Inside Front Cover: Enhancing Superlubricity and Wear Resistance in Mechanically Robust Hydrogel via Microliter‐Scale Subsurface‐Initiated Polymer Brush Grafting (Angew. Chem. Int. Ed. 23/2026)

Q Qiangbing Wei (Key Laboratory of Eco‐functional Polymer Materials of the Ministry of Education College of Chemistry and Chemical Engineering Northwest Normal University Lanzhou China) C Chengyan Zhang Y Yuyang Quan (Key Laboratory of Eco‐functional Polymer Materials of the Ministry of Education College of Chemistry and Chemical Engineering Northwest Normal University Lanzhou China) H Huilei Shi (Key Laboratory of Eco‐functional Polymer Materials of the Ministry of Education College of Chemistry and Chemical Engineering Northwest Normal University Lanzhou China) Y Yixin Zhang R Rongnian Xu (Key Laboratory of Eco‐functional Polymer Materials of the Ministry of Education College of Chemistry and Chemical Engineering Northwest Normal University Lanzhou China) S Shuanhong Ma F Feng Zhou

Article Details

Volume / Issue Vol. 65, Issue 23
Published June 01, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

Q

Qiangbing Wei

Key Laboratory of Eco‐functional Polymer Materials of the Ministry of Education College of Chemistry and Chemical Engineering Northwest Normal University Lanzhou China

C

Chengyan Zhang

Y

Yuyang Quan

Key Laboratory of Eco‐functional Polymer Materials of the Ministry of Education College of Chemistry and Chemical Engineering Northwest Normal University Lanzhou China

H

Huilei Shi

Key Laboratory of Eco‐functional Polymer Materials of the Ministry of Education College of Chemistry and Chemical Engineering Northwest Normal University Lanzhou China

Y

Yixin Zhang

R

Rongnian Xu

Key Laboratory of Eco‐functional Polymer Materials of the Ministry of Education College of Chemistry and Chemical Engineering Northwest Normal University Lanzhou China

S

Shuanhong Ma

F

Feng Zhou