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Interplay of water and a supramolecular capsule for catalysis of reductive elimination reaction from gold

机译:水和超分子胶囊的相互作用,用于催化黄金的还原消除反应催化

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Supramolecular assemblies have gained tremendous attention due to their ability to catalyze reactions with the efficiencies of natural enzymes. Using ab initio molecular dynamics, we identify the origin of the catalysis by the supramolecular capsule Ga 4 L 6 12- on the reductive elimination reaction from gold complexes and assess their similarity to natural enzymes. By comparing the free energies of the reactants and transition states for the catalyzed and uncatalyzed reactions, we determine that an encapsulated water molecule generates electric fields that contributes the most to the reduction in the activation free energy. Although this is unlike the biomimetic scenario of catalysis through direct host-guest interactions, the electric fields from the nanocage also supports the transition state to complete the reductive elimination reaction with greater catalytic efficiency. However it is also shown that the nanocage poorly organizes the interfacial water, which in turn creates electric fields that misalign with the breaking bonds of the substrate, thus identifying new opportunities for catalytic design improvements in nanocage assemblies.
机译:由于它们能够催化与天然酶的效率的能力,超分子组件由于催化反应而获得了巨大的关注。使用AB Initio分子动力学,我们将超分子胶囊GA 4 L 6 12-催化催化的来源于金络合物中的还原消除反应,并评估它们与天然酶的相似性。通过比较反应物的自由能和转变状态对催化和未催化的反应,我们确定包封的水分子产生贡献最大的电场,以减少活化能量。虽然这与通过直接宿主相互作用的催化的生物摩托的情景不同,但是来自纳米病的电场也支持过渡状态,以完成更高的催化效率的还原消除反应。然而,还表明,纳米记录组织界面不良,这又产生了与基板的断裂键相加的电场,从而识别纳米腔组件中的催化设计改进的新机遇。

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