Jia-Qi Huang (黄佳琦)

About Jia-Qi Huang (黄佳琦)

Jia-Qi Huang (黄佳琦), With an exceptional h-index of 119 and a recent h-index of 112 (since 2020), a distinguished researcher at Beijing Institute of Technology, specializes in the field of Energy storage, Li-S batteries, Lithium metal anode, Carbon nanomaterials, Fluidized bed.

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

High-performance localized high-concentration electrolytes by diluent design for long-cycling lithium metal batteries

Improving Rate Performance of Encapsulating Lithium‐Polysulfide Electrolytes for Practical Lithium− Sulfur Batteries

Perspective on powder technology for all-solid-state batteries: How to pair sulfide electrolyte with high-voltage cathode

Temperature‐Mediated Dynamic Lithium Loss and its Implications for High‐Efficiency Lithium Metal Anodes

Kinetic Promoters for Sulfur Cathodes in Lithium–Sulfur Batteries

Safer solid‐state lithium metal batteries: Mechanisms and strategies

High Energy Density Solid‐State Lithium Metal Batteries Enabled by In Situ Polymerized Integrated Ultrathin Solid Electrolyte/Cathode

Electrochemically and Thermally Stable Inorganics–Rich Solid Electrolyte Interphase for Robust Lithium Metal Batteries

Jia-Qi Huang (黄佳琦) Information

University

Position

___

Citations(all)

53721

Citations(since 2020)

41019

Cited By

28287

hIndex(all)

119

hIndex(since 2020)

112

i10Index(all)

330

i10Index(since 2020)

307

Email

University Profile Page

Google Scholar

Jia-Qi Huang (黄佳琦) Skills & Research Interests

Energy storage

Li-S batteries

Lithium metal anode

Carbon nanomaterials

Fluidized bed

Top articles of Jia-Qi Huang (黄佳琦)

High-performance localized high-concentration electrolytes by diluent design for long-cycling lithium metal batteries

Chinese Chemical Letters

2024/4/1

Improving Rate Performance of Encapsulating Lithium‐Polysulfide Electrolytes for Practical Lithium− Sulfur Batteries

Angewandte Chemie

2024/3/4

Perspective on powder technology for all-solid-state batteries: How to pair sulfide electrolyte with high-voltage cathode

Particuology

2024/3/1

Temperature‐Mediated Dynamic Lithium Loss and its Implications for High‐Efficiency Lithium Metal Anodes

Advanced Energy Materials

2024/3

Kinetic Promoters for Sulfur Cathodes in Lithium–Sulfur Batteries

2024/2/6

Safer solid‐state lithium metal batteries: Mechanisms and strategies

2024/2

High Energy Density Solid‐State Lithium Metal Batteries Enabled by In Situ Polymerized Integrated Ultrathin Solid Electrolyte/Cathode

Advanced Functional Materials

2024/1/20

Electrochemically and Thermally Stable Inorganics–Rich Solid Electrolyte Interphase for Robust Lithium Metal Batteries

Advanced Materials

2024/1

Cathode kinetics evaluation in lean-electrolyte lithium–sulfur batteries

Journal of the American Chemical Society

2023/7/10

Homogeneous and mechanically stable solid–electrolyte interphase enabled by trioxane-modulated electrolytes for lithium metal batteries

Nature Energy

2023/6/12

Unlocking the Polarization and Reversibility Limitations for Stable Low‐Temperature Lithium Metal Anodes

Small Structures

2023/7

Premature deposition of lithium polysulfide in lithium–sulfur batteries

Journal of Energy Chemistry

2023/7/1

Composing atomic transition metal sites for high-performance bifunctional oxygen electrocatalysis in rechargeable zinc–air batteries

Particuology

2023/6/1

Dynamic galvanic corrosion of working lithium metal anode under practical conditions

Advanced Energy Materials

2023/6

Fluorinating solid electrolyte interphase by regulating polymer–solvent interaction in lithium metal batteries

Energy Storage Materials

2023/6/1

Boosting sulfur redox kinetics by a pentacenetetrone redox mediator for high-energy-density lithium-sulfur batteries

Nano Research

2023/6

Lithium (Poly) sulfide Phase Conversion in Working Lithium–Sulfur Batteries: The Insight from the Equilibrium Potential Model

ACS Energy Letters

2023/5/22

Integrated interface configuration by in-situ interface chemistry enabling uniform lithium deposition in all-solid-state lithium metal batteries

Journal of Energy Chemistry

2023/5/1

Achieving high-energy and high-safety lithium metal batteries with high-voltage-stable solid electrolytes

2023/3/17

Thermoresponsive electrolytes for safe lithium‐metal batteries

Advanced Materials

2023/3

See List of Professors in Jia-Qi Huang (黄佳琦) University(Beijing Institute of Technology)

Co-Authors

academic-engine