A
Akira Fujishima
Researcher at University of Tokyo
Publications - 581
Citations - 26134
Akira Fujishima is an academic researcher from University of Tokyo. The author has contributed to research in topics: Photocatalysis & Electrode. The author has an hindex of 82, co-authored 581 publications receiving 24846 citations. Previous affiliations of Akira Fujishima include Dresden University of Technology.
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Ultrastable TiO2 foams derived macro-/meso-porous material and its photocatalytic activity
Yong Zhao,Xintong Zhang,Jin Zhai,Lei Jiang,Zhaoyue Liu,Shunsuke Nishimoto,Taketoshi Murakami,Akira Fujishima,Daoben Zhu +8 more
TL;DR: In this paper, a particle-stabilized TiO 2 icecream-like foam was prepared by a versatile mechanical stirring method, and an open honeycomb-like structure with macro-/meso-porosity was formed.
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Colloidal CdS—Pt photocatalyst stabilized by pendant viologen polymer for photoinduced electron transfer and hydrogen evolution
TL;DR: In this article, the kinectics of electron transfer from colloidal CdS to the electron mediator were studied using laser flash photolysis and a functionalized polymer for electron mediation.
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Observation of Electrochemical C60 Reduction of a Diamond Thin Film Electrode at Room Temperature
TL;DR: In this paper, high conductive boron-doped diamond thin film electrodes were used to examine the cyclic voltammetric behavior of C60 reduction at room temperature as a demonstration of the relatively wide potential window in nonaqueous media.
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Electrochemical Reduction of Liquid CO 2 Drastic Enhancement of Current Density
TL;DR: In this article, a novel electrochemical CO[sub 2] reduction system was developed in which liquid CO was reduced electrochemically at a Cu electrode producing CO, CH, CH[sub 4], C[sub 3], H[sub 5], and HCOOCH[sub 6] with a current density of 420 mA/cm[sup 2] and a current efficiency of 85%.
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X-ray induced photoelectrochemistry on TiO2
Kazuhisa Tamura,Yoshihisa Ohko,Yoshihisa Ohko,Hiroyuki Kawamura,Hideki Yoshikawa,Tetsu Tatsuma,Akira Fujishima,Jun'ichiro Mizuki +7 more
TL;DR: In this article, the electrochemical behavior of TiO2 under X-ray irradiation was studied and it was shown that photoelectrochemical reactions were promoted by X-rays with a high incident photon-current conversion efficiency.