Junwei Zha

About Junwei Zha

Junwei Zha, With an exceptional h-index of 52 and a recent h-index of 41 (since 2020), a distinguished researcher at University of Science and Technology Beijing, specializes in the field of Dielectric, Polymer, nanocomposites, et al..

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

Advanced Dielectric Materials for Triboelectric Nanogenerators: Principles, Methods and Applications

Overview of High‐Temperature Polymers

Dual‐effect coupling for superior dielectric and thermal conductivity of polyimide composite films featuring “crystal‐like phase” structure

High-temperature polymer dielectric films with excellent energy storage performance utilizing inorganic outerlayers

Covalent-assisted construction of “scale-like” boron nitride/polyimide thermal interface materials with high thermal conductivity

High-toughness, extensile and self-healing PDMS elastomers constructed by decuple hydrogen bonding

Multilayer BOPET dielectric film with internal double electron barrier for high temperature applications

High Temperature Polymer Dielectrics: Fundamentals and Applications in Power Equipment

Junwei Zha Information

University

Position

___

Citations(all)

10544

Citations(since 2020)

6443

Cited By

7015

hIndex(all)

52

hIndex(since 2020)

41

i10Index(all)

139

i10Index(since 2020)

124

Email

University Profile Page

Google Scholar

Junwei Zha Skills & Research Interests

Dielectric

Polymer

nanocomposites

et al.

Top articles of Junwei Zha

Advanced Dielectric Materials for Triboelectric Nanogenerators: Principles, Methods and Applications

2024/3/22

Overview of High‐Temperature Polymers

High Temperature Polymer Dielectrics: Fundamentals and Applications in Power Equipment

2024/3/4

Dual‐effect coupling for superior dielectric and thermal conductivity of polyimide composite films featuring “crystal‐like phase” structure

Advanced materials

2024/2

High-temperature polymer dielectric films with excellent energy storage performance utilizing inorganic outerlayers

Composites Science and Technology

2024/1/5

Covalent-assisted construction of “scale-like” boron nitride/polyimide thermal interface materials with high thermal conductivity

Composites Communications

2024/1/1

High-toughness, extensile and self-healing PDMS elastomers constructed by decuple hydrogen bonding

Materials Horizons

2024

Multilayer BOPET dielectric film with internal double electron barrier for high temperature applications

Applied Physics Letters

2023/11/13

High Temperature Polymer Dielectrics: Fundamentals and Applications in Power Equipment

2023/11/6

Improved high-temperature energy storage of polyetherimide by energy level structure regulation

Polymer

2023/11/3

Polymer dielectrics for high-temperature energy storage: constructing carrier traps

2023/10/21

Green fabrication of durable foam composites with asymmetric wettability by an emulsion spray-coating method for photothermally induced crude oil cleanup

Journal of Colloid and Interface Science

2023/10/15

Sandwich-structured BOPET films with high energy density and low loss for high temperature film capacitors

APL Materials

2023/10/1

Guest Editorial: High‐performance polyimide dielectric materials.

IET Nanodielectrics

2023/9/1

Molecular dynamics simulations guided the preparation of nano-silica/polyimide/cellulose composite insulating paper

Materials & Design

2023/9/1

Rising of dynamic polyimide materials: a versatile dielectric for electrical and electronic applications

2023/9

Rigid/flexible molecular structure‐induced polyimide aerogels with ultralow permittivity and thermal insulation properties

IET Nanodielectrics

2023/9

Research progress on low dielectric constant modification of cellulose insulating paper for power transformers

2023/8

Lung protection effect of EIT-based individualized protective ventilation strategy in patients with partial pulmonary resection.

European Review for Medical & Pharmacological Sciences

2023/6/15

Versatile spider-web-like cross-linked polyimide aerogel with tunable dielectric permittivity for highly sensitive flexible sensors

Chemical Engineering Journal

2023/6/1

Synergistic enhancement in permittivity and energy storage capacity of epoxy dielectrics via constructing continuous 3D BaTiO3 network collaborated with graphene oxide

Composites Communications

2023/6/1

See List of Professors in Junwei Zha University(University of Science and Technology Beijing)