Hierarchical Engineering of Single-Crystalline Mesoporous Metal–Organic Frameworks with Hollow Structures

化学 介孔材料 金属有机骨架 纳米技术 化学工程 有机化学 催化作用 材料科学 吸附 工程类
作者
Zirui Lv,Minchao Liu,Yi Yang,Tianhao Chen,Wenyu Yang,Yijin Wang,Zaiwang Zhao,Kun Lan,Tiancong Zhao,Qiaowei Li,Xiaomin Li,Dongyuan Zhao
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:147 (17): 14585-14594 被引量:29
标识
DOI:10.1021/jacs.5c01415
摘要

Although the superiority of hierarchical structure has driven extensive demand for applications, establishing hierarchy in a long-range-ordered single crystal remains a formidable challenge due to the inherent competition and contradiction between single crystallinity and controllable hierarchical structure. Herein, we demonstrate a growth and dissociation kinetics cooperative strategy for synthesizing a family of hollow single-crystalline mesoporous metal–organic frameworks (meso-MOFs) with hierarchical structures. The approach employs a dual-template method, integrating both hard and soft templates. By adjusting the HCl/CH3COOH ratio, the reaction system’s pH can be tuned to regulate the dissociation kinetics of the acid-sensitive seeds serving as hard templates for the formation of hollow structure, while simultaneously modifying the concentration of the dual acids to control the growth kinetics of meso-MOF shells. The competition between maintaining a single crystallinity and achieving a well-defined hierarchical structure can be effectively balanced. Driven by the two interfacial kinetics, we successfully obtained the octahedral meso-MOF nanoparticles that not only exhibit a well-defined hollow structure with precisely controllable hollow size (∼81–1120 nm) and tunable wall thickness (∼28.6–61.3 nm) but also retain their single-crystal integrity. Specifically, the dissociation kinetics of seeds governed the formation of hollow structures, while the growth kinetics of single-crystalline meso-MOF shells ensured uniform coverage and structural integrity. Based on this strategy, we further developed a series of novel hollow meso-MOFs with hierarchical nanostructures, including hollow open-capsule meso-MOFs, 2D hollow meso-MOFs, hollow interlayer-structured meso-MOFs, macro-meso-micro trimodal porous MOFs, and so on.
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