Jie Mao

About Jie Mao

Jie Mao, With an exceptional h-index of 11 and a recent h-index of 11 (since 2020), a distinguished researcher at Zhejiang University, specializes in the field of Dielectric Elastomer, Smart Material, Soft Electronic, Soft Robot.

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

Designing high-energy-density all-organic flexible dielectric films from molecular structure to polymer cross-linking networks

Significant enhancement of high-temperature capacitive energy storage in dielectric films through surface self-assembly of BNNS coatings

Biomimetic multifunctional dielectric elastomer with color-changing, tunable-stiffness and shape-morphing abilities

Polybutadiene Dielectric Elastomers with High Dielectric Constant and Ultralow Dielectric Loss via Tuning Grafted Polar Groups

3D-printed high-frequency dielectric elastomer actuator toward insect-scale ultrafast soft robot

Composite elastomers with on-demand convertible phase separations achieve large and healable electro-actuation

Spatially Modulus-Patterned dielectric elastomer actuators with oriented electroactuation

Significantly enhancing electro-actuation performance of dielectric elastomer with ZrO2 nanoparticles

Jie Mao Information

University

Position

___

Citations(all)

2275

Citations(since 2020)

2164

Cited By

821

hIndex(all)

11

hIndex(since 2020)

11

i10Index(all)

12

i10Index(since 2020)

12

Email

University Profile Page

Google Scholar

Jie Mao Skills & Research Interests

Dielectric Elastomer

Smart Material

Soft Electronic

Soft Robot

Top articles of Jie Mao

Designing high-energy-density all-organic flexible dielectric films from molecular structure to polymer cross-linking networks

Journal of Power Sources

2024/5/15

Jie Mao
Jie Mao

H-Index: 6

Significant enhancement of high-temperature capacitive energy storage in dielectric films through surface self-assembly of BNNS coatings

Chemical Engineering Journal

2024/1/1

Jie Mao
Jie Mao

H-Index: 6

Biomimetic multifunctional dielectric elastomer with color-changing, tunable-stiffness and shape-morphing abilities

Composites Communications

2023/10/1

Jie Mao
Jie Mao

H-Index: 6

Hongyan Zhang
Hongyan Zhang

H-Index: 31

Polybutadiene Dielectric Elastomers with High Dielectric Constant and Ultralow Dielectric Loss via Tuning Grafted Polar Groups

Macromolecular Rapid Communications

2023/5

3D-printed high-frequency dielectric elastomer actuator toward insect-scale ultrafast soft robot

ACS Materials Letters

2023/1/31

Composite elastomers with on-demand convertible phase separations achieve large and healable electro-actuation

Materials Horizons

2023

Spatially Modulus-Patterned dielectric elastomer actuators with oriented electroactuation

Chemical Engineering Journal

2022/12/1

Significantly enhancing electro-actuation performance of dielectric elastomer with ZrO2 nanoparticles

Composites Science and Technology

2022/5/23

Firefly: An insect-scale aerial robot powered by electroluminescent soft artificial muscles

IEEE Robotics and Automation Letters

2022/6/1

Intrinsically anisotropic dielectric elastomer fiber actuators

ACS Materials Letters

2022/2/7

Voltage-tunable elastomer composites that use shape instabilities for rapid structural color changes

Materials Horizons

2022

Improving the antistatic and antibacterial properties of polypropylene via tetrapod-shaped ZnO@ Ag particles

Polymer Testing

2021/9/1

The effect of nanocrystalline ZnO with bare special crystal planes on the crystallization behavior, thermal stability and mechanical properties of PLLA

Polymer Testing

2021/8/1

Confined crystallization and melting behaviors of 3-pentadecylphenol in anodic alumina oxide nanopores

Polymer Crystallization

2020/10

Effects of crystal planes of ZnO nanocrystal on crystalline, thermal and thermal-oxidation stability of iPP

Journal of Polymer Research

2021/5

Printing reconfigurable bundles of dielectric elastomer fibers

Advanced Functional Materials

2021/5

Self‐Strengthening Dielectric Elastomer of Triblock Copolymer with Significantly Improved Electromechanical Performance under Low Voltage

Macromolecular Materials and Engineering

2021/5

Adaptively reconstructing network of soft elastomers to increase strand rigidity: towards free-standing electro-actuation strain over 100%

Materials Horizons

2021

Anisotropic electroactive elastomer for highly maneuverable soft robotics

Nanoscale

2020

See List of Professors in Jie Mao University(Zhejiang University)