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首页> 外文期刊>Angewandte Chemie >Coating the Right Polymer: Achieving Ideal Metal-Organic Framework Particle Dispersibility in Polymer Matrixes Using a Coordinative Crosslinking Surface Modification Method
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Coating the Right Polymer: Achieving Ideal Metal-Organic Framework Particle Dispersibility in Polymer Matrixes Using a Coordinative Crosslinking Surface Modification Method

机译:涂层右聚合物:使用协调的交联表面改性方法在聚合物基质中实现理想的金属 - 有机骨架颗粒分散性

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摘要

This work describes the first generalizable method to modify various metal-organic framework (MOF) surfaces with polyimide, polysulfone, polycarbonate, and polymer of intrinsic microporosity-1 (PIM-1). The method first utilizes electrostatic adsorption to rapidly decorate positively charged MOF surfaces with a layer of negatively charged metal-organic nanocapsule, PgC(5)Cu. After mixing with the polymer, the copper open metal sites on PgC(5)Cu can coordinatively crosslink the polar functional groups on the surface polymer upon thermal activation thereby resulting in the immobilization of a uniform sub-10 nm polymer coating. We quantitatively analyzed the distribution of free path spacing between MOF particles and demonstrated that when the surface polymer matches the matrix polymer, the MOF dispersion was not only visually improved but also found to align perfectly with a theoretically predicted ideal dispersion model where no aggregation driving force was present.
机译:这项工作描述了用聚酰亚胺、聚砜、聚碳酸酯和固有微孔聚合物-1(PIM-1)修饰各种金属有机骨架(MOF)表面的第一种通用方法。该方法首先利用静电吸附,用一层带负电的金属有机纳米胶囊PgC(5)Cu快速修饰带正电的MOF表面。与聚合物混合后,PgC(5)Cu上的铜开放金属位点可在热活化时协调交联聚合物表面上的极性官能团,从而固定化均匀的小于10 nm的聚合物涂层。我们定量分析了MOF颗粒之间自由程间距的分布,并证明当表面聚合物与基体聚合物匹配时,MOF分散不仅在视觉上得到改善,而且与理论预测的理想分散模型完全一致,其中不存在聚集驱动力。

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