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Rising Stars
2025

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Rising Stars

D-Index
54
Citations
8868
World Ranking
227
National Ranking
77

Materials Science

D-Index
56
Citations
9580
World Ranking
8374
National Ranking
2430

Engineering and Technology

D-Index
56
Citations
9580
World Ranking
2896
National Ranking
585

Research.com Recognitions

  • 2025 - Research.com Rising Stars Award

Overview

Qiaoshi An is affiliated with the Beijing Institute of Technology in China. Their research primarily spans the fields of engineering and materials science, with a focus on electrical and electronic engineering as the main subfield. Additional areas of expertise include polymers and plastics, materials chemistry, electronic, optical and magnetic materials, as well as atomic and molecular physics and optics.

They have contributed extensively to topics related to organic electronics and photovoltaics, conducting polymers and their applications, perovskite materials and applications, crystallization and solubility studies, X-ray diffraction in crystallography, thin-film transistor technologies, and organic and molecular conductors research.

Qiaoshi An's recent publications demonstrate a strong emphasis on polymer solar cells and organic photovoltaic technologies. Some of their notable papers include:

  • "Alloy-like ternary polymer solar cells with over 17.2% efficiency" (2020, Science Bulletin)
  • "Two compatible polymer donors contribute synergistically for ternary organic solar cells with 17.53% efficiency" (2020, Energy & Environmental Science)

Coauthors frequently collaborating with Qiaoshi An include Jin-Liang Wang, Mengyun Jiang, Han Young Woo, Hong-Fu Zhi, and Asif Mahmood.

Their work is regularly published in several scientific venues, including:

  • The Cambridge Structural Database
  • Energy & Environmental Science
  • Angewandte Chemie International Edition
  • Angewandte Chemie
  • Advanced Functional Materials

Qiaoshi An's research interests emphasize the design, synthesis, and optimization of polymer and organic materials that contribute to advances in efficient solar energy harvesting and electronic devices. The achievements in high-efficiency ternary organic solar cells with thick active layers and low energy losses highlight the focus on practical applications within the renewable energy sector.

Best Publications

  • Versatile ternary organic solar cells: a critical review

    Qiaoshi An;Fujun Zhang;Jian Zhang;Weihua Tang

  • Asymmetrical Ladder‐Type Donor‐Induced Polar Small Molecule Acceptor to Promote Fill Factors Approaching 77% for High‐Performance Nonfullerene Polymer Solar Cells

    Wei Gao;Wei Gao;Miao Zhang;Tao Liu;Ruijie Ming

  • Alloy-like ternary polymer solar cells with over 17.2% efficiency

    Qiaoshi An;Jian Wang;Wei Gao;Wei Gao;Xiaoling Ma

  • Solvent additive-free ternary polymer solar cells with 16.27% efficiency

    Qiaoshi An;Xiaoling Ma;Jinhua Gao;Fujun Zhang

  • Achieving EQE of 16,700% in P3HT:PC71BM based photodetectors by trap-assisted photomultiplication.

    Lingliang Li;Fujun Zhang;Jian Wang;Qiaoshi An

  • Efficient ternary non-fullerene polymer solar cells with PCE of 11.92% and FF of 76.5%

    Miao Zhang;Wei Gao;Fujun Zhang;Yang Mi

  • Ternary nonfullerene polymer solar cells with efficiency >13.7% by integrating the advantages of the materials and two binary cells

    Xiaoling Ma;Wei Gao;Wei Gao;Jiangsheng Yu;Qiaoshi An

  • Alloy Acceptor: Superior Alternative to PCBM toward Efficient and Stable Organic Solar Cells.

    Pei Cheng;Cenqi Yan;Yang Wu;Jiayu Wang

  • Nematic liquid crystal materials as a morphology regulator for ternary small molecule solar cells with power conversion efficiency exceeding 10

    Miao Zhang;Fujun Zhang;Qiaoshi An;Qianqian Sun

  • Efficient Ternary Polymer Solar Cells with Two Well‐Compatible Donors and One Ultranarrow Bandgap Nonfullerene Acceptor

    Xiaoling Ma;Yang Mi;Fujun Zhang;Qiaoshi An

  • Over 14.5% efficiency and 71.6% fill factor of ternary organic solar cells with 300 nm thick active layers

    Jinhua Gao;Wei Gao;Xiaoling Ma;Zhenghao Hu

  • Two compatible polymer donors contribute synergistically for ternary organic solar cells with 17.53% efficiency

    Qiaoshi An;Junwei Wang;Xiaoling Ma;Jinhua Gao

  • High-efficiency and air stable fullerene-free ternary organic solar cells

    Qiaoshi An;Fujun Zhang;Wei Gao;Qianqian Sun

  • Highly efficient ternary polymer solar cells by optimizing photon harvesting and charge carrier transport

    Miao Zhang;Fujun Zhang;Qiaoshi An;Qianqian Sun

  • Semitransparent ternary nonfullerene polymer solar cells exhibiting 9.40% efficiency and 24.6% average visible transmittance

    Zhenghao Hu;Jian Wang;Zhi Wang;Wei Gao;Wei Gao

  • Over 14% efficiency all-polymer solar cells enabled by a low bandgap polymer acceptor with low energy loss and efficient charge separation

    Qunping Fan;Qiaoshi An;Yuanbao Lin;Yuxin Xia

  • Over 16.7% efficiency of ternary organic photovoltaics by employing extra PC 71 BM as morphology regulator

    Jinhua Gao;Jian Wang;Qiaoshi An;Xiaoling Ma

  • Over 13% Efficiency Ternary Nonfullerene Polymer Solar Cells with Tilted Up Absorption Edge by Incorporating a Medium Bandgap Acceptor

    Miao Zhang;Zuo Xiao;Wei Gao;Wei Gao;Qishi Liu

  • Semitransparent polymer solar cells with 12.37% efficiency and 18.6% average visible transmittance

    Zhenghao Hu;Zhi Wang;Qiaoshi An;Fujun Zhang

  • Ternary Nonfullerene Polymer Solar Cells with a Power Conversion Efficiency of 11.6% by Inheriting the Advantages of Binary Cells

    Zhenghao Hu;Fujun Zhang;Qiaoshi An;Miao Zhang

  • A Synergistic Strategy of Manipulating the Number of Selenophene Units and Dissymmetric Central Core of Small Molecular Acceptors Enables Polymer Solar Cells with 17.5 % Efficiency.

    Can Yang;Qiaoshi An;Hai-Rui Bai;Hong-Fu Zhi

  • Highly Efficient Parallel-Like Ternary Organic Solar Cells

    Tao Liu;Xiaonan Xue;Lijun Huo;Xiaobo Sun

Frequent Co-Authors

Fujun Zhang
Fujun Zhang Beijing Jiaotong University
Miao Zhang
Miao Zhang Beijing Jiaotong University
Chuluo Yang
Chuluo Yang Shenzhen University
Weihua Tang
Weihua Tang Nanjing University of Science and Technology
Xiao Li Zhang
Xiao Li Zhang Xiamen University
Bin Hu
Bin Hu University of Tennessee at Knoxville
Xinfeng Liu
Xinfeng Liu National Center for Nanoscience and Technology, China
Jianbo Wang
Jianbo Wang Wuhan University
Liming Ding
Liming Ding National Center for Nanoscience and Technology, China
Zhenghui Luo
Zhenghui Luo Shenzhen University

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