Charles Tai-Chieh Wan

About Charles Tai-Chieh Wan

Charles Tai-Chieh Wan, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at Massachusetts Institute of Technology,

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

Manufacturing Strategies for Engineering Carbon Electrodes Via Non-Solvent Induced Phase Separation

Microstructural Engineering of Flow Battery Electrodes with Non-Solvent Induced Phase Separation

Engineering Redox Flow Battery Electrodes with Spatially Varying Porosity Using Non‐Solvent‐Induced Phase Separation

Modeling Nanoscale Ohmics in Carbon Supports of Fuel Cell Cathodes

Ultrathin conformal oCVD PEDOT coatings on porous electrodes and applications thereof

Bayesian-Optimization-Assisted Laser Reduction of Poly (acrylonitrile) for Electrochemical Applications

Hydrogen evolution mitigation in iron-chromium redox flow batteries via electrochemical purification of the electrolyte

Synthesis and characterization of dense carbon films as model surfaces to estimate electron transfer kinetics on redox flow battery electrodes

Charles Tai-Chieh Wan Information

University

Position

Ph.D. Candidate Chemical Engineering

Citations(all)

258

Citations(since 2020)

234

Cited By

76

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

7

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Top articles of Charles Tai-Chieh Wan

Manufacturing Strategies for Engineering Carbon Electrodes Via Non-Solvent Induced Phase Separation

Electrochemical Society Meeting Abstracts 244

2023/12/22

Charles Tai-Chieh Wan
Charles Tai-Chieh Wan

H-Index: 2

Antoni Forner-Cuenca
Antoni Forner-Cuenca

H-Index: 13

Microstructural Engineering of Flow Battery Electrodes with Non-Solvent Induced Phase Separation

Electrochemical Society Meeting Abstracts 243

2023/8/28

Charles Tai-Chieh Wan
Charles Tai-Chieh Wan

H-Index: 2

Yet-Ming Chiang
Yet-Ming Chiang

H-Index: 63

Engineering Redox Flow Battery Electrodes with Spatially Varying Porosity Using Non‐Solvent‐Induced Phase Separation

Energy Technology

2023/8

Modeling Nanoscale Ohmics in Carbon Supports of Fuel Cell Cathodes

Journal of The Electrochemical Society

2023/6/15

Charles Tai-Chieh Wan
Charles Tai-Chieh Wan

H-Index: 2

Yet-Ming Chiang
Yet-Ming Chiang

H-Index: 63

Ultrathin conformal oCVD PEDOT coatings on porous electrodes and applications thereof

2023/6/13

Bayesian-Optimization-Assisted Laser Reduction of Poly (acrylonitrile) for Electrochemical Applications

ACS nano

2023/2/22

Charles Tai-Chieh Wan
Charles Tai-Chieh Wan

H-Index: 2

Sheng Gong
Sheng Gong

H-Index: 9

Yet-Ming Chiang
Yet-Ming Chiang

H-Index: 63

Hydrogen evolution mitigation in iron-chromium redox flow batteries via electrochemical purification of the electrolyte

Journal of Power Sources

2023/1/15

Charles Tai-Chieh Wan
Charles Tai-Chieh Wan

H-Index: 2

Yet-Ming Chiang
Yet-Ming Chiang

H-Index: 63

Synthesis and characterization of dense carbon films as model surfaces to estimate electron transfer kinetics on redox flow battery electrodes

Langmuir

2023/1/6

Charles Tai-Chieh Wan
Charles Tai-Chieh Wan

H-Index: 2

Yet-Ming Chiang
Yet-Ming Chiang

H-Index: 63

Designer Porous Carbon Electrodes for Redox Flow Batteries

2023

Charles Tai-Chieh Wan
Charles Tai-Chieh Wan

H-Index: 2

Toward a Mechanically Rechargeable Solid Fuel Flow Battery Based on Earth-Abundant Materials

ACS omega

2022/10/25

Microstructural engineering of high-power redox flow battery electrodes via non-solvent induced phase separation

Cell Reports Physical Science

2022/7/20

Exploration of reduced graphene oxide microparticles as electrocatalytic materials in vanadium redox flow batteries

Journal of Energy Storage

2022/6/1

Charles Tai-Chieh Wan
Charles Tai-Chieh Wan

H-Index: 2

Limited accessibility to surface area generated by thermal pretreatment of electrodes reduces its impact on redox flow battery performance

ACS Applied Energy Materials

2021/11/17

Methods—A Potential–Dependent Thiele Modulus to Quantify the Effectiveness of Porous Electrocatalysts

Journal of The Electrochemical Society

2021/10/29

A potential–dependent Thiele modulus to quantify the effectiveness of porous electrocatalysts

2021/10/25

Non-Solvent Induced Phase Separation: A Versatile Synthetic Method for High Performance Redox Flow Battery Electrodes

Electrochemical Society Meeting Abstracts 240

2021/10/19

Charles Tai-Chieh Wan
Charles Tai-Chieh Wan

H-Index: 2

Antoni Forner-Cuenca
Antoni Forner-Cuenca

H-Index: 13

Methods of formulating porous electrodes using phase inversion, and resulting devices from the same

2021/8/19

(Energy Technology Division Graduate Student Award sponsored by Bio-Logic) Designer Porous Carbon Electrodes for Redox Flow Batteries

Electrochemical Society Meeting Abstracts 243

2023/8/28

Redox Flow Batteries: Non‐Solvent Induced Phase Separation Enables Designer Redox Flow Battery Electrodes (Adv. Mater. 16/2021)

Advanced Materials

2021/4

Non‐solvent induced phase separation enables designer redox flow battery electrodes

Advanced Materials

2021/4

See List of Professors in Charles Tai-Chieh Wan University(Massachusetts Institute of Technology)