Wei Luo

About Wei Luo

Wei Luo, With an exceptional h-index of 79 and a recent h-index of 69 (since 2020), a distinguished researcher at Tongji University, specializes in the field of Materials for Energy Conversion and Storage.

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

Metal Chloride Cathodes for Next-generation Rechargeable Lithium Batteries

Promoting high-voltage stability through local lattice distortion of halide solid electrolytes

A Tailored Interface Design for Anode‐Free Solid‐State Batteries

Suppression of Interphase Dissolution Via Solvent Molecule Tuning for Sodium Metal Batteries

A Quasi‐Solid‐State Polyether Electrolyte for Low‐Temperature Sodium Metal Batteries

Liberating the Electrolyte via In Situ Conversion of an Amide, Sulfonate‐Containing Monomer Precursor for High‐Temperature Graphite/NCM Batteries

Enabling the reversibility of anhydrous copper(II) fluoride cathodes for rechargeable lithium batteries via fluorinated high-concentration electrolytes

High‐Voltage Stimulation Effect on Lithium Deposition for 4.6 V‐Class Lithium Metal Batteries

Wei Luo Information

University

Position

___

Citations(all)

27550

Citations(since 2020)

20139

Cited By

16516

hIndex(all)

79

hIndex(since 2020)

69

i10Index(all)

133

i10Index(since 2020)

129

Email

University Profile Page

Google Scholar

Wei Luo Skills & Research Interests

Materials for Energy Conversion and Storage

Top articles of Wei Luo

Metal Chloride Cathodes for Next-generation Rechargeable Lithium Batteries

2024/3/26

Promoting high-voltage stability through local lattice distortion of halide solid electrolytes

Nature Communications

2024/2/17

A Tailored Interface Design for Anode‐Free Solid‐State Batteries

Advanced Materials

2024/2

Suppression of Interphase Dissolution Via Solvent Molecule Tuning for Sodium Metal Batteries

Advanced Materials

2023/12

A Quasi‐Solid‐State Polyether Electrolyte for Low‐Temperature Sodium Metal Batteries

Advanced Functional Materials

2023/11

Liberating the Electrolyte via In Situ Conversion of an Amide, Sulfonate‐Containing Monomer Precursor for High‐Temperature Graphite/NCM Batteries

Advanced Functional Materials

2023/9

Enabling the reversibility of anhydrous copper(II) fluoride cathodes for rechargeable lithium batteries via fluorinated high-concentration electrolytes

Science China Materials

2023/8

High‐Voltage Stimulation Effect on Lithium Deposition for 4.6 V‐Class Lithium Metal Batteries

Advanced Functional Materials

2023/8

Combining Solid Solution Strengthening and Second Phase Strengthening for Thinning Li Metal Foils

ACS nano

2023/7/10

Local structural features of medium-entropy garnet with ultra-long cycle life

Matter

2023/5/3

Evaluation of Cathode Electrodes in Lithium‐Ion Battery: Pitfalls and the Befitting Counter Electrode

Small

2023/5

Solvation and Interfacial Engineering Enable −40 °C Operation of Graphite/NCM Batteries at Energy Density over 270 Wh kg−1

Advanced Materials

2023/3

Engineering Li Metal Anode for Garnet-Based Solid-State Batteries

2023/2/27

Na4MnCr(PO4)3 with a Dual Conductive Network for Sodium‐Ion Batteries

Advanced Sustainable Systems

2023

Less is more: a perspective on thinning lithium metal towards high-energy-density rechargeable lithium batteries

2023

Promoting Fast Na Ion Transport at Low Temperatures for Sodium Metal Batteries

ACS Applied Materials & Interfaces

2022/9/1

Negating Li+ transfer barrier at solid-liquid electrolyte interface in hybrid batteries

Chem

2022/7/14

Magnetic Actuation Enables Programmable Lithium Metal Engineering

Advanced Energy Materials

2022/7

Toward high temperature sodium metal batteries via regulating the electrolyte/electrode interfacial chemistries

ACS Energy Letters

2022/5/20

Enabling Anionic Redox Stability of P2‐Na5/6Li1/4Mn3/4O2 by Mg Substitution

Advanced Materials

2022/3

See List of Professors in Wei Luo University(Tongji University)