Nanjun CHEN

Nanjun CHEN

Hanyang University

H-index: 27

Asia-South Korea

About Nanjun CHEN

Nanjun CHEN, With an exceptional h-index of 27 and a recent h-index of 25 (since 2020), a distinguished researcher at Hanyang University, specializes in the field of Fuel cell, anion exchange membrane, polyelectrolyte.

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

In-situ reinforced polyimide nanofiber membranes for highly efficient and safe lithium-ion batteries

Insight into the Chemical Stability of N-Heterocyclic Ammonium Groups for Anion-Exchange Polyelectrolytes

Membrane electrode assembly for water electrolysis, water electrolysis cell including the membrane electrode assembly and method for fabricating the membrane electrode assembly

Anion Exchange Ionomers Enable Sustained Pure-Water Electrolysis Using Platinum-Group-Metal-Free Electrocatalysts

Robust Piperidinium-Enriched Polystyrene Ionomers for Anion Exchange Membrane Fuel Cells and Water Electrolyzers

Novel polyfluorene-based ionomer, anion exchange membrane, method for preparing the polyfluorene-based ionomer and method for fabricating the anion exchange membrane

Fluorinated Poly (Aryl Piperidinium) Membranes for Anion Exchange Membrane Fuel Cells

Nanotubular Geometry for Stabilizing Metastable 1T‐Phase Ru Dichalcogenides

Nanjun CHEN Information

University

Position

Postdoc

Citations(all)

2265

Citations(since 2020)

2125

Cited By

549

hIndex(all)

27

hIndex(since 2020)

25

i10Index(all)

39

i10Index(since 2020)

39

Email

University Profile Page

Google Scholar

Nanjun CHEN Skills & Research Interests

Fuel cell

anion exchange membrane

polyelectrolyte

Top articles of Nanjun CHEN

In-situ reinforced polyimide nanofiber membranes for highly efficient and safe lithium-ion batteries

Journal of Membrane Science

2024/2/8

Xin Zhang
Xin Zhang

H-Index: 11

Nanjun Chen
Nanjun Chen

H-Index: 15

Insight into the Chemical Stability of N-Heterocyclic Ammonium Groups for Anion-Exchange Polyelectrolytes

Electrochemical Society Meeting Abstracts 244

2023/12/22

Membrane electrode assembly for water electrolysis, water electrolysis cell including the membrane electrode assembly and method for fabricating the membrane electrode assembly

2023/11/16

Anion Exchange Ionomers Enable Sustained Pure-Water Electrolysis Using Platinum-Group-Metal-Free Electrocatalysts

ACS Energy Letters

2023/11/6

Robust Piperidinium-Enriched Polystyrene Ionomers for Anion Exchange Membrane Fuel Cells and Water Electrolyzers

ACS Energy Letters

2023/9/6

Novel polyfluorene-based ionomer, anion exchange membrane, method for preparing the polyfluorene-based ionomer and method for fabricating the anion exchange membrane

2023/2/9

Fluorinated Poly (Aryl Piperidinium) Membranes for Anion Exchange Membrane Fuel Cells

Advanced Materials

2023/1/15

Nanotubular Geometry for Stabilizing Metastable 1T‐Phase Ru Dichalcogenides

Advanced Energy Materials

2022/11/27

Elucidating the role of alkyl chain in poly (aryl piperidinium) copolymers for anion exchange membrane fuel cells

Journal of Membrane Science

2022/4/5

Ultra-robust polyimide nanofiber separators with shutdown function for advanced lithium-ion batteries

Journal of Membrane Science

2022/3/5

Reinforced poly (fluorenyl-co-terphenyl piperidinium) anion exchange membranes for fuel cells

Journal of Membrane Science

2022/2/15

Impact of side-chains in poly (dibenzyl-co-terphenyl piperidinium) copolymers for anion exchange membrane fuel cells

Journal of Membrane Science

2022/2/15

Strategies for Improving Anion Exchange Membrane Fuel Cell Performance by Optimizing Electrode Conditions

Journal of The Electrochemical Society

2022/1/24

Anion-conducting polyelectrolytes for energy devices

Trends in Chemistry

2022/1/21

Nanjun Chen
Nanjun Chen

H-Index: 15

Young Moo Lee
Young Moo Lee

H-Index: 61

Robust and durable poly (aryl-co-aryl piperidinium) reinforced membranes for alkaline membrane fuel cells

Journal of Materials Chemistry A

2022

Di-piperidinium-crosslinked poly (fluorenyl-co-terphenyl piperidinium)s for high-performance alkaline exchange membrane fuel cells

Journal of Materials Chemistry A

2022

Rücktitelbild: Poly (Alkyl‐Terphenyl Piperidinium) Ionomers and Membranes with an Outstanding Alkaline‐Membrane Fuel‐Cell Performance of 2.58 W cm− 2 (Angew. Chem. 14/2021).

Angewandte Chemie

2021/3/29

High-performance poly (fluorenyl aryl piperidinium)-based anion exchange membrane fuel cells with realistic hydrogen supply

Journal of Power Sources

2021/11/15

Poly (alkyl‐terphenyl piperidinium) ionomers and membranes with outstanding alkaline membrane fuel cell performance of 2.58 W cm‐2

Angewandte Chemie International Edition

2021

Branched Poly (aryl piperidinium) Membranes for Anion Exchange Membrane Fuel Cells

Angewandte Chemie International Edition

2021/12/14

See List of Professors in Nanjun CHEN University(Hanyang University)

Co-Authors

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