Bin Kan

About Bin Kan

Bin Kan, With an exceptional h-index of 43 and a recent h-index of 37 (since 2020), a distinguished researcher at Nankai University, specializes in the field of Organic semiconductor, solar cells.

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

Wide-bandgap donor polymers from organic photovoltaics as dopant-free hole transport layers for perovskite solar cells

2, 5-Dichloro-3, 4-diiodothiophene as a Versatile Solid Additive for High-performance Organic Solar Cells

Delicate chemical structure regulation of nonfullerene acceptor for efficient and large thickness organic solar cells

A case study of comparing two dimerized acceptor molecules built by different branch-connected and terminal-connected approaches

Balancing Flexible Side Chains on 2D Conjugated Acceptors Enables High‐Performance Organic Solar Cell

What is the Limit Size of 2D Conjugated Extension on Central Units of Small Molecular Acceptors in Organic Solar Cells?

High-efficiency organic solar cells enabled by nonfullerene acceptors with varying alkyloxy substitution positions of the phenyl outer side chains

Multiarmed Aromatic Ammonium Salts Boost the Efficiency and Stability of Inverted Organic Solar Cells

Bin Kan Information

University

Position

University of Washington/

Citations(all)

9863

Citations(since 2020)

5618

Cited By

7236

hIndex(all)

43

hIndex(since 2020)

37

i10Index(all)

80

i10Index(since 2020)

72

Email

University Profile Page

Google Scholar

Bin Kan Skills & Research Interests

Organic semiconductor

solar cells

Top articles of Bin Kan

Wide-bandgap donor polymers from organic photovoltaics as dopant-free hole transport layers for perovskite solar cells

Chemical Engineering Journal

2024/4/16

2, 5-Dichloro-3, 4-diiodothiophene as a Versatile Solid Additive for High-performance Organic Solar Cells

Nano Energy

2024/4/10

Delicate chemical structure regulation of nonfullerene acceptor for efficient and large thickness organic solar cells

Science China Chemistry

2024/4/9

A case study of comparing two dimerized acceptor molecules built by different branch-connected and terminal-connected approaches

Science China Chemistry

2024/3/29

Balancing Flexible Side Chains on 2D Conjugated Acceptors Enables High‐Performance Organic Solar Cell

Small

2024/3/28

What is the Limit Size of 2D Conjugated Extension on Central Units of Small Molecular Acceptors in Organic Solar Cells?

Small

2024/3/15

High-efficiency organic solar cells enabled by nonfullerene acceptors with varying alkyloxy substitution positions of the phenyl outer side chains

Journal of Materials Chemistry C

2024/2/1

Bin Kan
Bin Kan

H-Index: 34

Yongsheng Chen
Yongsheng Chen

H-Index: 47

Multiarmed Aromatic Ammonium Salts Boost the Efficiency and Stability of Inverted Organic Solar Cells

Journal of the American Chemical Society

2024/1/24

Binary All‐polymer Solar Cells with a Perhalogenated‐Thiophene‐Based Solid Additive Surpass 18% Efficiency

Angewandte Chemie

2024/2/26

Propeller vs Quasi‐Planar 6‐Cantilever Small Molecular Platforms with Extremely Two‐Dimensional Conjugated Extension

Angewandte Chemie

2023/12/4

Binary all-polymer solar cells with efficiency over 17% by fine-tuning halogenated thiophene linkers of polymer acceptors

Nano Energy

2023/11/1

Complete peripheral fluorination of the small‐molecule acceptor in organic solar cells yields efficiency over 19%

Angewandte Chemie International Edition

2023/10/26

Electronic Configuration Tuning of Centrally Extended Non‐Fullerene Acceptors Enabling Organic Solar Cells with Efficiency Approaching 19%

Angewandte Chemie International Edition

2023/10/16

Terminally Chlorinated and Thiophene‐linked Acceptor‐Donor‐Acceptor Structured 3D Acceptors with Versatile Processability for High‐efficiency Organic Solar Cells

Angewandte Chemie International Edition

2023/9/18

A rare case of brominated small molecule acceptors for high-efficiency organic solar cells

Nature Communications

2023/8/5

P-doped all-small-molecule organic solar cells with power conversion efficiency of 17.73%

Science China Chemistry

2023/8

Molecular packing and dielectric property optimization through peripheral halogen swapping enables binary organic solar cells with an efficiency of 18.77%

Advanced Functional Materials

2023/8

A Broad-Spectrum Solid Additive to Further Boost High-Efficiency Organic Solar Cells via Morphology Regulation

ACS Energy Letters

2023/7/24

Oligomeric Acceptor Enables High‐Performance and Robust All‐Polymer Solar Cells with 17.4% Efficiency

Advanced Energy Materials

2023/5

New Polymerized Small Molecular Acceptors with Non‐Aromatic π‐Conjugated Linkers for Efficient All‐Polymer Solar Cells

Advanced Functional Materials

2023/5

See List of Professors in Bin Kan University(Nankai University)