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◆ Angewandte Chemie International Edition2026-01-27· Stacking

Enabling Rotated Stacking Displacement in Two‐Dimensional Covalent Organic Frameworks via Interlayer Electrostatic Repulsion

Xinkun Ma, Wang‐Kang Han, Haishan Zhu, Ting He, Zhifang Wang, Wei Zhou, Xue‐Song Wu, Yunxiang Ma, Ziyue Huang, Yue Zhao, Yue Zhao, Jingyu Zhang, Chunqiang Zhuang, Yanli Zhao, Yanli Zhao

原始摘要(英文原文)· Original abstract
Tuning the interlayer stacking in 2D covalent organic frameworks (2D COFs) allows unique structural and optoelectronic properties. However, the diversity of 2D COF stacking modes is limited to eclipsed, serrated, and shifted stacking. In this study, we develop a method for constructing COFs with rotated stacking by modulating interlayer electrostatic repulsion. COFs with rotated or eclipsed (AA) stacking are obtained via reactions between triamine and dialdehyde monomers with or without pyridinium substituents. Importantly, the modulation of pyridinium substituents enables the transformation of different stacking modes, as well as the conversion of amorphous to crystalline materials. Moreover, multicomponent-based stacking regulation strategies are found to efficiently mediate photocatalytic hydrogen peroxide production, owing to their tunable photophysical properties. Our findings provide perspectives on leveraging interlayer repulsion to tailor interlayer stacking in 2D COFs, thereby diversifying their topologies and improving their optoelectronic properties.
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Enabling Rotated Stacking Displacement in Two‐Dimensional Covalent Organic Frameworks via Interlayer Electrostatic Repulsion — 科研速览 Science Skim