Bo-Wen Liu

About Bo-Wen Liu

Bo-Wen Liu, With an exceptional h-index of 30 and a recent h-index of 29 (since 2020), a distinguished researcher at Sichuan University, specializes in the field of polymer science.

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

Tailoring cross-linking temperature via hydrogen bonding and steric hindrance towards high-performance fire-Safe Polymer

Biomimetic Nanoporous Transparent Universal Fire-Resistant Coatings

Machine learning-assisted design and scalable fabrication of high-performance fire-safe polycarbonate for advanced applications

Room-temperature hydrogen bonding and high-temperature rearrangement towards high-performance flame-retardant aliphatic polyamide

A Sandcastle-Worm-Inspired Strategy toward Antimicrobial Fouling and Fireproof Composite

Microcage flame retardants with complete recyclability and durability via reversible interfacial locking engineering

Bio-based long-chain aliphatic polyamide with intrinsic flame retardancy and great overall properties

Thermo‐responsive self‐Ceramifiable robust aerogel with exceptional strengthening and thermal insulating performance at ultrahigh temperatures

Bo-Wen Liu Information

University

Position

___

Citations(all)

2745

Citations(since 2020)

2607

Cited By

230

hIndex(all)

30

hIndex(since 2020)

29

i10Index(all)

55

i10Index(since 2020)

55

Email

University Profile Page

Google Scholar

Bo-Wen Liu Skills & Research Interests

polymer science

Top articles of Bo-Wen Liu

Tailoring cross-linking temperature via hydrogen bonding and steric hindrance towards high-performance fire-Safe Polymer

Polymer

2024/4/9

Biomimetic Nanoporous Transparent Universal Fire-Resistant Coatings

ACS Applied Materials & Interfaces

2024/4/5

Machine learning-assisted design and scalable fabrication of high-performance fire-safe polycarbonate for advanced applications

Chemical Engineering Journal

2024/2/11

Room-temperature hydrogen bonding and high-temperature rearrangement towards high-performance flame-retardant aliphatic polyamide

Polymer

2024/2/8

A Sandcastle-Worm-Inspired Strategy toward Antimicrobial Fouling and Fireproof Composite

ACS Materials Letters

2024/1/19

Microcage flame retardants with complete recyclability and durability via reversible interfacial locking engineering

Materials Horizons

2024

Bio-based long-chain aliphatic polyamide with intrinsic flame retardancy and great overall properties

Polymer Degradation and Stability

2023/8/1

Thermo‐responsive self‐Ceramifiable robust aerogel with exceptional strengthening and thermal insulating performance at ultrahigh temperatures

Advanced Functional Materials

2023/7

Gradient Hierarchical Hollow Heterostructures of Ti3C2Tx@rGO@MoS2 for Efficient Microwave Absorption

ACS Applied Materials & Interfaces

2023/6/27

Recyclable biophenolic nanospheres for sustainable and durable multifunctional applications in thermosets

ACS Materials Letters

2023/5/11

Natural polyphenol-inspired polymer towards multifunction and high performance

Chemical Engineering Journal

2023/4/15

Molecular-micron multiscale toughening and flame retarding for polyurethane foams

Chemical Engineering Journal

2023/2/15

A biomimetic closed-loop recyclable, long-term durable, extreme-condition resistant, flame-retardant nanocoating synthesized by reversible flocculation assembly

Materials Horizons

2023

High-performance flame-retardant aliphatic polyamide via enhanced chain entanglement

Chemical Engineering Journal

2023/1/1

Neighboring Molecular Engineering in Diels–Alder Chemistry Enabling Easily Recyclable Carbon Fiber Reinforced Composites

Angewandte Chemie

2023/12/18

Quick and efficient flame-retardant, antibacterial and antifungal treatment for high-performance cellulose paper

Progress in Organic Coatings

2023/12/1

Durable flame-retardant, smoke-suppressant, and thermal-insulating biomass polyurethane foam enabled by a green bio-based system

Journal of Materials Science & Technology

2023/11/1

Controllable micro cross-linking towards multifunctional flame-retardant aliphatic polyamide

Chemical Engineering Journal

2023/9/15

A One‐Step Self‐Flowering Method toward Programmable Ultrathin Porous Carbon‐Based Materials for Microwave Absorption and Hydrogen Evolution

Small

2023/9

Smart self-puffing phosphite-protonated siloxane network enables multifunctional transparent protection

ACS Materials Letters

2023/8/4

See List of Professors in Bo-Wen Liu University(Sichuan University)

Co-Authors

academic-engine