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Ab-Initio Molecular Dynamics Simulation of Condensed-Phase Reactivity: The Electrolysis of Amino Acids and Peptides

机译:冷凝相反应性的AB-INITIO分子动力学模拟:氨基酸和肽的电解

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摘要

Electrolysis is a potential candidate for a quick method of wastewater cleansing. However, it is necessary to know what compounds might be formed from bioorganic matter. We want to know if there are toxic intermediates and if it is possible to influence the product formation by the variation in initial conditions. In the present study, we use Car–Parrinello molecular dynamics to simulate the fastest reaction steps under such circumstances. We investigate the behavior of amino acids and peptides under anodic conditions. Such highly reactive situations lead to chemical reactions within picoseconds, and we can model the reaction mechanisms in full detail. The role of the electric current is to discharge charged species and, hence, to produce radicals from ions. This leads to ultra-fast radical reactions in a bulk environment, which can also be seen as redox reactions as the oxidation states change. In the case of amino acids, the educts can be zwitterionic, so we also observe complex acid–base chemistry. Hence, we obtain the full spectrum of condensed-phase chemistry.
机译:电解是一种潜在的废水清洁方法的潜在候选者。然而,有必要知道哪些化合物可以由生物无机物质形成。我们想知道是否存在有毒的中间体,如果可以通过初始条件的变异影响产品形成。在本研究中,我们使用Car-Parrinello分子动力学来模拟这种情况下最快的反应步骤。我们研究了阳极条件下氨基酸和肽的行为。这种高反应性情况导致皮秒内的化学反应,我们可以全面地模拟反应机制。电流的作用是排出带电物种,因此,从离子产生自由基。这导致散装环境中的超快速激进反应,这也可以被视为氧化态变化的氧化还原反应。在氨基酸的情况下,可以是两性离子的,所以我们还观察到复杂的酸碱化学。因此,我们获得了完整的冷凝相化学。

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