Longbo Luo

About Longbo Luo

Longbo Luo, With an exceptional h-index of 25 and a recent h-index of 23 (since 2020), a distinguished researcher at Sichuan University, specializes in the field of polyimide fiber aramid.

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

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

Electrospun heterocycle aramid nanofiber separator with MOF-supported porous structure enabled excellent cycling stability for lithium metal batteries with high LiFePO4 loading

Synthesis of fractal crystallized organic microspheres together with constructing full covalent bonding at the interface to strengthen and toughen aramid fiber composites

Enabling High‐Performance Artificial Muscles via a High Strength Fiber Reinforcement Strategy

Solving the crystal structure of heterocyclic Poly (arylene benzimidazole) via model compound single crystal and theoretical calculations

Supramolecular Photonic Hydrogel for High‐Sensitivity Alkaline Phosphatase Detection via Synergistic Driving Force

High strength in combination with high toughness in layered intrinsic heterocyclic aramid films via constructing liquid crystal-like structure during gelation self-assembly

Reducing intermolecular friction work: preparation of polyimide films with ultralow dielectric loss from MHz to THz frequency

Longbo Luo Information

University

Position

___

Citations(all)

1695

Citations(since 2020)

1426

Cited By

792

hIndex(all)

25

hIndex(since 2020)

23

i10Index(all)

56

i10Index(since 2020)

52

Email

University Profile Page

Google Scholar

Longbo Luo Skills & Research Interests

polyimide fiber aramid

Top articles of Longbo Luo

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

Materials Horizons

2024

Electrospun heterocycle aramid nanofiber separator with MOF-supported porous structure enabled excellent cycling stability for lithium metal batteries with high LiFePO4 loading

Journal of Alloys and Compounds

2023/12/5

Synthesis of fractal crystallized organic microspheres together with constructing full covalent bonding at the interface to strengthen and toughen aramid fiber composites

Composites Science and Technology

2023/11/10

Enabling High‐Performance Artificial Muscles via a High Strength Fiber Reinforcement Strategy

Advanced Materials Technologies

2023/9

Solving the crystal structure of heterocyclic Poly (arylene benzimidazole) via model compound single crystal and theoretical calculations

Polymer

2023/7/18

Supramolecular Photonic Hydrogel for High‐Sensitivity Alkaline Phosphatase Detection via Synergistic Driving Force

Small

2023/3

High strength in combination with high toughness in layered intrinsic heterocyclic aramid films via constructing liquid crystal-like structure during gelation self-assembly

Science

2019/12/13

Reducing intermolecular friction work: preparation of polyimide films with ultralow dielectric loss from MHz to THz frequency

Industrial & Engineering Chemistry Research

2022/12/1

Preparation of aromatic polyamide with ultra-high intrinsic breakdown strength via layered stacking structure induced by coplanar monomer

Polymer

2022/8/22

All‐Organic Filler with Fractal Structure for Reinforcement and Toughening of Aromatic Polyamide Film

Macromolecular Materials and Engineering

2022/8

Controllable one-pot polycondensation of block polyaramid by temporary suppression of nucleophilicity

Polymer

2022/4/19

All-organic polyimide/Cl-HBC composite film with high breakdown strength and ultra-low dielectric loss

Polymer

2022/4/6

Fabrication of high-temperature aromatic polyamides with ultra-high breakdown strength via complex-assisted chain arrangement

Chemical Engineering Journal

2022/3/15

A hybrid lithium sulfonated polyoxadiazole derived single-ion conducting gel polymer electrolyte enabled effective suppression of dendritic lithium growth

Chinese Chemical Letters

2022/2/1

Synthesis of tautomerization-inhibited diamino substituted tetraphenylethene derivatives with different mechanochromisms: the vital role of chlorine

Materials Chemistry Frontiers

2021

Toughening and enhancing thermostability of vitrimer rubber via adding heterocyclic aramid

Composites Communications

2021/12/1

The adsorption of aromatic macromolecules on graphene with entropy-tailored behavior and its utilization in exfoliating graphite

Journal of Colloid and Interface Science

2021/10/1

Free H‐bonding interaction sites in rigid‐chain polymers and their filling approach: a molecular dynamics simulation study

Advanced Theory and Simulations

2021/6

Post-construction of weaving structure in aramid fiber towards improvements of its transverse properties

Composites Science and Technology

2021/5/26

Preparation of high strength and toughness aramid fiber by introducing flexible asymmetric monomer to construct misplaced‐nunchaku structure

Macromolecular Materials and Engineering

2021/5

See List of Professors in Longbo Luo University(Sichuan University)