Qiming Tang

Qiming Tang

University of South Carolina

H-index: 10

North America-United States

About Qiming Tang

Qiming Tang, With an exceptional h-index of 10 and a recent h-index of 10 (since 2020), a distinguished researcher at University of South Carolina, specializes in the field of Batteries, Solid-State Ionics, Membrane Reactor.

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

A Kinetic Study on H2 Reduction of Fe3O4 for Long-Duration Energy-Storage-Compatible Solid Oxide Iron Air Batteries

Multiphysics Modeling of Solid Oxide Iron Air Battery with New Catalyst and Proton Conductor Oxide Support

Solid Oxide Iron-Air Battery for Long-Duration Energy Storage: A Study on Reduction Kinetics of Energy Storage Material Fe-ZrO2 Catalyzed by Ir Particles

A flexible solid polymer electrolyte enabled with lithiated zeolite for high performance lithium battery

A focused review on structures and ionic conduction mechanisms in inorganic solid-state proton and hydride anion conductors

Proton‐Mediated and Ir‐Catalyzed Iron/Iron‐Oxide Redox Kinetics for Enhanced Rechargeability and Durability of Solid Oxide Iron–Air Battery

Evaluation of steam supply performance: Steamer vs. bubbler

(Invited) Developing Barrier Layer Free Oxygen Electrode for Solid Oxide Cells

Qiming Tang Information

University

Position

___

Citations(all)

457

Citations(since 2020)

427

Cited By

186

hIndex(all)

10

hIndex(since 2020)

10

i10Index(all)

10

i10Index(since 2020)

10

Email

University Profile Page

Google Scholar

Qiming Tang Skills & Research Interests

Batteries

Solid-State Ionics

Membrane Reactor

Top articles of Qiming Tang

A Kinetic Study on H2 Reduction of Fe3O4 for Long-Duration Energy-Storage-Compatible Solid Oxide Iron Air Batteries

Journal of The Electrochemical Society

2023/10/9

Multiphysics Modeling of Solid Oxide Iron Air Battery with New Catalyst and Proton Conductor Oxide Support

Electrochemical Society Meeting Abstracts 243

2023/8/28

Solid Oxide Iron-Air Battery for Long-Duration Energy Storage: A Study on Reduction Kinetics of Energy Storage Material Fe-ZrO2 Catalyzed by Ir Particles

ECS Transactions

2023/5/19

Qiming Tang
Qiming Tang

H-Index: 5

Kevin Huang
Kevin Huang

H-Index: 16

A flexible solid polymer electrolyte enabled with lithiated zeolite for high performance lithium battery

Nano Research

2023/3/10

A focused review on structures and ionic conduction mechanisms in inorganic solid-state proton and hydride anion conductors

Materials Advances

2023/1/1

Proton‐Mediated and Ir‐Catalyzed Iron/Iron‐Oxide Redox Kinetics for Enhanced Rechargeability and Durability of Solid Oxide Iron–Air Battery

Advanced Science

2022/10

Evaluation of steam supply performance: Steamer vs. bubbler

Frontiers in Energy Research

2022/9/2

(Invited) Developing Barrier Layer Free Oxygen Electrode for Solid Oxide Cells

Electrochemical Society Meeting Abstracts 241

2022/7/7

Determining the kinetic rate constants of Fe3O4-to-Fe and FeO-to-Fe reduction by H2

Chemical Engineering Journal

2022/4/15

Qiming Tang
Qiming Tang

H-Index: 5

Kevin Huang
Kevin Huang

H-Index: 16

Integrate multifunctional ionic sieve lithiated X zeolite-ionic liquid electrolyte for solid-state lithium metal batteries with ultralong lifespan

Chemical engineering journal

2022/4/1

Intermediate temperature solid oxide cell with a barrier layer free oxygen electrode and phase inversion derived hydrogen electrode

Journal of the Electrochemical Society

2022/3/16

Demonstration of 10+ hour energy storage with ϕ1′′ laboratory size solid oxide iron–air batteries

Energy & Environmental Science

2022

Advancement of New Solid-Oxide Iron-Air Battery (SOIAB) Operated on High-Temperature Oxide-Ion Chemistry

2022

Qiming Tang
Qiming Tang

H-Index: 5

Fe3O4/ZrO2 Composite as a Robust Chemical Looping Oxygen Carrier: A Kinetics Study on the Reduction Process

ACS Applied Energy Materials

2021/7/15

Qiming Tang
Qiming Tang

H-Index: 5

Kevin Huang
Kevin Huang

H-Index: 16

Binary iron sulfide as a low-cost and high-performance anode for lithium-/sodium-ion batteries

ACS Applied Materials & Interfaces

2020/11/16

Three-dimensional hierarchical graphene and CNT-coated spinel ZnMn2O4 as a high-stability anode for lithium-ion batteries

Electrochimica Acta

2020/4/1

See List of Professors in Qiming Tang University(University of South Carolina)

Co-Authors

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