D-Index & Metrics Best Publications
Research.com 2022 Rising Star of Science Award Badge

D-Index & Metrics D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines.

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Materials Science D-index 43 Citations 5,913 76 World Ranking 7768 National Ranking 1953
Rising Stars D-index 43 Citations 5,956 82 World Ranking 480 National Ranking 179

Research.com Recognitions

Awards & Achievements

2022 - Research.com Rising Star of Science Award

Overview

What is he best known for?

The fields of study he is best known for:

  • Organic chemistry
  • Polymer
  • Electron

The scientist’s investigation covers issues in Ternary operation, Polymer solar cell, Optoelectronics, Energy conversion efficiency and Band gap. His Polymer solar cell study combines topics in areas such as Visible spectrum, Photoluminescence and Solvent. The study incorporates disciplines such as Dipole and Polymer in addition to Optoelectronics.

The concepts of his Polymer study are interwoven with issues in Open-circuit voltage, Fullerene and Short circuit. Qiaoshi An interconnects Side chain, Crystallinity and Absorption spectroscopy in the investigation of issues within Energy conversion efficiency. His studies deal with areas such as Conjugated system and HOMO/LUMO as well as Band gap.

His most cited work include:

  • Versatile ternary organic solar cells: a critical review (369 citations)
  • Solvent additive-free ternary polymer solar cells with 16.27% efficiency (167 citations)
  • Highly efficient ternary polymer solar cells by optimizing photon harvesting and charge carrier transport (161 citations)

What are the main themes of his work throughout his whole career to date?

His primary areas of study are Energy conversion efficiency, Polymer solar cell, Ternary operation, Optoelectronics and Organic solar cell. His Energy conversion efficiency study combines topics from a wide range of disciplines, such as Open-circuit voltage, Nanotechnology, Charge carrier and Short circuit. His work carried out in the field of Polymer solar cell brings together such families of science as Thiophene, Layer, Solvent and Redistribution.

His Optoelectronics study frequently draws parallels with other fields, such as Absorption. His work on Hybrid solar cell as part of general Organic solar cell study is frequently linked to Small molecule, bridging the gap between disciplines. His research in Doping intersects with topics in Photodetector, Cathode and Quantum efficiency.

He most often published in these fields:

  • Energy conversion efficiency (73.68%)
  • Polymer solar cell (60.53%)
  • Ternary operation (57.89%)

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Versatile ternary organic solar cells: a critical review

Qiaoshi An;Fujun Zhang;Jian Zhang;Weihua Tang.
Energy and Environmental Science (2016)

577 Citations

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.
Energy and Environmental Science (2018)

215 Citations

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

Qiaoshi An;Xiaoling Ma;Jinhua Gao;Fujun Zhang.
Chinese Science Bulletin (2019)

214 Citations

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.
Journal of Materials Chemistry (2017)

206 Citations

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

Xiaoling Ma;Yang Mi;Fujun Zhang;Qiaoshi An.
Advanced Energy Materials (2018)

198 Citations

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

Miao Zhang;Fujun Zhang;Qiaoshi An;Qianqian Sun.
Nano Energy (2016)

192 Citations

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

Qiaoshi An;Fujun Zhang;Wei Gao;Qianqian Sun.
Nano Energy (2018)

185 Citations

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

Pei Cheng;Cenqi Yan;Yang Wu;Jiayu Wang.
Advanced Materials (2016)

183 Citations

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

Lingliang Li;Fujun Zhang;Jian Wang;Qiaoshi An.
Scientific Reports (2015)

179 Citations

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.
Advanced Materials (2018)

169 Citations

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Best Scientists Citing Qiaoshi An

Yongfang Li

Yongfang Li

Soochow University

Publications: 97

He Yan

He Yan

Hong Kong University of Science and Technology

Publications: 82

Chuluo Yang

Chuluo Yang

Wuhan University

Publications: 66

Fujun Zhang

Fujun Zhang

Beijing Jiaotong University

Publications: 61

Yong Cao

Yong Cao

South China University of Technology

Publications: 60

Wei Ma

Wei Ma

Xi'an Jiaotong University

Publications: 60

Xinhui Lu

Xinhui Lu

Chinese University of Hong Kong

Publications: 57

Fei Huang

Fei Huang

South China University of Technology

Publications: 41

Yiwang Chen

Yiwang Chen

Nanchang University

Publications: 39

Jie Min

Jie Min

Wuhan University

Publications: 37

Weihua Tang

Weihua Tang

Nanjing University of Science and Technology

Publications: 37

Maojie Zhang

Maojie Zhang

Soochow University

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Chuanlang Zhan

Chuanlang Zhan

Inner Mongolia Normal University

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Han Young Woo

Han Young Woo

Korea University

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Yingping Zou

Yingping Zou

Central South University

Publications: 32

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Harald Ade

North Carolina State University

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