Ruiyang Wang

About Ruiyang Wang

Ruiyang Wang, With an exceptional h-index of 16 and a recent h-index of 14 (since 2020), a distinguished researcher at Pohang University of Science and Technology, specializes in the field of Charged polymers.

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

Understanding the Seeded Heteroepitaxial Growth of Crystallizable Polymers: The Role of Crystallization Thermodynamics

Superionic Bifunctional Polymer Electrolytes for Solid‐State Energy Storage and Conversion (Adv. Mater. 4/2023)

Sulfur-substitution-enhanced crystallization and crystal structure of poly (trimethylene monothiocarbonate)

Influence of Salt Doping on the Entropy‐Driven Lower Disorder‐to‐Order Transition Behavior of Poly(ethylene oxide)‐b‐Poly(4‐vinylpyridine)

High-Capacity, Sustainable Lithium–Sulfur Batteries Based on Multifunctional Polymer Binders

Simultaneous improvement of ionic conductivity and mechanical strength in block copolymer electrolytes with double conductive nanophases

Polymer Electrolytes with Abundant Hydrogen Bonding Sites

Unexpected crystalline memory effect in poly (L-lactide)-based block copolymers

Ruiyang Wang Information

University

Position

___

Citations(all)

573

Citations(since 2020)

460

Cited By

296

hIndex(all)

16

hIndex(since 2020)

14

i10Index(all)

24

i10Index(since 2020)

21

Email

University Profile Page

Google Scholar

Ruiyang Wang Skills & Research Interests

Charged polymers

Top articles of Ruiyang Wang

Understanding the Seeded Heteroepitaxial Growth of Crystallizable Polymers: The Role of Crystallization Thermodynamics

ACS nano

2023/11/18

Superionic Bifunctional Polymer Electrolytes for Solid‐State Energy Storage and Conversion (Adv. Mater. 4/2023)

Advanced Materials

2023/1

Sulfur-substitution-enhanced crystallization and crystal structure of poly (trimethylene monothiocarbonate)

Chinese Chemical Letters

2022/2/1

Influence of Salt Doping on the Entropy‐Driven Lower Disorder‐to‐Order Transition Behavior of Poly(ethylene oxide)‐b‐Poly(4‐vinylpyridine)

Macromolecular Chemistry and Physics

2021/12

High-Capacity, Sustainable Lithium–Sulfur Batteries Based on Multifunctional Polymer Binders

ACS Applied Energy Materials

2021/3/4

Simultaneous improvement of ionic conductivity and mechanical strength in block copolymer electrolytes with double conductive nanophases

Macromolecular Rapid Communications

2020/4

Polymer Electrolytes with Abundant Hydrogen Bonding Sites

Bulletin of the American Physical Society

2020/3/4

Ruiyang Wang
Ruiyang Wang

H-Index: 11

Moon Jeong Park
Moon Jeong Park

H-Index: 26

Unexpected crystalline memory effect in poly (L-lactide)-based block copolymers

CrystEngComm

2020

Hierarchical structures with double lower disorder-to-order transition and closed-loop phase behaviors in charged block copolymers bearing long alkyl side groups

Macromolecules

2020/9/25

Self-assembly of block copolymers with tailored functionality: From the perspective of intermolecular interactions

2020/7/1

Mechanistic Study of the Influence of Salt Species on the Lower Disorder-to-Order Transition Behavior of Poly(ethylene oxide)-b-Poly(ionic liquid)/Salt Hybrids

Macromolecules

2020/5/27

Cover Feature: All‐Solid‐State Lithium–Organic Batteries Comprising Single‐Ion Polymer Nanoparticle Electrolytes (ChemSusChem 9/2020)

ChemSusChem

2020/5/8

All‐Solid‐State Lithium–Organic Batteries Comprising Single‐Ion Polymer Nanoparticle Electrolytes

ChemSusChem

2020/5/8

See List of Professors in Ruiyang Wang University(Pohang University of Science and Technology)