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Featured researches published by Kanae Hori.


Nanomaterials | 2018

Interface Passivation Effects on the Photovoltaic Performance of Quantum Dot Sensitized Inverse Opal TiO2 Solar Cells

Kanae Hori; Yaohong Zhang; Pimsiri Tusamalee; Naoki Nakazawa; Yasuha Yoshihara; Ruixiang Wang; Taro Toyoda; Shuzi Hayase; Qing Shen

Quantum dot (QD)-sensitized solar cells (QDSSCs) are expected to achieve higher energy conversion efficiency than traditional single-junction silicon solar cells due to the unique properties of QDs. An inverse opal (IO)-TiO2 (IO-TiO2) electrode is useful for QDSSCs because of its three-dimensional (3D) periodic nanostructures and better electrolyte penetration compared to the normal nanoparticles (NPs)-TiO2 (NPs-TiO2) electrode. We find that the open-circuit voltages Voc of the QDSSCs with IO-TiO2 electrodes are higher than those of QDSSCs with NPs-TiO2 electrodes. One important strategy for enhancing photovoltaic conversion efficiency of QDSSCs with IO-TiO2 electrodes is surface passivation of photoanodes using wide-bandgap semiconducting materials. In this study, we have proposed surface passivation on IO-TiO2 with ZnS coating before QD deposition. The efficiency of QDSSCs with IO-TiO2 electrodes is largely improved (from 0.74% to 1.33%) because of the enhancements of Voc (from 0.65 V to 0.74 V) and fill factor (FF) (from 0.37 to 0.63). This result indicates that ZnS passivation can reduce the interfacial recombination at the IO-TiO2/QDs and IO-TiO2/electrolyte interfaces, for which two possible explanations can be considered. One is the decrease of recombination at IO-TiO2/electrolyte interfaces, and the other one is the reduction of the back-electron injection from the TiO2 electrode to QDs. All of the above results are effective for improving the photovoltaic properties of QDSSCs.


Journal of Modern Physics | 2017

Photovoltaic Properties of CdSe Quantum Dot Sensitized Inverse Opal TiO 2 Solar Cells: The Effect of TiCl 4 Post Treatment

Motoki Hironaka; Taro Toyoda; Kanae Hori; Yuhei Ogomi; Shuzi Hayase; Qing Sheng


The Japan Society of Applied Physics | 2018

Photovoltaic properties of Sb 2 S 3 sensitized solid state solar cell with ZnS passivation

Shuichiro Fujino; Naoki Nakazawa; Kanae Hori; Taichi Kamisaka; Shuhei Ozu; Taro Toyoda; Shuzi Hayase; Qing Shen


The Japan Society of Applied Physics | 2018

Exponential optical absorption edge of PbS quantum dots adsorbed on single crystal rutile-TiO 2 characterized with photoacoustic and absorbance spectroscopy

Taro Toyoda; Qing Shen; Kanae Hori; Naoki Nakazawa; Keita Kamiyama; Shuzi Hayase


The Japan Society of Applied Physics | 2018

Crystal growth and electronic structure of PbS quantum dots adsorbed on single crystal rutile-TiO 2

Taro Toyoda; Qing Shen; Kanae Hori; Naoki Nakazawa; Keita Kamiyama; Shuzi Hayase


The Japan Society of Applied Physics | 2018

Surface Passivation Effect on the Photovoltaic Properties of Quantum Dot Solar Cell

Kanae Hori; Shuichiro Fujino; Taro Toyoda; Shuzi Hayase; Qing Shen


The Japan Society of Applied Physics | 2018

Study on Sb 2 S 3 solid state solar cells with inverse opal nanostructured TiO 2

Yasuha Yoshihara; Kanae Hori; Shuichiro Fujino; Taro Toyoda; Shuji Hayase; Qing Shen


Journal of Physical Chemistry C | 2018

Crystal Growth, Exponential Optical Absorption Edge, and Ground State Energy Level of PbS Quantum Dots Adsorbed on the (001), (110), and (111) Surfaces of Rutile-TiO2

Taro Toyoda; Qing Shen; Kanae Hori; Naoki Nakazawa; Keita Kamiyama; Shuzi Hayase


The Japan Society of Applied Physics | 2017

Application of Inverse Opal TiO 2 Electrodes to Solid State Semiconductor-Sensitized Solar Cells and Improvement of Photovoltaic Properties

Motoki Hironaka; Taro Toyoda; Kanae Hori; Yuhei Ogomi; Shuzi Hayase; Qing Shen


The Japan Society of Applied Physics | 2017

Optical Absorption and Ionization Energy of PbS Quantum Dots Adsorbed on the (001), (110), and (111) Surfaces of Single Crystal Rutile TiO 2

Taro Toyoda; Qing Shen; Kanae Hori; Keita Kamiyama; Shuzi Hayase

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Taro Toyoda

University of Electro-Communications

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Qing Shen

University of Electro-Communications

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Shuzi Hayase

Kyushu Institute of Technology

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Naoki Nakazawa

University of Electro-Communications

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Shuichiro Fujino

University of Electro-Communications

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Yuhei Ogomi

Kyushu Institute of Technology

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Shuji Hayase

Kyushu Institute of Technology

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Yaohong Zhang

University of Electro-Communications

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Ruixiang Wang

Beijing University of Civil Engineering and Architecture

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