³‚«‚ª‚¯ê”CŒ¤‹†ŽÒj‚Ƃ̌¤‹†¬‰Ê‚ªChemical Communications‚ÉŒfÚ‚³‚êABack Cover‚É‘I‚΂ê‚Ü‚µ‚½BiŒÃìX–çy‹³Žö/G”}Þ—¿Œ¤‹†•”–åj
Enhanced Methane Activation on Diluted Metal–Metal Ensembles under an Electric Field: Breakthrough in Alloy Catalysis.( Chem. Commun, 2019, 55, 6693–6695)iXV“ú2019”N6ŒŽ10“új - ¬æü‘åŠw—HŠw•”@‘š“c@’¼G•‹³‚Ƃ̋¤“¯Œ¤‹†(14B1009)‚̬‰Ê‚ªJournal of Chemical Engineering of Japan‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½iŽó‚¯“ü‚ꋳˆõ@´…Œ¤ˆê/‹@”\•¡‡Œ^ƒOƒŠ[ƒ“G”}Œ¤‹†•”–åjAlloying Effect of Nickel–Cobalt Based Binary Metal Catalysts Supported on α-Alumina for Ammonia Decomposition. J. Chem. Eng. Japan 2019, 52, 413-422. iXV“ú2019”N5ŒŽ24“új
- ƒoƒCƒIƒvƒ‰ƒXƒ`ƒbƒNŒ´—¿‚ð‘å—ʇ¬‚·‚é‹Zp‚ðŠJ”`ŠÂ‹«’²˜aŒ^G”}”½‰žƒvƒƒZƒX‚É‚æ‚éCĶ‰Â”\Ž‘Œ¹‚ðŠˆ—p‚µ‚½ƒoƒCƒI‰»Šw•i»‘¢‹Zp`iG”}‰ÈŠwŒ¤‹†Š@y‹³Žö@’†“‡´—²jC<ŠT—v>C<–k‘åHP>(XV“ú 2019”N4ŒŽ11“ú)
- ŒÃìX–çæ¶E´…Œ¤ˆêæ¶E’¹‰®”ö—²æ¶‚ÌNOxŠÒŒ³‚ÉŠÖ‚·‚錤‹†¬‰Ê‚ªChemical ScienceŽ‚ÌBack Cover‚ÉÌ—p‚³‚ê‚Ü‚µ‚½B˜_•¶FDesign of Pd-based pseudo-binary alloy catalysts for highly active and selective NO reduction (Chem. Sci., 2019, 10, 4148–4162)(XV“ú 2019”N4ŒŽ11“ú)
- ’¹‰®”ö—²æ¶ASMA Hakim Siddikiæ¶A‘O–ì‘Tæ¶A´…Œ¤ˆêæ¶‚ÌCeO2ã‚Å‚ÌC−NŒ‹‡ŠJ—ô‚ÉŠÖ‚·‚é˜_•¶‚ªChemCatChemŽ‚Ì10Žü”N‹L”O“ÁW†‚ÌFront Cover‚Æ‚µ‚ănƒCƒ‰ƒCƒg‚³‚ê‚Ü‚µ‚½B˜_•¶: Esterification of Tertiary Amides by Alcohols Through C–N Bond Cleavage over CeO2 (ChemCatChem, 2019, 11, 449–456)(XV“ú 2019”N3ŒŽ29“ú)
- ŒÃìX–çæ¶E´…Œ¤ˆêæ¶‚ÌNOxŠÒŒ³‚ÉŠÖ‚·‚錤‹†¬‰Ê‚ª‘æ123‰ñG”}“¢˜_‰ï‚Ì’–Ú”•\‚É‘I‚΂ê‚Ü‚µ‚½B(XV“ú 2019”N3ŒŽ22“ú)
- ƒVƒ“ƒKƒ|[ƒ‹‘—§‘åŠwENing Yanæ¶iG”}Œ¤E‹qˆõy‹³Žöj‘¼‚ÆŒÃìX–çæ¶‚̑ۋ¤“¯Œ¤‹†‚̬‰Ê‚ªCatalysis Science & TechnologyŽ‚ÌInside Front Cover‚ÉÌ—p‚³‚ê‚Ü‚µ‚½B˜_•¶FOxidant free conversion of alcohols to nitriles over Ni-based catalysts (Catal. Sci. Technol., 2019, 9, 86–96)(XV“ú 2019”N1ŒŽ9“ú)
- ’¹‰®”ö—²æ¶ASMA Hakim Siddikiæ¶A´…Œ¤ˆêæ¶‚Ì“ñŽ_‰»’Y‘fEƒoƒCƒIƒ}ƒX‚ÌŠÒŒ³“I‰»ŠwŽ‘Œ¹‰»‚ÉŠÖ‚·‚郌ƒrƒ…[˜_•¶‚ªThe Chemical Record‚ÌFront cover‚ŃnƒCƒ‰ƒCƒg‚³‚ê‚Ü‚µ‚½B
˜_•¶: The Catalytic Reduction of Carboxylic Acid Derivatives and CO2 by Metal Nanoparticles on Lewis-Acidic Supports (The Chemical Record, 2018, 18, 1374-1393) (XV“ú 2018”N11ŒŽ12“ú) - ’¹‰®”ö—²æ¶ASMA Hakim Siddikiæ¶A´…Œ¤ˆêæ¶‚ÌNb2O5‚ÌG”}ì—p‚ðDFTŒvŽZ‚É‚æ‚è’²¸‚µ‚½˜_•¶‚ªChemPhysChem‚ÌFront cover‚ŃnƒCƒ‰ƒCƒg‚³‚ê‚Ü‚µ‚½B
–{¬‰Ê‚Í•ªŽq‰ÈŠwŒ¤‹†Š‚Ì]Œ´Œ¤‹†GANational Nanotechnology Center (NANOTEC; Thailand)‚ÌP. HirunsitŒ¤‹†G‚Ƃ̑ۋ¤“¯Œ¤‹†‚É‚æ‚é‚à‚̂ł·B
˜_•¶: Origin of Nb2O5 Lewis Acid Catalysis for Activation of Carboxylic Acids in the Presence of a Hard Base (ChemPhysChem, 2018, 19, 2848-2857) (XV“ú 2018”N11ŒŽ12“ú) - ‰¤ƒ„ƒ“æ¶i‚•ªŽq‹@”\‰ÈŠwŒ¤‹†•”–åj‚ÆŒ´“c‘ñ“Tæ¶i‘啪‘åŠwj‚¨‚æ‚Ñ ‹àŒõ‹`•Fæ¶ i‹ž“s‘åŠwj‚ç‚Æ‚Ì‹¤“¯Œ¤‹†‚̬‰Ê‚ªMacromoleculesŽ‚ÉŒfÚ‚³‚ê ‚Ü‚µ‚½B‚±‚ÌŒ¤‹†‚Í“‡•¨Ž¿‹@\E‘n”—Z‡Œ¤‹†Ž–‹Æ‚ÌŽx‰‡‚𓾂Äs‚Á‚½‚à‚̂ł·B˜_•¶FHelix Induction to Polyfluorenes Using Circularly Polarized Light: Chirality Amplification, Phase-Selective Induction, and Anisotropic Emission (Macromolecules, 2018, DOI: 10.1021/acs.macromol.8b01453 ) (XV“ú 2018”N8ŒŽ28“ú)
- ŒõG”}‰ÈŠwŒ¤‹†•”–åy‹³ŽöƒGƒoƒRƒƒ‹ƒXƒJæ¶‚ÌŒ¤‹†¬‰Ê‚ªCatalysts‚Ì•\ކ‚ÉÌ—p‚³‚ê‚Ü‚µ‚½i”Photocatalytic Water Disinfection under Solar Irradiation by d-Glucose-Modified Titania” Catalysts 2018, 8(8), 316; DOI: 10.3390/catal8080316, cover: https://res.mdpi.com/data/covers/catalysts/big_cover-catalysts-v8-i8.pngj (XV“ú 2018”N8ŒŽ27“ú)
- ŽYŠwН˜AŒgG”}Œ¤‹†ƒ†ƒjƒbƒg‹qˆõy‹³ŽöE‚‹´Œ[‰îæ¶iNIMSj‚̘_•¶”Unveiling Hidden Catalysts for the Oxidative Coupling of Methane based on Combining Machine Learning with Literature Data”(ChemCatChem 2018, 10, 3223–3228, DOI:10.1002/cctc.201800310)‚ɂ‚¢‚ẴCƒ“ƒ^ƒrƒ…[‹LŽ–‚ªŒfÚ‚³‚ê(ChemCatChem 2018, 10, 3135, DOI:10.1002/cctc.201801205)A‚Ü‚½•\ކ‚ÉÌ—p‚³‚ê‚Ü‚µ‚½B (XV“ú 2018”N8ŒŽ23“ú)
- “V‘RƒKƒX‚ðŒø—¦“I‚É—˜—p‚·‚邽‚ß‚ÌG”}ŠJ”‚ɬŒ÷B]—ˆ‚æ‚è’á‚¢‰·“x‚Ńƒ^ƒ“‚ð‡¬ƒKƒX‚ɕϊ·BiG”}‰ÈŠwŒ¤‹†Š@¬—ÑL˜a•‹³E•Ÿ‰ª~‹³Žöj–{Œ¤‹†“à—e‚ÍA“úЧH‹ÆV•·(8ŒŽ15“ú)‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½B(XV“ú 2018”N8ŒŽ20“ú)
- ‰¤ƒ„ƒ“æ¶i‚•ªŽq‹@”\‰ÈŠwŒ¤‹†•”–åj‚Æ–k‹ž‘åŠwXinhua Wanæ¶‚¨‚æ‚ыߋE‘å Šw¡ˆä‰Àˆûæ¶‚ç‚Æ‚̑ۋ¤“¯Œ¤‹†iG”}‰ÈŠwŒ¤‹†ŠŠCŠOŽáŽè”hŒ§“xj‚̬‰Ê ‚ªNew Journal of ChemistryŽ‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½B–{Œ¤‹†‚Í‹¤“¯—˜—pE‹¤“¯Œ¤‹† ‹’“_Ž–‹Æ‚ÌŽx‰‡‚ðŽó‚¯‚ÄŽÀŽ{‚µ‚½‚à‚̂ł·B ˜_•¶Fπ-Stacked and Unstacked Aggregates Formation of 3,3'-Diethylthiatricarbocyanine iodide, A Near-infrared Dye (New Journal of Chemistry, 2018, DOI: 10.1039/C8NJ02851F ) (XV“ú 2018”N8ŒŽ6“ú)
- ‹¤“¯—˜—pE‹¤“¯Œ¤‹†‚ÌŒ¤‹†¬‰Ê‚ªo”Å‚³‚ê‚Ü‚µ‚½i“Œ‹žˆã‰ÈŽ•‰È‘åŠwA˜a“cŒhLæ¶A"The effect of different cleaning agents on saliva contamination for bonding performance of zirconia ceramics"jPDFi‰Û‘è”Ô†F#16B1004, #17B1007j(XV“ú 2018”N8ŒŽ1“ú)
- SMA Hakim Siddikiæ¶A’¹‰®”ö—²æ¶A´…Œ¤ˆêæ¶‚ÌAcceptorless Dehydrogenative Coupling (ADC)”½‰ž‚ÉŠÖ‚·‚郌ƒrƒ…[˜_•¶‚ªGreen Chemistry‚ÌInside front cover‚ŃnƒCƒ‰ƒCƒg‚³‚ê‚Ü‚µ‚½B˜_•¶: Acceptorless dehydrogenative coupling reactions with alcohols over heterogeneous catalysts (Green Chemistry, 2018, 20, 2933-2952) (XV“ú 2018”N7ŒŽ6“ú)
- ’†–쌤‹†Žº‚ƎʼnYH‹Æ‘åŠwE‰i’¼•¶æ¶‚ÌŒ¤‹†¬‰Ê‚ªƒvƒŒƒXƒŠƒŠ[ƒX‚³‚ê‚Ü‚µ‚½i‹¤“¯—˜—pE‹¤“¯Œ¤‹†jB (XV“ú 2018”N7ŒŽ5“ú)
- uCO2‚©‚çCOì‚éG”}v“úŒoŽY‹ÆV•·(7ŒŽ3“ú)‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½B(ŽY‹Æ‹Zp‘‡Œ¤‹†Š •x‰iŒ’ˆêŒ¤‹†ƒ`[ƒ€’·A¼“c‚Ü‚ä‚Ý‹³ŽöAˆÀ“c—F—my‹³Žö‚ç‚Æ‹¤“¯‚̬‰Ê)(XV“ú 2018”N7ŒŽ4“ú)
- G”}‚É‚æ‚éƒoƒCƒIƒyƒbƒgƒ{ƒgƒ‹Œ´—¿‚Ì‚Œø—¦‡¬‚ɬŒ÷`Ζû‚Ɉˑ¶‚µ‚È‚¢ƒoƒCƒI‰»Šw•i‚Ì•‹y‚ÉvŒ£`iG”}‰ÈŠwŒ¤‹†Š@y‹³Žö@’†“‡´—²j(XV“ú 2018”N5ŒŽ29“ú)
- ‘O–ì‘T“Á”CuŽt‚Ì“Œ‹ž”_H‘åŠw‚ł̌¤‹†¬‰ÊuH‹Æ—˜—p‚³‚ê‚È‚ª‚ç•s–¾‚Å‚ ‚Á‚½–F‘°ƒ|ƒŠƒCƒ~ƒhŒ´—¿‚̇¬”½‰ž‹@\‚ðƒVƒ“ƒNƒƒgƒƒ“•úŽËŒõ‚ð—p‚¢‚ĉð–¾v‚ªƒvƒŒƒX”•\‚³‚ê‚Ü‚µ‚½B(XV“ú 2018”N5ŒŽ28“ú)
- G”}‰ÈŠwŒ¤‹†Š@‹qˆõy‹³Žö@‚‹´Œ[‰îæ¶iNIMSj‚ÌŒ¤‹†¬‰Ê‚ªChemCatChem‚ÉÌ—p‚³‚ê‚Ü‚µ‚½B
˜_•¶FUnveiling Hidden Catalysts for the Oxidative Coupling of Methane based on Combining Machine Learning with Literature Data (DOI: 10.1002/cctc.201800310)(XV“ú 2018”N5ŒŽ8“ú) - G”}ƒCƒ“ƒtƒHƒ}ƒeƒBƒNƒX‚ÉŠÖ‚·‚é’¹‰®”ö—²æ¶A‚‘–Ø’Bæ¶A´…Œ¤ˆêæ¶‚ÌŒ¤‹†¬‰Ê‚ªThe Journal of Physical Chemistry C‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½B˜_•¶FToward Effective Utilization of Methane: Machine Learning Prediction of Adsorption Energies on Metal Alloys (J. Phys. Chem. C, 2018, 122 (15), pp 8315–8326)https://pubs.acs.org/doi/10.1021/acs.jpcc.7b12670 (XV“ú 2018”N4ŒŽ23“ú)
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- ŒõG”}‰ÈŠwŒ¤‹†•”–åi‘å’JŒ¤‹†Žºj‚Ì‘åŠw‰@¶‚Ì’|“àãùŒå‚³‚ñi2018”N3ŒŽ”ŽŽmC—¹j‚ª•M“ª’˜ŽÒC‚“‡•‹³‚ªÓ”C’˜ŽÒ‚̘_•¶uS. Takeuchi, M. Takashima, M. Takase and B. Ohtani, Digitally Controlled Kinetics of Photocatalytic Oxygen Evolution, Chem. Lett., 47, 373-376 (2018)v‚ªuEditor's Choicev‚̃I[ƒvƒ“ƒAƒNƒZƒX˜_•¶‚Æ‚µ‚Äo”Å‚³‚ê‚Ü‚µ‚½ihttp://www.journal.csj.jp/doi/10.1246/cl.171093jD(XV“ú 2018”N3ŒŽ29“ú)
- ƒGƒoƒRƒƒ‹ƒXƒJ y‹³Žö‚ÌŒ¤‹†‚ª Nature Catalysis ‘nЧ†‚Ìcomment‚ÅŒ¾‹y‚³‚ê‚Ü‚µ‚½iThomas, J. M. The enduring relevance and academic fascination of catalysis. Nature Catalysis 2018, 1, 2–5. doi:10.1038/s41929-017-0014-0) (XV“ú 2018”N3ŒŽ19“ú)
- SMA Hakim Siddikiæ¶A’¹‰®”ö—²æ¶A´…Œ¤ˆêæ¶‚ÌŒ¤‹†¬‰Ê‚ªACS catalysis‚ÌSupplementary Journal Cover‚ÉÌ—p‚³‚ê‚Ü‚µ‚½B(XV“ú 2018”N3ŒŽ13“ú)
˜_•¶FC-Methylation of Alcohols, Ketones, and Indoles with Methanol Using Heterogeneous Platinum Catalysts (ACS catyalysis, 2018, 3091–3103) - SMA Hakim Siddikiæ¶A’¹‰®”ö—²æ¶A´…Œ¤ˆêæ¶‚ÌŒ¤‹†¬‰Ê‚ªSynfacts‚ÉЉ‚ê‚Ü‚µ‚½B(XV“ú 2018”N3ŒŽ13“ú)
(1) Niobic Acid Catalyzed Cyclization of Dicarboxylic Acids (Synfacts 2017, 13(10), 1109, DOI: 10.1055/s-0036-1591282)AŒ³˜_•¶FHeterogeneous catalysts for cyclization of dicarboxylic acids to cyclic anhydrides as monomers for bioplastics (Green Chemistry, 2017, 19, 3238–3242. DOI: 10.1039/C7GC00538E)
(2) Hydrogenation of Carboxylic Acid Derivatives and N-Alkylation of Amines (Synfacts 2018, 14(01): 0106, DOI: 10.1055/s-0036-1591030)AŒ³˜_•¶FRhenium-loaded TiO2: A highly versatile and chemoselective catalyst for the hydrogenation of carboxylic acid derivatives and the N-methylation of amines using H2 and CO2 (Chemistry–A European Journal, 2017, 23, 14848-14859. DOI: 10.1002/chem.201702801) - ’·’JìƒOƒ‹[ƒv‚ÌŒ¤‹†¬‰Ê‚ª Physcal Chemistry Chemical Physics ‚̃oƒbƒNƒJƒo[‚ÉÌ—p‚³‚ê‚Ü‚µ‚½B(XV“ú 2018”N2ŒŽ2“ú)
- ŽY‘Œ¤EG”}‰»Šw—Z‡Œ¤‹†ƒZƒ“ƒ^[’·E²“¡æ¶iG”}Œ¤E‹qˆõ‹³Žöj‘¼‚ÆG”}—˜_Œ¤‹†•”–å‚Ì‹¤“¯Œ¤‹†‚̬‰Ê‚ªACS Catalyst‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½BiS.@Tanaka, T. Nakashima, T. Maeda, M. Ratanasak, J. Hasegawa, Y. Kon, M. Tamura, K. Sato, "Quaternary Alkyl Ammonium Salt-Catalyzed Transformation of Glycidol to Glycidyl Esters by Transesterification of Methyl Esters", ACS Catal., 2018, DOI: 10.1021/acscatal.7b03303)(XV“ú 2018”N1ŒŽ24“ú)
- ¬—ÑL˜aæ¶‚ÌŽó܃AƒJƒEƒ“ƒg"Development of Solid Catalyst-Solid Substrate Reactions for Efficient Utilization of Biomass"‚ªBulletin of the Chemical Society of Japan‚̃oƒbƒNƒJƒo[‚ÉÌ—p‚³‚ê‚Ü‚µ‚½(DOI: 10.1246/bcsj.20170263)B(XV“ú 2018”N1ŒŽ15“ú)
- A•¨ƒoƒCƒIƒ}ƒX‚𓜉»‚·‚éŒÅ‘ÌG”}—¬’ʃvƒƒZƒX‚ÌŠJ”‚ɬŒ÷
(XV“ú 2017”N11ŒŽ30“ú)
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- ’·’JìƒOƒ‹[ƒv‚ÌŒ¤‹†¬‰Ê‚ª Physcal Chemistry Chemical Physics ‚̃oƒbƒNƒJƒo[‚ÉÌ—p‚³‚ê‚Ü‚µ‚½i http://xlink.rsc.org/?DOI=C7CP00871F jB(XV“ú 2017”N9ŒŽ8“ú)
- ´…Œ¤ˆêæ¶‚ÌŒ¤‹†¬‰Ê‚ª Green Chemistry ‚̃oƒbƒNƒJƒo[‚ÉÌ—p‚³‚ê‚Ü‚µ‚½iDOI: 10.1039/C7GC00538EjB(XV“ú 2017”N8ŒŽ2“ú)
- ’©‘qæ¶A‚‘–Øæ¶‚ÌŒ¤‹†¬‰Ê“Portable ultrahigh-vacuum sample storage system for polarization-dependent total-reflection fluorescence x-ray absorption fine structure spectroscopy,” (J. Vac. Sci. Technol. A 34 (2), 023201 (2016); doi: 10.1116/1.4936344)‚ªAVS VTD Shop Note Award 2016‚ðŽóÜ‚µ‚Ü‚µ‚½B(XV“ú 2017”N6ŒŽ27“ú)
- ’©‘qæ¶A‚‘–Øæ¶‚ÌŒ¤‹†¬‰Ê"An Origin for Lattice Expansion in PVP-protected Small Pd Metal Nanoparticles".(Authors: Ohba, Tadashi; Kubo, Hitoshi; Ohshima, Y; Makita, Yuichi ; Tanaka, Noriyuki; Uehara, Hiromitsu; Takakusagi, Satoru; Asakura, Kiyotaka) ‚ªBCSJ‚ÉŒfÚ‚³‚êAselected paper‚É‘I‚΂ê‚Ü‚µ‚½B(XV“ú 2017”N5ŒŽ18“ú)
- ‘å’J•¶Íæ¶‚ÌŒ¤‹†¬‰Êu‹à‘®Ž_‰»•¨•²––’†‚Ì“dŽqƒgƒ‰ƒbƒvƒGƒlƒ‹ƒM[•ª•z‘ª’èv‚ªu–kŠC“¹‘åŠw Œ¤‹†ƒV[ƒYWVol.4v‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½iûŽq‘Ì:102ƒy[ƒWAebookF114‚ÖJumpjB(XV“ú 2017”N3ŒŽ17“ú)
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- •Ÿ‰ªŒ¤‹†Žº‚ÆAlex Katz‹³ŽöiUC Berkeley, USAj‚Ƃ̋¤“¯Œ¤‹†‚ªChem. Comm. ‚Éwebo”Å‚³‚êA‚Ü‚½ACS‚ÌC&EN "News of the Week"‚ÉЉ‚ê‚Ü‚µ‚½B
Chem. Comm. : Complete furanics–sugar separations with metal–organic framework NU-1000. Chem. Commun., 2016, DOI: 10.1039/C6CC05864G
C&EN : MOF traps molecules that gum up bioethanol production: Material selectively separates furanics from sugar solutions, http://cen.acs.org/articles/94/i37/MOF-traps-molecules-gum-bioethanol.html(XV“ú 2016”N9ŒŽ21“ú) - ´…Œ¤ˆêæ¶‚ÌŒ¤‹†¬‰Ê‚ªSynfacts‚ÉЉ‚ê‚Ü‚µ‚½B
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(2) Direct Olefination of Alcohols with Sulfones on Pt/C Nanoparticles (Synfacts 2016, 12 (07), 0760, DOI: 10.1055/s-0035-1562263)AŒ³˜_•¶FDirect Olefination of Alcohols with Sulfones by Using Heterogeneous Platinum Catalysts (Chem. Eur. J. 2016, 22,6111–6119, DOI: 10.1002/chem.201505109)(XV“ú 2016”N7ŒŽ19“ú) - ´…Œ¤ˆêæ¶Aûü‘–Ø’Bæ¶‚¨‚æ‚Ñ‘¼‹@ŠÖ‚Æ‚ÌA‹@ŠBŠwK‚ÉŠÖ‚·‚鋤“¯Œ¤‹†‚ªRSC Advances‚ÉŒfÚ‚³‚ê‚Ü‚µ‚½B‚Ü‚½Royal Society of Chemistry‚̃jƒ…[ƒXƒTƒCƒgChemistry World‚ÉЉ‚ê‚Ü‚µ‚½
ihttp://www.rsc.org/chemistryworld/2016/06/machine-learning-catalyst-metal-trends@FMachine-learning accelerates catalytic trend spottingj(XV“ú 2016”N6ŒŽ13“ú) - •ªŽqóŽ_‘f‚É‚æ‚éƒxƒ“ƒWƒ‹ƒAƒ‹ƒR[ƒ‹•”•ªŽ_‰»”½‰žG”}‚ÌŠJ”‚ɬŒ÷
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