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Controlled growth of imine-linked two-dimensional covalent organic framework nanoparticles

机译:亚胺连接的二维共价有机骨架纳米粒子的受控生长

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摘要

Covalent organic frameworks (COFs) consist of monomers arranged in predictable structures with emergent properties. However, improved crystallinity, porosity, and solution processability remain major challenges. To this end, colloidal COF nanoparticles are useful for mechanistic studies of nucleation and growth and enable advanced spectroscopy and solution processing of thin films. Here we present a general approach to synthesize imine-linked 2D COF nanoparticles and control their size by favoring imine polymerization while preventing the nucleation of new particles. The method yields uniform, crystalline, and high-surface-area particles and is applicable to several imine-linked COFs. In situ X-ray scattering experiments reveal the nucleation of amorphous polymers, which crystallize via imine exchange processes during and after particle growth, consistent with previous mechanistic studies of imine-linked COF powders. The separation of particle formation and growth processes offers control of particle size and may enable further improvements in crystallinity in the future.
机译:共价有机骨架(COF)由以可预测的结构排列并具有新兴性质的单体组成。然而,改善的结晶度,孔隙率和溶液可加工性仍然是主要挑战。为此,胶体COF纳米颗粒可用于成核和生长的机理研究,并能够进行高级光谱学和薄膜的固溶处理。在这里,我们提出了一种通用的方法来合成亚胺连接的2D COF纳米颗粒,并通过促进亚胺聚合同时防止新颗粒的成核来控制其尺寸。该方法产生均匀,结晶和高表面积的颗粒,适用于几种亚胺连接的COF。原位X射线散射实验揭示了非晶态聚合物的成核现象,该非晶态聚合物在颗粒生长期间和之后通过亚胺交换过程而结晶,这与先前对亚胺连接的COF粉末进行的机理研究一致。颗粒形成和生长过程的分离提供了颗粒大小的控制,并且将来可能进一步提高结晶度。

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