Full‐Dimensional Control of Covalent Organic Frameworks Through Repulsion‐Torsion Effect: Prominent 1D Above 2D and 3D Structures

K Kaifu Yu (College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education) P Pan He (College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education) D Dong Zhang (School of Physical Science and Technology & Shanghai Key Laboratory of High-Resolution Electron Microscopy) H Hongqing Wu (College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education) K Kewen Shu (College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education) H Honghan Long (College of Chemistry Sichuan University Chengdu 610064 P.R. China) Y Yubang Sun (College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education) X Xiang Pei (College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education) B Bo Jiang (Chinese Education Ministry Key Lab and Joint International Research Lab of Resource Chemistry, Shanghai Frontiers Science Center of Biomimetic Catalysis, College of Chemistry and Materials Science) K Kecheng Cao Y Yang Li L Lijian Ma (College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education)

Abstract

Abstract Exploring the impact of different dimensions on the properties and functions of covalent organic frameworks (COFs) has always been a key goal, as this can provide feedback to assist in the design of advanced COFs. However, this goal has never been performed simultaneously in one‐dimensional (1D), two‐dimensional (2D), and three‐dimensional (3D) COFs, due to the difficulty of dimensional control. Herein, for the first time, we synthesized three novel COFs with different dimensions, from similar composition by manipulating the conformation of the molecular building blocks through repulsion‐torsion effect. Impressively, the strong repulsion‐torsion effect transformed the planar building block into a non‐planar building block, resulting in the construction of 2D and 3D COFs, respectively. Moreover, when we consciously reduced the repulsion‐torsion effect, the resulting intramolecular conformation struggled to meet the requirements for the formation of 2D and 3D structures, ultimately generating a rare 1D COF. Further research indicated the charge transfer efficiency and photocatalytic performance of the resulting COFs followed a dimensional order of 1D > 3D > 2D. This phenomenon was attributed to the unique in‐plane and out‐of‐plane double rotational restriction (IODRR) effect in the 1D structure, which stabilized the aromatic framework and thus greatly reduced the carrier recombination probability and energy loss.

Article Details

Volume / Issue Vol. 64, Issue 38
Published September 15, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (12)

K

Kaifu Yu

College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education

P

Pan He

College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education

D

Dong Zhang

School of Physical Science and Technology & Shanghai Key Laboratory of High-Resolution Electron Microscopy

H

Hongqing Wu

College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education

K

Kewen Shu

College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education

H

Honghan Long

College of Chemistry Sichuan University Chengdu 610064 P.R. China

Y

Yubang Sun

College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education

X

Xiang Pei

College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education

B

Bo Jiang

Chinese Education Ministry Key Lab and Joint International Research Lab of Resource Chemistry, Shanghai Frontiers Science Center of Biomimetic Catalysis, College of Chemistry and Materials Science

K

Kecheng Cao

Y

Yang Li

L

Lijian Ma

College of Chemistry, Key Laboratory of Green Chemistry and Technology, Ministry of Education