Shuixing Li

About Shuixing Li

Shuixing Li, With an exceptional h-index of 34 and a recent h-index of 34 (since 2020), a distinguished researcher at Zhejiang University, specializes in the field of Organic Phtotovoltaics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Simultaneous Improvements in Efficiency and Stability of Organic Solar Cells via a Symmetric‐Asymmetric Dual‐Acceptor Strategy

Compromising charge generation and recombination of organic photovoltaics with mixed diluent strategy for certified 19.4% efficiency

Refined molecular microstructure and optimized carrier management of multicomponent organic photovoltaics toward 19.3% certified efficiency

Multiphase morphology with enhanced carrier lifetime via quaternary strategy enables high‐efficiency, thick‐film, and large‐area organic photovoltaics

Manipulating charge transfer and transport via intermediary electron acceptor channels enables 19.3% efficiency organic photovoltaics

Achieving and Understanding of Highly Efficient Ternary Organic Photovoltaics: From Morphology and Energy Loss to Working Mechanism

Selection of side groups on simple non‐fullerene acceptors for the application in organic solar cells: From flexible to rigid

Design of non-fused ring acceptors toward high-performance, stable, and low-cost organic photovoltaics

Shuixing Li Information

University

Position

___

Citations(all)

5859

Citations(since 2020)

5268

Cited By

2272

hIndex(all)

34

hIndex(since 2020)

34

i10Index(all)

48

i10Index(since 2020)

48

Email

University Profile Page

Google Scholar

Shuixing Li Skills & Research Interests

Organic Phtotovoltaics

Top articles of Shuixing Li

Simultaneous Improvements in Efficiency and Stability of Organic Solar Cells via a Symmetric‐Asymmetric Dual‐Acceptor Strategy

Advanced Energy Materials

2023/5

Compromising charge generation and recombination of organic photovoltaics with mixed diluent strategy for certified 19.4% efficiency

Advanced Materials

2023/5

Refined molecular microstructure and optimized carrier management of multicomponent organic photovoltaics toward 19.3% certified efficiency

Energy & Environmental Science

2023

Multiphase morphology with enhanced carrier lifetime via quaternary strategy enables high‐efficiency, thick‐film, and large‐area organic photovoltaics

Advanced Materials

2022/11

Manipulating charge transfer and transport via intermediary electron acceptor channels enables 19.3% efficiency organic photovoltaics

Advanced Energy Materials

2022/10

Achieving and Understanding of Highly Efficient Ternary Organic Photovoltaics: From Morphology and Energy Loss to Working Mechanism

2022/9

Selection of side groups on simple non‐fullerene acceptors for the application in organic solar cells: From flexible to rigid

Journal of Polymer Science

2022/8/1

Design of non-fused ring acceptors toward high-performance, stable, and low-cost organic photovoltaics

Accounts of Materials Research

2022/5/25

Asymmetric electron acceptor enables highly luminescent organic solar cells with certified efficiency over 18%

Nature Communications

2022/5/11

Desired open-circuit voltage increase enables efficiencies approaching 19% in symmetric-asymmetric molecule ternary organic photovoltaics

Joule

2022/3/16

A new end group on nonfullerene acceptors endows efficient organic solar cells with low energy losses

Advanced Functional Materials

2022/2

Mechanism study on organic ternary photovoltaics with 18.3% certified efficiency: from molecule to device

Energy & Environmental Science

2022

Synergistic Effects of Chlorination and Branched Alkyl Side Chain on the Photovoltaic Properties of Simple Non‐Fullerene Acceptors with Quinoxaline as the Core.

ChemSusChem

2021/9/6

High‐Performance Upscaled Indium Tin Oxide–Free Organic Solar Cells with Visual Esthetics and Flexibility

Solar RRL

2021/9

A benzobis (thiazole)-based wide bandgap polymer donor enables over 15% efficiency organic photovoltaics with a flat energetic offset

Macromolecules

2021/8/19

Unveiling structure-performance relationships from multi-scales in non-fullerene organic photovoltaics

Nature Communications

2021/7/30

Non-fullerene acceptors with nitrogen-containing six-membered heterocycle cores for the applications in organic solar cells

Solar Energy Materials and Solar Cells

2021/6/15

Conformation tuning of simple non-fused electron acceptors via oxygen and sulfur substitutions and its effects on photovoltaics

Multifunctional Materials

2021/4/14

Shuixing Li
Shuixing Li

H-Index: 22

Minmin Shi
Minmin Shi

H-Index: 32

Layer‐by‐layer processed ternary organic photovoltaics with efficiency over 18%

Advanced Materials

2021/3

Intrinsically chemo-and thermostable electron acceptors for efficient organic solar cells

Bulletin of the Chemical Society of Japan

2021/1

See List of Professors in Shuixing Li University(Zhejiang University)

Co-Authors

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