Haozhen Dou

About Haozhen Dou

Haozhen Dou, With an exceptional h-index of 34 and a recent h-index of 33 (since 2020), a distinguished researcher at Tianjin University, specializes in the field of membrane battery.

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

Selective and Scalable CO2 Electrolysis Enabled by Conductive Zinc Ion-Implanted Zeolite-Supported Cadmium Oxide Nanoclusters

Polysulfide regulation by defect-modulated Ta3N5− x electrocatalyst toward superior room-temperature sodium-sulfur batteries

Multifunctional Dual‐Metal‐Salt Derived Ternary Eutectic Electrolyte for Highly Reversible Zinc Ion Battery

Biomass Solid‐State Electrolyte with Abundant Ion and Water Channels for Flexible Zinc‐Air Batteries

Building stabilized Cu0.17Mn0.03V2O5−□·2.16H2O cathode enables an outstanding room‐/low‐temperature aqueous Zn‐ion batteries

Steric‐hindrance Effect Tuned Ion Solvation Enabling High Performance Aqueous Zinc Ion Batteries

Construction of desolvated ionic COF artificial SEI layer stabilized Zn metal anode by in-situ electrophoretic deposition

In situ constructing (MnS/Mn2SnS4)@ N, S-ACTs heterostructure with superior Na/Li-storage capabilities in half-cells and pouch full-cells

Haozhen Dou Information

University

Position

___

Citations(all)

3368

Citations(since 2020)

3314

Cited By

563

hIndex(all)

34

hIndex(since 2020)

33

i10Index(all)

53

i10Index(since 2020)

53

Email

University Profile Page

Google Scholar

Haozhen Dou Skills & Research Interests

membrane battery

Top articles of Haozhen Dou

Selective and Scalable CO2 Electrolysis Enabled by Conductive Zinc Ion-Implanted Zeolite-Supported Cadmium Oxide Nanoclusters

Journal of the American Chemical Society

2024/2/23

Polysulfide regulation by defect-modulated Ta3N5− x electrocatalyst toward superior room-temperature sodium-sulfur batteries

Science Bulletin

2024/1/30

Multifunctional Dual‐Metal‐Salt Derived Ternary Eutectic Electrolyte for Highly Reversible Zinc Ion Battery

Advanced Functional Materials

2024

Biomass Solid‐State Electrolyte with Abundant Ion and Water Channels for Flexible Zinc‐Air Batteries

Advanced Materials

2024/4/3

Building stabilized Cu0.17Mn0.03V2O5−□·2.16H2O cathode enables an outstanding room‐/low‐temperature aqueous Zn‐ion batteries

Carbon Energy

2024/3/13

Steric‐hindrance Effect Tuned Ion Solvation Enabling High Performance Aqueous Zinc Ion Batteries

Angewandte Chemie

2024/3/12

Construction of desolvated ionic COF artificial SEI layer stabilized Zn metal anode by in-situ electrophoretic deposition

Nano Energy

2023/12/1

In situ constructing (MnS/Mn2SnS4)@ N, S-ACTs heterostructure with superior Na/Li-storage capabilities in half-cells and pouch full-cells

Chinese Chemical Letters

2023/11/8

Efficient ethylene/ethane separation by zwitterionic deep eutectic solvent membranes

Journal of Membrane Science

2023/1/15

Heterogeneous Nanodomain Electrolytes for Ultra‐Long‐Life All‐Solid‐State Lithium‐Metal Batteries

Advanced Functional Materials

2022/9

Emerging Trends in Sustainable CO2‐Management Materials

2022/7

Hierarchically Nanostructured Solid‐State Electrolyte for Flexible Rechargeable Zinc–Air Batteries

Angewandte Chemie

2022/6/7

Bioinspired Tough Solid‐State Electrolyte for Flexible Ultralong‐Life Zinc–Air Battery

Advanced Materials

2022/5

Regulation of Outer Solvation Shell Toward Superior Low‐Temperature Aqueous Zinc‐Ion Batteries (Adv. Mater. 49/2022)

Advanced Materials

2022/12

Deep Eutectic Solvent Membranes Designed by the Same-Anion Strategy for Highly Efficient Ethylene/Ethane Separation

ACS Sustainable Chemistry & Engineering

2022/3/15

Porous organic polymers for Li-chemistry-based batteries: functionalities and characterization studies

2022

Steering Carbon Hybridization State in Carbon-Based Metal-free Catalysts for Selective and Durable CO2 Electroreduction

ACS Catalysis

2022/11/29

Efficient ethylene/ethane separation through ionic liquid-confined covalent organic framework membranes

Journal of Materials Chemistry A

2022

“Tree‐Trunk” Design for Flexible Quasi‐Solid‐State Electrolytes with Hierarchical Ion‐Channels Enabling Ultralong‐Life Lithium‐Metal Batteries

Advanced Materials

2022/11

See List of Professors in Haozhen Dou University(Tianjin University)

Co-Authors

academic-engine