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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Efficient Computational Research Protocol to Survey Free Energy Surface for Solution Chemical Reaction in the QM/MM Framework: The FEG-ER Methodology and Its Application to Isomerization Reaction of Glycine in Aqueous Solution
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Efficient Computational Research Protocol to Survey Free Energy Surface for Solution Chemical Reaction in the QM/MM Framework: The FEG-ER Methodology and Its Application to Isomerization Reaction of Glycine in Aqueous Solution

机译:QM / MM框架中测量溶液化学反应自由能表面的有效计算研究协议:FEG-ER方法及其在甘氨酸水溶液异构化反应中的应用

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in solution chemical reaction, we often need to consider a multidimensional free energy (FE) surface (FES) which is analogous to a Born-Oppenheimer potential energy surface. To survey the FES, an efficient computational research protocol is proposed within the QM/MM framework; (i) we first obtain some stable states (or transition states) involved by optimizing their structures on the FES, in a stepwise fashion, finally using the free energy gradient (PEG) method, and then (ii) we directly obtain the FE differences among any arbitrary states on the FES, efficiently by employing the QM/MM method with energy representation (ER), i.e., the QM/MM-ER method. To validate the calculation accuracy and efficiency, we applied the above FEG-BR methodology to a typical isomerization reaction of glycine in aqueous solution, and reproduced quite satisfactorily the experimental value of the reaction FE. Further, it was found that the structural relaxation of the solute in the QM/MM force field is not negligible to estimate correctly the FES. We believe that the present research protocol should become prevailing as one computational strategy and will play promising and important roles in solution chemistry toward solution reaction ergodography.
机译:在溶液化学反应中,我们经常需要考虑类似于Born-Oppenheimer势能表面的多维自由能(FE)表面。为了调查FES,在QM / MM框架内提出了一种有效的计算研究协议。 (i)我们首先通过逐步优化FES上的结构来获得一些稳定态(或过渡态),最后使用自由能梯度(PEG)方法,然后(ii)直接获得FE差通过使用具有能量表示(ER)的QM / MM方法(即QM / MM-ER方法),可以有效地在FES上的任意状态之间进行选择。为了验证计算的准确性和效率,我们将上述FEG-BR方法应用于甘氨酸在水溶液中的典型异构化反应,并相当令人满意地再现了反应FE的实验值。此外,发现在QM / MM力场中溶质的结构弛豫不能忽略以正确估计FES。我们认为,目前的研究方案应成为一种流行的计算策略,并将在溶液化学中对溶液反应人体工程学发挥有希望的重要作用。

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