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Toshihiro Takashima

Showing results (11-20 of 16) with videos related to

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The Journal of Chemical Physics|July 10, 2020
Red light-inducible overall water-splitting photocatalyst, gold-inserted zinc rhodium oxide and bismuth vanadium oxide heterojunction, connected using gold prepared by sputtering in ionic liquidMasaomi Yoda, Toshihiro Takashima, Kazutaka Akiyoshi, et al.
Chemical Communications (Cambridge, England)|June 17, 2026
Near-infrared-driven carbon dioxide reduction at 850 nm using water as electron and proton source over a directly connected silver vanadate and zinc rhodate Z-scheme photocatalystJingjing Zhang, Masaomi Yoda, Masatoshi Yanagida, et al.
Chemical Communications (Cambridge, England)|August 21, 2023
Near-infrared light-inducible Z-scheme overall water-splitting photocatalyst without an electron mediatorHiroshi Irie, Masaomi Yoda, Hiroshi Miyashita, et al.
Nature Communications|July 1, 2014
Regulating proton-coupled electron transfer for efficient water splitting by manganese oxides at neutral pHAkira Yamaguchi, Riko Inuzuka, Toshihiro Takashima, et al.
Physical Chemistry Chemical Physics : PCCP|July 9, 2016
A heterojunction photocatalyst composed of zinc rhodium oxide, single crystal-derived bismuth vanadium oxide, and silver for overall pure-water splitting under visible light up to 740 nmRyoya Kobayashi, Toshihiro Takashima, Satoshi Tanigawa, et al.
Chemical Communications (Cambridge, England)|January 14, 2015
Photocatalytic hydrogen evolution over β-iron silicide under infrared-light irradiationMasaharu Yoshimizu, Ryoya Kobayashi, Makoto Saegusa, et al.
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Showing results (11-20 of 16) with videos related to

Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 16 results.
The Journal of Chemical Physics|July 10, 2020
Red light-inducible overall water-splitting photocatalyst, gold-inserted zinc rhodium oxide and bismuth vanadium oxide heterojunction, connected using gold prepared by sputtering in ionic liquidMasaomi Yoda, Toshihiro Takashima, Kazutaka Akiyoshi, et al.
Chemical Communications (Cambridge, England)|June 17, 2026
Near-infrared-driven carbon dioxide reduction at 850 nm using water as electron and proton source over a directly connected silver vanadate and zinc rhodate Z-scheme photocatalystJingjing Zhang, Masaomi Yoda, Masatoshi Yanagida, et al.
Chemical Communications (Cambridge, England)|August 21, 2023
Near-infrared light-inducible Z-scheme overall water-splitting photocatalyst without an electron mediatorHiroshi Irie, Masaomi Yoda, Hiroshi Miyashita, et al.
Nature Communications|July 1, 2014
Regulating proton-coupled electron transfer for efficient water splitting by manganese oxides at neutral pHAkira Yamaguchi, Riko Inuzuka, Toshihiro Takashima, et al.
Physical Chemistry Chemical Physics : PCCP|July 9, 2016
A heterojunction photocatalyst composed of zinc rhodium oxide, single crystal-derived bismuth vanadium oxide, and silver for overall pure-water splitting under visible light up to 740 nmRyoya Kobayashi, Toshihiro Takashima, Satoshi Tanigawa, et al.
Chemical Communications (Cambridge, England)|January 14, 2015
Photocatalytic hydrogen evolution over β-iron silicide under infrared-light irradiationMasaharu Yoshimizu, Ryoya Kobayashi, Makoto Saegusa, et al.
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