材料科学
多孔性
热扩散率
共价键
吸附
纳米技术
共价有机骨架
金属有机骨架
多孔介质
化学工程
有机化学
复合材料
化学
物理
工程类
量子力学
作者
Fabian Heck,Lars Grunenberg,Nadine Schnabel,Amelie Heilmaier,Thomas Sottmann,Liang Yao,Bettina V. Lotsch
标识
DOI:10.1002/adma.202415882
摘要
Abstract The rapid advancement of covalent organic frameworks (COFs) in recent years has firmly established them as a new class of molecularly precise and highly tuneable porous materials. However, compared to other porous materials, such as zeolites and metal‐organic frameworks, the successful integration of hierarchical porosity into COFs remains largely unexplored. The challenge lies in identifying appropriate synthetic methods to introduce secondary pores without compromising the intrinsic structural porosity of COFs. In this study, a template‐induced synthetic methodology is realized to facilitate the construction of hierarchically porous COFs (hCOFs). This novel approach utilizes commercially available zinc oxide nanoparticles as a hard template, enabling to increase the total pore volume of a series of β ‐ketoenamine‐linked COFs as well as an imine‐based COF while preserving their surface areas. In addition to transmission electron microscopy and gas adsorption analyses, small‐angle X‐ray scattering and pulsed field gradient nuclear magnetic resonance techniques are employed to investigate the hierarchical porosity and diffusivity of guest molecules within hCOFs. This study demonstrates that the hierarchically porous nature of hCOFs significantly reduces diffusion limitations, thus leading to simultaneous enhancements in adsorption capacity, diffusivity, and catalytic performance.
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