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Self-templated chemically stable hollow spherical covalent organic framework

机译:自模板化学稳定的空心球形共价有机骨架

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摘要

Covalent organic frameworks are a family of crystalline porous materials with promising applications. Although active research on the design and synthesis of covalent organic frameworks has been ongoing for almost a decade, the mechanisms of formation of covalent organic frameworks crystallites remain poorly understood. Here we report the synthesis of a hollow spherical covalent organic framework with mesoporous walls in a single-step template-free method. A detailed time-dependent study of hollow sphere formation reveals that an inside-out Ostwald ripening process is responsible for the hollow sphere formation. The synthesized covalent organic framework hollow spheres are highly porous (surface area similar to 1,500m(2) g(-1)), crystalline and chemically stable, due to the presence of strong intramolecular hydrogen bonding. These mesoporous hollow sphere covalent organic frameworks are used for a trypsin immobilization study, which shows an uptake of 15.5 mu mol g(-1) of trypsin.
机译:共价有机骨架是一类具有广阔前景的晶体多孔材料。尽管对共价有机框架的设计和合成进行了积极的研究近十年,但对共价有机框架微晶形成机理的了解仍然很少。在这里,我们报告了一种无模板的单步合成具有中孔壁的空心球形共价有机骨架的方法。对空心球形成的详细时间相关研究表明,由内而外的奥斯特瓦尔德成熟过程是空心球形成的原因。合成的共价有机框架空心球是高度多孔的(表面积类似于1,500m(2)g(-1)),晶体和化学稳定的,由于存在强分子内氢键。这些中孔空心球共价有机框架用于胰蛋白酶固定化研究,显示摄取了15.5μmol g(-1)的胰蛋白酶。

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