首页> 外文期刊>The Journal of Chemical Physics >Ion aggregation in high salt solutions. II. Spectral graph analysis of water hydrogen-bonding network and ion aggregate structures
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Ion aggregation in high salt solutions. II. Spectral graph analysis of water hydrogen-bonding network and ion aggregate structures

机译:高盐溶液中的离子聚集。二。水氢键网络和离子聚集体结构的光谱图分析

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Graph theory in mathematics and computer science is the study of graphs that are structures with pairwise connections between any objects. Here, the spectral graph theory and molecular dynamics simulation method are used to describe both morphological variation of ion aggregates in high salt solutions and ion effects on water hydrogen-bonding network structure. From the characteristic value analysis of the adjacency matrices that are graph theoretical representations of ion clusters, ion networks, and water H-bond structures, we obtained the ensemble average eigenvalue spectra revealing intricate connectivity and topology of ion aggregate structure that can be classified as either ion cluster or ion network. We further show that there is an isospectral relationship between the eigenvalue spectra of ion networks in high KSCN solutions and those of water H-bonding networks. This reveals the isomorphic relationship between water H-bond structure and ion-ion network structure in KSCN solution. On the other hand, the ion clusters formed in high NaCl solutions are shown to be graph-theoretically and morphologically different from the ion network structures in KSCN solutions. These observations support the bifurcation hypothesis on large ion aggregate growth mechanism via either ion cluster or ion network formation. We thus anticipate that the present spectral graph analyses of ion aggregate structures and their effects on water H-bonding network structures in high salt solutions can provide important information on the specific ion effects on water structures and possibly protein stability resulting from protein-water interactions.
机译:数学和计算机科学中的图论是对图的研究,图是具有任何对象之间的成对连接的结构。在这里,使用光谱图理论和分子动力学模拟方法来描述高盐溶液中离子聚集体的形态变化以及离子对水氢键网络结构的影响。通过以离子簇,离子网络和水H键结构的图形理论表示形式的邻接矩阵的特征值分析,我们获得了集合平均特征值谱,揭示了离子聚集体结构的复杂连通性和拓扑结构,可以将其分类为离子簇或离子网络。我们进一步表明,在高KSCN溶液中离子网络的本征值谱与水H键网络的本征值谱之间存在等光谱关系。这揭示了KSCN溶液中水的H键结构与离子-离子网络结构之间的同构关系。另一方面,高NaCl溶液中形成的离子簇与KSCN溶液中的离子网络结构在图论和形态学上不同。这些观察结果支持通过离子簇或离子网络形成的大型离子聚集体生长机理的分叉假设。因此,我们预计目前的离子图谱图分析及其在高盐溶液中对水H键网络结构的影响可以提供有关离子对水结构的特殊影响的重要信息,并可能提供蛋白质与水相互作用产生的蛋白质稳定性的重要信息。

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