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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Quadrupolar NMR Spin Relaxation Calculated Using Ab Initio Molecular Dynamics: Group 1 and Group 17 Ions in Aqueous Solution
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Quadrupolar NMR Spin Relaxation Calculated Using Ab Initio Molecular Dynamics: Group 1 and Group 17 Ions in Aqueous Solution

机译:使用从头算分子动力学计算的四极核磁共振自旋弛豫:水溶液中的第1组和第17组离子

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摘要

Electric field gradient (EFG) fluctuations for the monoatomic ions ~7Li~+, ~(23)Na~+, ~(35)Cl~-, ~(81)Br~-, and ~(127)I~- in aqueous solution are studied using Car—Parrinello ab initio molecular dynamics (aiMD) simulations based on density functional theory. EFG calculations are typically performed with 1024 ion—solvent configurations from the aiMD simulation, using the Zeroth Order Regular Approximation (ZORA) relativistic Hamiltonian, Autocorrelation functions for the spherical EFG tensor elements are computed, transformed into the corresponding spectral densities (under the extreme narrowing condition), and subsequently converted into NMR quadrupolar relaxation rates for the ions. The relaxation rates are compared with experimental data. The order of magnitude is correctly predicted by the simulations. The computational protocol is tested in detail for ~(81)Br~-.
机译:水溶液中单原子离子〜7Li〜+,〜(23)Na〜+,〜(35)Cl〜-,〜(81)Br〜-和〜(127)I〜-的电场梯度(EFG)涨落使用基于密度泛函理论的Car-Parrinello从头算分子动力学(aiMD)模拟研究溶液。 EFG计算通常使用aiMD模拟中的1024离子-溶剂配置,使用零阶正则逼近(ZORA)相对论哈密顿量进行,计算球形EFG张量元素的自相关函数,并将其转换为相应的光谱密度(在极窄的情况下)条件),然后将其转换为NMR的NMR四极弛豫速率。将弛豫率与实验数据进行比较。通过仿真可以正确地预测数量级。对〜(81)Br〜-的计算协议进行了详细测试。

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