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Mechanochemical synthesis of porous organic materials

机译:多孔有机材料的机械化学合成

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Porous organic materials (POMs) are of growing interest due to their potential uses in gas adsorption, separation, and catalysis. In comparison to porous inorganic materials (e.g., zeolites and metal oxides) or inorganic-organic hybrids (e.g., metal-organic frameworks), POMs possess a number of advantages, such as being composed of only light elements, possessing accessible functionality for organic reactions, having high stability in air and at atmospheric moisture levels, and possessing chemical robustness to acids and bases. Borrowed from the rich library of organic chemistry, various reaction routes like Sonogashira-Hagihara coupling, Yamamoto polymerization, Suzuki couplings, oxidative polymerization, the trimerization reaction of carbonitriles, solvothermal radical polymerization, and the imine condensation reaction, to name just a few, have been used to construct POMs. Not surprisingly, nearly all chemical transformations for POM construction proceed via solution-based synthesis methods. Just recently, much interesting progress on the mechanochemical synthesis (MS) of POMs has been made, highlighting the unique features of this method, such as solvent-free processing and fast reaction rates. In this mini-review, we wish to summarise the recent advances on the design of polymers of intrinsic microporosity, covalent-organic frameworks, covalent triazine-based frameworks, ordered mesoporous polymers, and ordered mesoporous carbons via MS. A brief comment about the MS of POMs in the future will also be discussed.
机译:多孔有机材料(多金属氧酸盐)是越来越感兴趣的,因为它们在气体吸附,分离,催化和潜在用途。相比于多孔无机材料(例如,沸石和金属氧化物)或无机 - 有机杂合体(例如,金属 - 有机骨架),多金属氧酸盐具有许多优点,例如被仅由光元件,具有用于有机反应的可访问功能的,其在空气中,并在大气中的湿气水平高稳定性,并拥有化学鲁棒性酸和碱。从有机化学的丰富的库借用,像的Sonogashira-萩原偶联,山本聚合法,Suzuki偶联,氧化聚合,腈的三聚反应中,溶剂热自由基聚合,和亚胺缩合反应中,各种反应途径仅举几,有被用于构建多金属氧酸盐。毫不奇怪,几乎为POM建设所有的化学变化通过基于溶液的合成方法进行。就在最近,在多金属氧酸盐的机械化学合成(MS)多有趣已经取得了进展,突出了该方法的独特的特点,如无溶剂处理和快速的反应速率。在这个迷你审查,我们要总结的固有微孔,共价有机骨架,共价的三嗪类框架聚合物设计的最新进展,有序介孔聚合物,并通过MS有序介孔碳。关于未来的POM的MS简评也将被讨论。

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