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Nucleation and growth of 2D covalent organic frameworks: polymerization and crystallization of COF monomers

机译:2D共价有机框架的成核和生长:COF单体的聚合和结晶

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We establish a theoretical foundation for understanding the nucleation and growth of 2D covalent organic frameworks (COFs) from solution. This foundation should make it easier to realize some of the unique properties of COFs in targeted applications by allowing us to understand how processing variables such as solvent choice and linkage chemistry lead to larger crystalline domains. We use free energy techniques to map out the reaction mechanisms and activation energies of three fundamental reactions that are responsible for the early stages of 2D COF nucleation for a prototypical and commonly used 2D boronate ester material, COF-5, in water and methanol solvents. We show that the presence of water and methanol greatly catalyzes the boronate ester formation reactions, lowering the activation energy barrier by about 10 kcal mol(-1) relative to an uncatalyzed reaction pathway. This is in good agreement with experimental observations by Smith and Dichtel (JACS 2014). Our crystallization studies also conclusively eliminate certain proposed mechanisms of growth, such as polymerization of large sheets followed by stacking, while strengthening the case for templated polymerization as a likely growth mechanism for COF crystals.
机译:我们为了解来自溶液的2D共价有机骨架(COF)的核肉和生长来建立理论基础。该基础应更容易实现目标应用中COFS的一些独特特性,允许我们了解如何如何处理诸如溶剂选择和联动化学导致较大的结晶结构域的处理变量。我们使用自由能技术来映射三个基本反应的反应机制和活化能量,该基本反应负责原型和常用的2D硼酸酯材料,COF-5,水和甲醇溶剂中的2D COF成核的早期阶段。我们表明水和甲醇的存在大大催化了硼酸酯形成反应,相对于未催化的反应途径将活化能势垒降低约10kcal摩尔(-1)。这与Smith和Dichtel(Jacs 2014)的实验观察一致。我们的结晶研究还得出结论,消除了某些提出的生长机制,例如大片的聚合,然后堆叠,同时加强模板化聚合的情况,作为COF晶体的可能生长机制。

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