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Featured researches published by Junsheng Luo.


Energy and Environmental Science | 2018

Toward high-efficiency, hysteresis-less, stable perovskite solar cells: unusual doping of a hole-transporting material using a fluorine-containing hydrophobic Lewis acid

Junsheng Luo; Jianxing Xia; Hua Yang; Lingling Chen; Zhongquan Wan; Fei Han; Haseeb Ashraf Malik; Xuhui Zhu; Chunyang Jia

Perovskite solar cells (PSCs) have demonstrated high power conversion efficiency (PCE) but inferior long-term stability and remarkable hysteresis. To date, the most efficient PSCs have a n–i–p device architecture and use Li-TFSI/t-BP as standard bi-dopants for the hole-transporting layer (HTL). However, such dopants not only induce deleterious effects on stability but also significantly affect the hysteresis of PSCs. Here, we demonstrate that a fluorine-containing hydrophobic Lewis acid dopant (LAD) can be employed as an effective dopant for PTAA to realize an exceptional fill factor of 0.81 and a record PCE as high as 19.01%, the highest value among the ever reported PSCs based on a novel dopant in the HTL, versus 17.77% for the control device with Li-TFSI/t-BP doped PTAA. To the best of our knowledge, this is the first case in which a PSC based on a novel dopant for the HTL shows higher efficiency than a PSC based on the state-of-the-art bi-dopants Li-TFSI/t-BP. Besides, the LAD-based PSC displays lower J–V hysteresis and much better long-term stability of up to 70 days under air exposure without encapsulation. We believe that this work will pave a new avenue for high-efficiency, hysteresis-less and stable PSCs exploring hydrophobic dopants as alternatives to hydrophilic Li-TFSI/t-BP.


Electrochimica Acta | 2016

Co-sensitization of Dithiafulvenyl-Phenothiazine Based Organic Dyes with N719 for Efficient Dye-Sensitized Solar Cells

Junsheng Luo; Zhongquan Wan; Chunyang Jia; Yan Wang; Xiaochun Wu; Xiaojun Yao


Journal of Power Sources | 2017

The novel dopant for hole-transporting material opens a new processing route to efficiently reduce hysteresis and improve stability of planar perovskite solar cells

Junsheng Luo; Chunyang Jia; Zhongquan Wan; Fei Han; Bowen Zhao; Ruilin Wang


Applied Surface Science | 2017

Dissolution-recrystallization method for high efficiency perovskite solar cells

Fei Han; Junsheng Luo; Zhongquan Wan; Xingzhao Liu; Chunyang Jia


Chinese Chemical Letters | 2016

Recent advances in phenothiazine-based dyes for dye-sensitized solar cells

Junsheng Luo; Zhongquan Wan; Chunyang Jia


Electrochimica Acta | 2016

A co-sensitized approach to efficiently fill the absorption valley, avoid dye aggregation and reduce the charge recombination

Junsheng Luo; Zhongquan Wan; Chunyang Jia; Yan Wang; Xiaochun Wu


Organic Electronics | 2015

Significant improvement of phenothiazine organic dye-sensitized solar cell performance using dithiafulvenyl unit as additional donor

Zhongquan Wan; Chunyang Jia; Yan Wang; Junsheng Luo; Xiaojun Yao


Electrochimica Acta | 2017

Cesium Iodide Interface Modification for High Efficiency, High Stability and Low Hysteresis Perovskite Solar Cells

Fei Han; Junsheng Luo; Bowen Zhao; Zhongquan Wan; Ruilin Wang; Chunyang Jia


Journal of Power Sources | 2017

A functional sulfonic additive for high efficiency and low hysteresis perovskite solar cells

Fei Han; Junsheng Luo; Haseeb Ashraf Malik; Bowen Zhao; Zhongquan Wan; Chunyang Jia


Synthetic Metals | 2016

Enhanced photovoltaic performances of dye-sensitized solar cells sensitized with D-D-π-A phenothiazine-based dyes

Fei Han; Yan Wang; Zhongquan Wan; Chunyang Jia; Junsheng Luo; Xiaojun Yao

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Chunyang Jia

University of Electronic Science and Technology of China

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Zhongquan Wan

University of Electronic Science and Technology of China

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Fei Han

University of Electronic Science and Technology of China

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Bowen Zhao

University of Electronic Science and Technology of China

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Haseeb Ashraf Malik

University of Electronic Science and Technology of China

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Yan Wang

University of Electronic Science and Technology of China

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Jianxing Xia

University of Electronic Science and Technology of China

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Xingzhao Liu

University of Electronic Science and Technology of China

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