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Smart Hydrogen-Bonded Organic Frameworks: From Design Rules to Applications

  • Ziyao Wang
  • , Jiabao Liu
  • , Hang Tian
  • , Yiling Sun
  • , Wei Chen
  • , Xiangyu Gao
  • , Peng Li
  • Fudan University
  • Hebei University of Technology
  • Guangxi University

科研成果: 期刊稿件文献综述同行评审

摘要

Crystalline porous materials have evolved significantly with the advent of metal–organic frameworks (MOFs) and covalent organic frameworks (COFs), yet hydrogen-bonded organic frameworks (HOFs) represent a distinct paradigm shift from static to adaptive porosity. Unlike their coordination- or covalent-bonded counterparts, HOFs are assembled via weak, reversible hydrogen interactions, endowing the framework with intrinsic “softness” and adaptive flexibility. This unique structural nature allows for reversible transformations─such as breathing, gate-opening, and layer sliding─in response to external stimuli. In this perspective, we systematically discuss the design rules of smart HOFs, highlighting how specific flexibility mechanisms are translated into advanced functionalities across four pivotal domains. We explore how adaptive pore environments enable the discrimination of similar-sized molecules and “self-healing” capabilities in separation processes, and how structural perturbations are converted into readable optical or electrical signals for precise sensing. Furthermore, we examine the leveraging of dynamic luminescence and topological switching for smart optoelectronics and information security, as well as the utilization of stimuli-responsive drug release and biocompatibility for precision biomedical therapy. Finally, we provide a critical outlook on the future challenges regarding stability, predictability, and processability, aiming to bridge the gap between theoretical design and practical deployment of smart HOF materials.

源语言英语
页(从-至)32139-32159
页数21
期刊ACS Applied Materials and Interfaces
18
23
DOI
出版状态已出版 - 17 6月 2026
已对外发布

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