Li Li

Li Li

Penn State University

H-index: 14

North America-United States

About Li Li

Li Li, With an exceptional h-index of 14 and a recent h-index of 14 (since 2020), a distinguished researcher at Penn State University, specializes in the field of Materials Science, Ferroelectrics, Polymer nanocompoites, Organic-inorganic hybrids, Energy storage and conversion.

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

All-ceramics with ultrahigh thermal conductivity and superior dielectric properties created at ultralow temperatures

In Situ polymerized polyetherimide/Al2O3 nanocomposites with significantly improved capacitive energy storage performance at high temperatures

Design strategies of high-performance lead-free electroceramics for energy storage applications

Scalable High‐Permittivity Polyimide Copolymer with Ultrahigh High‐Temperature Capacitive Performance Enabled by Molecular Engineering

Photoluminescent Humidity Sensors Based on Droplet-Enabled Porous Composite Gels

Kirigami–Origami‐Inspired Lead‐Free Piezoelectric Ceramics

Electro-thermal actuation in percolative ferroelectric polymer nanocomposites

Scalable Polyimide‐Organosilicate Hybrid Films for High‐Temperature Capacitive Energy Storage

Li Li Information

University

Position

Wuhan University of Technology;

Citations(all)

892

Citations(since 2020)

888

Cited By

43

hIndex(all)

14

hIndex(since 2020)

14

i10Index(all)

15

i10Index(since 2020)

15

Email

University Profile Page

Google Scholar

Li Li Skills & Research Interests

Materials Science

Ferroelectrics

Polymer nanocompoites

Organic-inorganic hybrids

Energy storage and conversion

Top articles of Li Li

All-ceramics with ultrahigh thermal conductivity and superior dielectric properties created at ultralow temperatures

Cell Reports Physical Science

2024/3/20

In Situ polymerized polyetherimide/Al2O3 nanocomposites with significantly improved capacitive energy storage performance at high temperatures

Journal of Materiomics

2024/3/15

Design strategies of high-performance lead-free electroceramics for energy storage applications

2023/11/21

Scalable High‐Permittivity Polyimide Copolymer with Ultrahigh High‐Temperature Capacitive Performance Enabled by Molecular Engineering

Advanced Energy Materials

2023/12/31

Photoluminescent Humidity Sensors Based on Droplet-Enabled Porous Composite Gels

ACS Materials Letters

2023/7/3

Kirigami–Origami‐Inspired Lead‐Free Piezoelectric Ceramics

Advanced Science

2023/6

Scalable Polyimide‐Organosilicate Hybrid Films for High‐Temperature Capacitive Energy Storage

Advanced Materials

2023/5

High energy density and superior charge/discharge efficiency polymer dielectrics enabled by rationally designed dipolar polarization

Journal of Materiomics

2023/5/1

Robust Ferrimagnetism and Switchable Magnetic Anisotropy in High‐Entropy Ferrite Film

Advanced Functional Materials

2023/4

Fully Recyclable Liquid‐Metal‐Based Multi‐Layer Thermally Triggered Transient Electronic Devices

Advanced Materials Technologies

2023/2

High-Energy-Density All-Organic Dielectric Film via a Continuous Preparation Processing

Advanced Functional Materials

2023

Tailoring Poly(styrene-co-maleic anhydride) Networks for All-Polymer Dielectrics Exhibiting Ultrahigh Energy Density and Charge-Discharge Efficiency at Elevated Temperatures

Advanced Materials

2023

A flexible, sensitive and stable humidity sensor based on an all-polymer nanofiber film

Materials Letters

2023/1/1

Scalable in-situ surface-coated polymer dielectrics with significantly enhanced high-temperature breakdown strength

Materials Today Energy

2022/12/1

Self-healing polymers for electronics and energy devices

2022/10/19

Correction to: Structural Insight in the Interfacial Effect in Ferroelectric Polymer Nanocomposites (Advanced Materials,(2020), 32, 49,(2005431), 10.1002/adma. 202005431)

Advanced Materials

2022/2/17

Perspective on scalable high-energy-density polymer dielectrics with ultralow loadings of inorganic nanofillers

Applied Physics Letters

2022/1/31

Enhanced high-temperature energy storage properties of polymer composites by interlayered metal nanodots

Journal of Materials Chemistry A

2022

Significantly enhancing the dielectric constant and breakdown strength of linear dielectric polymers by utilizing ultralow loadings of nanofillers

Journal of Materials Chemistry A

2021

See List of Professors in Li Li University(Penn State University)

Co-Authors

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