Lihua Gan

About Lihua Gan

Lihua Gan, With an exceptional h-index of 59 and a recent h-index of 49 (since 2020), a distinguished researcher at Tongji University, specializes in the field of Chemistry, Energy & Environmental Nanomaterials, Colloid & Surface/Interface Chemistry.

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

Boosting Spatial Charge Storage in Ion‐Compatible Pores of Carbon Superstructures for Advanced Zinc‐Ion Capacitors

π-Conjugated molecule mediated self-doped hierarchical porous carbons via self-stacking interaction for high-energy and ultra-stable zinc-ion hybrid capacitors

Non‐Metal Ion Storage in Zinc‐Organic Batteries

Multielectron Redox‐Bipolar Tetranitroporphyrin Macrocycle Cathode for High‐Performance Zinc‐Organic Batteries

Organic iodine electrolyte starting triple I+ storage in In-based metal-organic frameworks for high-capacity aqueous Zn-I2 batteries

Hierarchical porous carbon guided by constructing organic-inorganic interpenetrating polymer networks to facilitate performance of zinc hybrid supercapacitors

Electrode materials for electrochromic supercapacitors

Non‐Metallic NH4+/H+ Co‐Storage in Organic Superstructures for Ultra‐Fast and Long‐Life Zinc‐Organic Batteries

Lihua Gan Information

University

Position

School of Chemical Science and Engineering China

Citations(all)

9388

Citations(since 2020)

6003

Cited By

5973

hIndex(all)

59

hIndex(since 2020)

49

i10Index(all)

119

i10Index(since 2020)

90

Email

University Profile Page

Google Scholar

Lihua Gan Skills & Research Interests

Chemistry

Energy & Environmental Nanomaterials

Colloid & Surface/Interface Chemistry

Top articles of Lihua Gan

Boosting Spatial Charge Storage in Ion‐Compatible Pores of Carbon Superstructures for Advanced Zinc‐Ion Capacitors

Small

2024

π-Conjugated molecule mediated self-doped hierarchical porous carbons via self-stacking interaction for high-energy and ultra-stable zinc-ion hybrid capacitors

Journal of Colloid and Interface Science

2024/3/15

Non‐Metal Ion Storage in Zinc‐Organic Batteries

Advanced Science

2024/3/13

Multielectron Redox‐Bipolar Tetranitroporphyrin Macrocycle Cathode for High‐Performance Zinc‐Organic Batteries

Angewandte Chemie

2024/2/19

Organic iodine electrolyte starting triple I+ storage in In-based metal-organic frameworks for high-capacity aqueous Zn-I2 batteries

Chemical Engineering Journal

2024/2/13

Hierarchical porous carbon guided by constructing organic-inorganic interpenetrating polymer networks to facilitate performance of zinc hybrid supercapacitors

Chinese Chemical Letters

2024/1/27

Electrode materials for electrochromic supercapacitors

Nanotechnology

2024

Non‐Metallic NH4+/H+ Co‐Storage in Organic Superstructures for Ultra‐Fast and Long‐Life Zinc‐Organic Batteries

Angewandte Chemie

2024/1/15

Multi-electron bipolar-type organic molecules for high-capacity dual-ion zinc batteries

Journal of Materials Chemistry A

2024

In-situ Nafion-Nanofilm Oriented (002) Zn Electrodeposition for Long-Term Zinc-Ion Batteries

Chemical Science

2024

Bipolar Conjugated Microporous Polymer Anchored Graphene Hybrids Towards High-Performance Zinc− Organic Batteries

Journal of Materials Chemistry A

2024

A quinone-amine coupling route to interwoven heterodiatomic carbon nanofiber networks with fast and durable charge storage

Next Materials

2024/1/1

NH4+ Charge Carrier Coordinated H‐Bonded Organic Small Molecule for Fast and Superstable Rechargeable Zinc Batteries

Angewandte Chemie

2023/9/18

Hydrogen-bond-mediated micelle aggregating self-assembly towards carbon nanofiber networks for high-energy and long-life zinc ion capacitors

Chemical Engineering Journal

2023/8/15

All-round enhancement in Zn-Ion storage enabled by solvent-guided lewis acid–base self-assembly of heterodiatomic carbon nanotubes

ACS Applied Materials & Interfaces

2023/7/13

A crystal splitting growth and self-assembly route to carbon superstructures with high energy and superstable Zn-ion storage

Chemical Engineering Journal

2023/7/1

Recent advances in zinc-ion hybrid energy storage: Coloring high-power capacitors with battery-level energy

2023/7/1

Frontispiece: Dendrite‐Free Engineering toward Efficient Zinc Storage: Recent Progress and Future Perspectives.

2023/4/6

Dendrite‐Free Engineering toward Efficient Zinc Storage: Recent Progress and Future Perspectives

2023/4/6

Proton‐conductive supramolecular hydrogen‐bonded organic superstructures for high‐performance zinc‐organic batteries

Angewandte Chemie

2023/3/20

See List of Professors in Lihua Gan University(Tongji University)

Co-Authors

academic-engine