Sangmin Chae

About Sangmin Chae

Sangmin Chae, With an exceptional h-index of 14 and a recent h-index of 13 (since 2020), a distinguished researcher at University of California, Santa Barbara, specializes in the field of Materials Physics & Chemistry, Structure, Opto-electronics.

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

Air‐stable Perylene Diimide Trimer Material for n‐type Organic Electrochemical Transistors

Highly Sensitive Resonance-Enhanced Organic Photodetectors for Shortwave Infrared Sensing

High‐Performance Wearable Organic Photodetectors by Molecular Design and Green Solvent Processing for Pulse Oximetry and Photoplethysmography

Impact of Molecular Weight on the Ionic and Electronic Transport of Self‐Doped Conjugated Polyelectrolytes Relevant to Organic Electrochemical Transistors

Green-solvent-processed high-performance broadband organic photodetectors

Impact of Thermal Stress on Device Physics and Morphology in Organic Photodetectors

Additive-free molecular acceptor organic solar cells processed from a biorenewable solvent approaching 15% efficiency

Side-chain engineering of self-doped conjugated polyelectrolytes for organic electrochemical transistors

Sangmin Chae Information

University

Position

Department of Chemistry and Biochemistry

Citations(all)

531

Citations(since 2020)

489

Cited By

161

hIndex(all)

14

hIndex(since 2020)

13

i10Index(all)

22

i10Index(since 2020)

20

Email

University Profile Page

Google Scholar

Sangmin Chae Skills & Research Interests

Materials Physics & Chemistry

Structure

Opto-electronics

Top articles of Sangmin Chae

Air‐stable Perylene Diimide Trimer Material for n‐type Organic Electrochemical Transistors

Advanced Materials

2024/3/24

Highly Sensitive Resonance-Enhanced Organic Photodetectors for Shortwave Infrared Sensing

ACS Energy Letters

2024/3/11

High‐Performance Wearable Organic Photodetectors by Molecular Design and Green Solvent Processing for Pulse Oximetry and Photoplethysmography

Advanced Materials

2024/3

Impact of Molecular Weight on the Ionic and Electronic Transport of Self‐Doped Conjugated Polyelectrolytes Relevant to Organic Electrochemical Transistors

Advanced Functional Materials

2024/1

Green-solvent-processed high-performance broadband organic photodetectors

ACS Applied Materials & Interfaces

2023/7/28

Impact of Thermal Stress on Device Physics and Morphology in Organic Photodetectors

ACS Energy Letters

2023/4/11

Additive-free molecular acceptor organic solar cells processed from a biorenewable solvent approaching 15% efficiency

Materials Horizons

2023

Side-chain engineering of self-doped conjugated polyelectrolytes for organic electrochemical transistors

Journal of Materials Chemistry C

2023

Simple Approach to the Highly Efficient and Cost-Effective Inverted Perovskite Solar Cells via Solvent-Engineered Electron-Transporting Layers of Fullerene

ACS Sustainable Chemistry & Engineering

2022/11/30

Ahra Yi
Ahra Yi

H-Index: 5

Sangmin Chae
Sangmin Chae

H-Index: 8

Unraveling Device Physics of Dilute‐Donor Narrow‐Bandgap Organic Solar Cells with Highly Transparent Active Layers (Adv. Mater. 31/2022)

Advanced Materials

2022/8

Dual‐Mode Organic Electrochemical Transistors Based on Self‐Doped Conjugated Polyelectrolytes for Reconfigurable Electronics (Adv. Mater. 23/2022)

Advanced Materials

2022/6

Sangmin Chae
Sangmin Chae

H-Index: 8

Yon Visell
Yon Visell

H-Index: 17

Resolving atomic-scale interactions in non-fullerene acceptor organic solar cells by high-field NMR crystallography

2022/4/20

Dual†Mode Organic Electrochemical Transistors Based on Self†Doped Conjugated Polyelectrolytes for Reconfigurable Electronics

Advanced Materials

2022/4

Sangmin Chae
Sangmin Chae

H-Index: 8

Yon Visell
Yon Visell

H-Index: 17

Efficient fabrication of organic electrochemical transistors via wet chemical processing

ACS Applied Materials & Interfaces

2022/3/1

Efficiency of Thermally Activated Delayed Fluorescence Sensitized Triplet Upconversion Doubled in Three‐Component System

Advanced Materials

2022/2

Resolving atomic‐scale interactions in nonfullerene acceptor organic solar cells with solid‐state NMR spectroscopy, crystallographic modelling, and molecular dynamics simulations

Advanced Materials

2022/2

Insights into the Structural and Morphological Properties of Layer-by-Layer Processed Organic Photovoltaics

ACS Applied Materials & Interfaces

2021/12/10

Ahra Yi
Ahra Yi

H-Index: 5

Sangmin Chae
Sangmin Chae

H-Index: 8

Synergistic Effect of Codoped Nickel Oxide Hole–Transporting Layers for Highly Efficient Inverted Perovskite Solar Cells

Solar RRL

2021/9

Hydrophobic stretchable polydimethylsiloxane films with wrinkle patterns prepared via a metal‐assisted chemical etching process using a Si master mold

Journal of Applied Polymer Science

2021/5/15

See List of Professors in Sangmin Chae University(University of California, Santa Barbara)

Co-Authors

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