Ling Miao

About Ling Miao

Ling Miao, With an exceptional h-index of 66 and a recent h-index of 61 (since 2020), a distinguished researcher at Huazhong University of Science and Technology, specializes in the field of nano energy, computational materials, intelligent algorithm.

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

Phase-Loss Cascade Combination Method for Multilayer Ultrabroadband Reconfigurable Absorber

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

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

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

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

Universal electronic descriptors for optimizing hydrogen evolution in transition metal-doped MXenes

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

Breaking Symmetry: Enhanced Hydrogen Evolution Reaction Performance of Janus Zr2COT (T = F, Cl, Br, I) MXenes by Density Functional Theory

Ling Miao Information

University

Position

Associate Professor of @cn / Visiting Scholar at LBNL@US

Citations(all)

13036

Citations(since 2020)

10418

Cited By

5881

hIndex(all)

66

hIndex(since 2020)

61

i10Index(all)

152

i10Index(since 2020)

140

Email

University Profile Page

Google Scholar

Ling Miao Skills & Research Interests

nano energy

computational materials

intelligent algorithm

Top articles of Ling Miao

Phase-Loss Cascade Combination Method for Multilayer Ultrabroadband Reconfigurable Absorber

IEEE Transactions on Microwave Theory and Techniques

2024/1/4

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

Universal electronic descriptors for optimizing hydrogen evolution in transition metal-doped MXenes

Applied Surface Science

2024/4/30

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

Small

2024

Breaking Symmetry: Enhanced Hydrogen Evolution Reaction Performance of Janus Zr2COT (T = F, Cl, Br, I) MXenes by Density Functional Theory

ACS Applied Nano Materials

2024/4/6

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

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

Angewandte Chemie

2024/1/15

Dispersion Manipulation Method for Ultrahigh Frequency Band Reconfigurable Absorbers

IEEE Transactions on Antennas and Propagation

2023/11/13

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

Angewandte Chemie

2023/9/18

Design of Curved FSS with A Fast Accurate Simulation Method based on Transmission Line Theory

2023/8/15

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

See List of Professors in Ling Miao University(Huazhong University of Science and Technology)

Co-Authors

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