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Zhenxiao Pan

Showing results (1-10 of 41) with videos related to

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The Journal of Physical Chemistry Letters|January 14, 2016
Charge Recombination Control for High Efficiency Quantum Dot Sensitized Solar CellsKe Zhao, Zhenxiao Pan, Xinhua Zhong
ACS Applied Materials & Interfaces|October 16, 2019
ZnS<sub></sub>Se<sub>1-</sub> Alloy Passivation Layer for High-Efficiency Quantum-Dot-Sensitized Solar CellsLinlin Zhang, Huashang Rao, Zhenxiao Pan, et al.
RSC Advances|May 13, 2022
Origin of the effects of PEG additives in electrolytes on the performance of quantum dot sensitized solar cellsYu Sun, Guocan Jiang, Mengsi Zhou, et al.
Chemical Science|April 19, 2024
Improving the efficiency of quantum dot-sensitized solar cells by increasing the QD loading amountZhengyan Zhang, Wenran Wang, Huashang Rao, et al.
ACS Omega|August 29, 2019
Solar Paint from TiO<sub>2</sub> Particles Supported Quantum Dots for Photoanodes in Quantum Dot-Sensitized Solar CellsGencai Shen, Zhonglin Du, Zhenxiao Pan, et al.
ACS Applied Materials & Interfaces|May 17, 2017
Inorganic Ligand Thiosulfate-Capped Quantum Dots for Efficient Quantum Dot Sensitized Solar CellsZhenwei Ren, Juan Yu, Zhenxiao Pan, et al.
Chemical Society Reviews|September 14, 2018
Quantum dot-sensitized solar cellsZhenxiao Pan, Huashang Rao, Iván Mora-Seró, et al.
RSC Advances|May 11, 2022
Comparative advantages of Zn-Cu-In-S alloy QDs in the construction of quantum dot-sensitized solar cellsLiang Yue, Huashang Rao, Jun Du, et al.
ACS Nano|May 28, 2013
Near infrared absorption of CdSe(x)Te(1-x) alloyed quantum dot sensitized solar cells with more than 6% efficiency and high stabilityZhenxiao Pan, Ke Zhao, Jin Wang, et al.
ACS Nano|April 19, 2012
Highly efficient inverted type-I CdS/CdSe core/shell structure QD-sensitized solar cellsZhenxiao Pan, Hua Zhang, Kan Cheng, et al.
Pageof 5

Showing results (1-10 of 41) with videos related to

Sort By:
Pageof 5
The Journal of Physical Chemistry Letters|January 14, 2016
Charge Recombination Control for High Efficiency Quantum Dot Sensitized Solar CellsKe Zhao, Zhenxiao Pan, Xinhua Zhong
ACS Applied Materials & Interfaces|October 16, 2019
ZnS<sub></sub>Se<sub>1-</sub> Alloy Passivation Layer for High-Efficiency Quantum-Dot-Sensitized Solar CellsLinlin Zhang, Huashang Rao, Zhenxiao Pan, et al.
RSC Advances|May 13, 2022
Origin of the effects of PEG additives in electrolytes on the performance of quantum dot sensitized solar cellsYu Sun, Guocan Jiang, Mengsi Zhou, et al.
Chemical Science|April 19, 2024
Improving the efficiency of quantum dot-sensitized solar cells by increasing the QD loading amountZhengyan Zhang, Wenran Wang, Huashang Rao, et al.
ACS Omega|August 29, 2019
Solar Paint from TiO<sub>2</sub> Particles Supported Quantum Dots for Photoanodes in Quantum Dot-Sensitized Solar CellsGencai Shen, Zhonglin Du, Zhenxiao Pan, et al.
ACS Applied Materials & Interfaces|May 17, 2017
Inorganic Ligand Thiosulfate-Capped Quantum Dots for Efficient Quantum Dot Sensitized Solar CellsZhenwei Ren, Juan Yu, Zhenxiao Pan, et al.
Chemical Society Reviews|September 14, 2018
Quantum dot-sensitized solar cellsZhenxiao Pan, Huashang Rao, Iván Mora-Seró, et al.
RSC Advances|May 11, 2022
Comparative advantages of Zn-Cu-In-S alloy QDs in the construction of quantum dot-sensitized solar cellsLiang Yue, Huashang Rao, Jun Du, et al.
ACS Nano|May 28, 2013
Near infrared absorption of CdSe(x)Te(1-x) alloyed quantum dot sensitized solar cells with more than 6% efficiency and high stabilityZhenxiao Pan, Ke Zhao, Jin Wang, et al.
ACS Nano|April 19, 2012
Highly efficient inverted type-I CdS/CdSe core/shell structure QD-sensitized solar cellsZhenxiao Pan, Hua Zhang, Kan Cheng, et al.
Pageof 5