研究キーワード
研究分野
研究室概要
機械学習・深層学習やハイスループット第一原理計算といったデジタル技術の力で、物質の新しい学理を見出し、新材料創成を実現する未踏領域を開拓すべく、研究・教育を行う。
学術論文
"Enhancing Photocathodic Performances of Particulate-CuGaS2-Based Photoelectrodes via Conjugation with Conductive Organic Polymers for Efficient Solar-Driven Hydrogen Production and CO2 Reducti," ACS Applied Materials & Interfaces, vol.16, pp36423-36432, 2 Jul. 2024
Takayama Tomoaki, Akihide Iwase, Akihiko Kudo
[ NAISTレポジトリ ] [ doi:10.1021/acsami.4c06083 ]
"Extrapolation performance improvement by quantum chemical calculations for machine-learning-based predictions of flow-synthesized binary copolymers," Digital Discovery, vol.2, pp809-818, 8 May. 2023
Takayama Tomoaki, TAKASUKA Shogo, Yosuke Harashima, Mikiya Fujii, Tomoyuki Miyao, Hiroharu Ajiro, Shunto Oikawa, Takayoshi Yoshimura, Sho Ito, Shigehito Asano, Akira Kurosawa, Tetsunori Sugawara, Miho Hatanaka, Takamitsu Matsubara, Yu-ya Ohnishi
[ doi:10.1039/D2DD00144F ]
"Water splitting and CO2 reduction over an AgSr2Ta5O15 photocatalyst developed by a valence band control strategy," Chem. Commun., 22 Mar. 2023
Takayama Tomoaki
[ doi:10.1039/D3CC01481A ]
"Durable Electrocatalytic CO2 Reduction Using Intermetallic Compound PdIn Nanoparticles and Their Application to a Solar Energy Harvesting System," ACS Appl. Energy Mater., vol.6, pp2793-2803, 21 Feb. 2023
Takayama Tomoaki
[ doi:10.1021/acsaem.2c03638 ]
"CO2 Reduction Using Water as an Electron Donor over Heterogeneous Photocatalysts Aiming at Artificial Photosynthesis," Acc. Chem. Res., vol.55, pp966-977, 1 Mar. 2022
Takayama Tomoaki
[ doi:10.1021/acs.accounts.1c00676 ]
"Mechanochemical Acetylene Hydrogenation on Fragments of Ni-based Alloys Containing Oxophilic Metal Elements ," Chem. Lett., vol.51, pp111-113, 22 Jan. 2022
Takayama Tomoaki
[ doi:10.1246/cl.210600 ]
"Chemoselective Hydrogenation of Nitroarenes Using Ni−Fe Alloy Catalysts at Ambient Pressure," ChemistrySelect, vol.6, pp5538-5544, 12 Jun. 2021
Takayama Tomoaki
[ doi:10.1002/slct.202101571 ]
"Hydrosilylation of carbonyls over electron-enriched Ni sites of intermetallic compound Ni3Ga heterogeneous catalyst," Chem. Commun., vol.57, pp4239-4242, 7 Apr. 2021
Takayama Tomoaki
[ doi:10.1039/D0CC07916B ]
"Photocathode Characteristics of a Spray-Deposited Cu2ZnGeS4 Thin Film for CO2 Reduction in a CO2-Saturated Aqueous Solution," ACS Appl. Energy Mater., vol.2, pp6911-6918, 28 Aug. 2019
Takayama Tomoaki
[ doi:10.1021/acsaem.9b01418 ]
"Surface Modification of PdZn Nanoparticles via Galvanic Replacement for the Selective Hydrogenation of Terminal Alkynes," ACS Appl. Nano Mater., vol.2, pp3307-3314, 7 May. 2019
Takayama Tomoaki
[ doi:10.1021/acsanm.9b00761 ]
"Highly Active Ni- and Co-Based Bimetallic Catalysts for Hydrogen Production From Ammonia-Borane," Frontiers in Chemistry, vol.7, pp138, 20 Mar. 2019
Takayama Tomoaki
[ doi:10.3389/fchem.2019.00138 ]
"Photoelectrochemical Reduction of CO2 to CO Using a CuGaS2 Thin-film Photocathode Prepared by a Spray Pyrolysis Method ," Chem. Lett., vol.47, pp1424-1427, 22 Sep. 2018
Takayama Tomoaki
[ doi:10.1246/cl.180720 ]
"Z-Schematic and visible-light-driven CO2 reduction using H2O as an electron donor by a particulate mixture of a Ru-complex/(CuGa)1−xZn2xS2 hybrid catalyst, BiVO4 and an electron mediator," Chem. Commun., vol.54, pp10199-10202, 14 Aug. 2018
Takayama Tomoaki
[ doi:10.1039/C8CC05505J ]
"Photocatalytic CO2 reduction using water as an electron donor over Ag-loaded metal oxide photocatalysts consisting of several polyhedra of Ti4+, Zr4+, and Ta5+," Journal of Photochemistry and Photobiology A: Chemistry, vol.358, pp416-421, 10 Apr. 2018
Takayama Tomoaki
[ doi:10.1016/j.jphoto- chem.2017.10.002 ]
"Au25-Loaded BaLa4Ti4O15 Water-Splitting Photocatalyst with Enhanced Activity and Durability Produced Using New Chromium Oxide Shell Formation Method," J. Phys. Chem. C, vol.122, pp13669-13681, 7 Feb. 2018
Takayama Tomoaki
[ doi:10.1021/acs.jpcc.8b00151 ]
"Enhancement of CO2 reduction activity under visible light irradiation over Zn-based metal sulfides by combination with Ru-complex catalysts," Applied Catalysis B: Environmental, vol.224, pp572-578, 7 Nov. 2017
Takayama Tomoaki
[ doi:10.1016/j.apcatb.2017.10.053 ]
"Development of Various Metal Sulfide Photocatalysts Consisting of d0, d5, and d10 Metal Ions for Sacrificial H2 Evolution under Visible Light Irradiation ," Chem. Lett., vol.46, pp616-619, 27 Mar. 2017
Takayama Tomoaki
[ doi:10.1246/cl.161192 ]
"Photocatalytic CO2 reduction using water as an electron donor by a powdered Z-scheme system consisting of metal sulfide and an RGO–TiO2 composite," Faraday Discuss., vol.198, pp397-407, 13 Mar. 2017
Takayama Tomoaki
[ doi:10.1039/C6FD00215C ]
"Boron-doped diamond semiconductor electrodes: Efficient photoelectrochemical CO2 reduction through surface modification," Scientific Reports, vol.6, pp38010, 28 Nov. 2016
Takayama Tomoaki
[ doi:10.1038/srep38010 ]
"Highly Active NaTaO3-Based Photocatalysts for CO2 Reduction to Form CO Using Water as the Electron Donor," ChemSusChem, vol.10, pp112-118, 22 Nov. 2016
Takayama Tomoaki
[ doi:10.1002/cssc.201601360 ]
"Water Splitting and CO2 Reduction under Visible Light Irradiation Using Z-Scheme Systems Consisting of Metal Sulfides, CoOx-Loaded BiVO4, and a Reduced Graphene Oxide Electron Mediator," J. Am. Chem. Soc., vol.138, pp10260-10264, 26 Jul. 2016
Takayama Tomoaki
[ doi:10.1021/jacs.6b05304 ]
"Photocatalytic Water Splitting and CO2 Reduction over KCaSrTa5O15 Nanorod Prepared by a Polymerized Complex Method ," Bulletin of the Chemical Society of Japan, vol.88, pp538-543, 26 Jan. 2015
Takayama Tomoaki
[ doi:10.1246/bcsj.20140350 ]
"Controlled Loading of Small Aun Clusters (n = 10–39) onto BaLa4Ti4O15 Photocatalysts: Toward an Understanding of Size Effect of Cocatalyst on Water-Splitting Photocatalytic Activity," J. Phys. Chem. C, vol.119, pp11224-11232, 14 Jan. 2015
Takayama Tomoaki
[ doi:10.1021/jp5122432 ]
"Photocatalytic Water Splitting over Rod-shaped K3Ta3Si2O13 and Block-shaped Ba3Ta6Si4O26 Prepared by Flux Method ," Chem. Lett., vol.44, pp306-308, 5 Dec. 2014
Takayama Tomoaki
[ doi:10.1246/cl.141000 ]
"The KCaSrTa5O15 photocatalyst with tungsten bronze structure for water splitting and CO2 reduction," Phys. Chem. Chem. Phys., vol.16, pp24417-24422 , 6 Oct. 2014
Takayama Tomoaki
[ doi:10.1039/C4CP03892D ]
"Effects of Cocatalyst on Carrier Dynamics of a Titanate Photocatalyst with Layered Perovskite Structure," J. Phys. Chem. C, vol.118, pp10972-10979, 30 Apr. 2014
Takayama Tomoaki
[ doi:10.1021/jp502775y ]
"Enhanced photocatalytic water splitting by BaLa4Ti4O15 loaded with ∼1 nm gold nanoclusters using glutathione-protected Au25 clusters," Nanoscale, vol.5, pp7188-7192 , 13 May. 2013
Takayama Tomoaki
[ doi:10.1039/C3NR01888A ]
"Photocatalytic Reduction of Carbon Dioxide over Ag Cocatalyst-Loaded ALa4Ti4O15 (A = Ca, Sr, and Ba) Using Water as a Reducing Reagent," J. Am. Chem. Soc., vol.133, pp20863-20868, 16 Nov. 2011
Takayama Tomoaki
[ doi:10.1021/ja207586e ]
受賞
所属学協会
資料

藤井 幹也

職位 教授
領域 物質創成科学領域 基幹研究室
研究室 マテリアルズ・インフォマティクス

機械学習・深層学習やハイスループット第一原理計算といったデジタル技術の力で、物質の新しい学理を見出し、新材料創成を実現する未踏領域を開拓すべく、研究・教育を行う。

原嶋 庸介

職位 助教
領域 物質創成科学領域 基幹研究室
研究室 マテリアルズ・インフォマティクス

機械学習・深層学習やハイスループット第一原理計算といったデジタル技術の力で、物質の新しい学理を見出し、新材料創成を実現する未踏領域を開拓すべく、研究・教育を行う。

高須賀 聖五

職位 助教
領域 物質創成科学領域 基幹研究室
研究室 マテリアルズ・インフォマティクス

機械学習・深層学習やハイスループット第一原理計算といったデジタル技術の力で、物質の新しい学理を見出し、新材料創成を実現する未踏領域を開拓すべく、研究・教育を行う。