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OH⁻与木聚糖及其水合络合物的相互作用:使用伸长法的结构与分子动力学研究

Interaction of OH- with xylan and its hydrated complexes: structures and molecular dynamics study using elongation method.

作者信息

Jin Lin, Liu Kai, Aoki Yuriko

机构信息

Department of Material Sciences, Faculty of Engineering Sciences, Kyushu University, 6-1 Kasuga-Park, Fukuoka, 816-8580, Japan.

出版信息

J Mol Model. 2015 May;21(5):117. doi: 10.1007/s00894-015-2666-5. Epub 2015 Apr 16.

DOI:10.1007/s00894-015-2666-5
PMID:25877528
Abstract

The interaction of OH(-) group with (xylan)12 and its hydrated complexes were theoretically studied using elongation optimization (ELG-OPT) method and elongation ab initio molecular dynamics simulation (ELG-MD) method. OH(-) group could abstract a H-atom from the terminal xylan ring to form a complex (xylan)12(-)-H2O without any energy barrier. One and two extra water molecules were also added to the same terminal xylan ring. All the geometry optimization results obtained using elongation method were compared with conventional calculation results, and it suggested that ELG-OPT method worked well for (xylan)12, (xylan)12-OH(-), and its hydrated complexes. Moreover 10 ps ab initio molecular dynamics simulations were performed for complexes (xylan)12(-)-H2O, (xylan)12(-)-2H2O, and (xylan)12(-)-3H2O at 300 K, 500 K, and 700 K. (xylan)12(-)-H2O complex was stable at room temperature. However H2O molecule which was formed by OH(-) group could move at 500 K. At 700 K the H-abstract reaction reversed. Adding an extra water molecule only accelerated the water transfer reaction, but no more chemical reactions occurred, and the transfer time decreased when the temperature increased. The complex (xylan)12(-)-H2O became very stable when adding two extra water molecules even at high temperature, and it indicated that two extra water molecules stabilized the complex (xylan)12(-)-H2O.

摘要

采用伸长优化(ELG - OPT)方法和伸长从头算分子动力学模拟(ELG - MD)方法,从理论上研究了OH(-)基团与(xylan)12及其水合配合物的相互作用。OH(-)基团可以从木聚糖末端环上夺取一个氢原子,形成配合物(xylan)12(-)-H2O,且无任何能垒。还向同一个木聚糖末端环添加了一个和两个额外的水分子。将使用伸长方法获得的所有几何优化结果与传统计算结果进行了比较,结果表明ELG - OPT方法对(xylan)12、(xylan)12 - OH(-)及其水合配合物效果良好。此外,在300 K、500 K和700 K下,对配合物(xylan)12(-)-H2O、(xylan)12(-)-2H2O和(xylan)12(-)-3H2O进行了10 ps的从头算分子动力学模拟。(xylan)12(-)-H2O配合物在室温下稳定。然而,由OH(-)基团形成的H2O分子在500 K时可以移动。在700 K时,氢夺取反应逆转。添加一个额外的水分子只会加速水转移反应,但不会发生更多化学反应,且转移时间随温度升高而减少。即使在高温下添加两个额外的水分子时,配合物(xylan)12(-)-H2O也变得非常稳定,这表明两个额外的水分子使配合物(xylan)12(-)-H2O稳定。

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本文引用的文献

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An Efficient Local Molecular Dynamics Polymerization Simulation Combined with an MO Method.一种结合分子轨道方法的高效局部分子动力学聚合模拟
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Phys Chem Chem Phys. 2012 Sep 21;14(35):12086-9. doi: 10.1039/c2cp41593c. Epub 2012 Aug 3.
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