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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Interplay of Intrinsic,Environmental,and Dynamic Effects in Tuning the EPR Parameters of Nitroxides;Further Insights from an Integrated Computational Approach
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Interplay of Intrinsic,Environmental,and Dynamic Effects in Tuning the EPR Parameters of Nitroxides;Further Insights from an Integrated Computational Approach

机译:调节一氧化氮的EPR参数时的内在,环境和动态效应之间的相互作用;综合计算方法的进一步见解

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摘要

The role of stereoelectronic,environmental,and short-time dynamic effects in tuning the hyperfine and gyromagnetic tensors of a prototypical nitroxide spin probe has been investigated by an integrated computational approach based on extended Lagrangian molecular dynamics and discrete-continuum solvent models.Trajectories were generated in two protic solvents as well as in the gas phase for reference;structural analysis of the dynamics,and comparison with optimized solute-solvent clusters,allowed for the identification of the prevailing solute-solvent hydrogen-bonding patterns and helped to define the strategy for the computation of magnetic parameters.This was performed in a separate step,on a large number of frames,by a high-level DFT approach coupling the PBEO hybrid functional with a tailored basis set and with proper account of specific and bulk solvent effects.Remarkable changes in solvation networks are found on going from aqueous to methanol solution,thus providing a rationalization of indirect experimentally available evidence.The computed magnetic parameters are in satisfactory agreement with the available measured values and allow for an unbiased evaluation of the role of different effects in tuning the overall EPR observables.Apart from their intrinsic interest,our results pave the route toward the development of tunable detection protocols based on specific spectroscopic signatures.
机译:通过基于扩展拉格朗日分子动力学和离散连续溶剂模型的集成计算方法,研究了立体电子,环境和短时动态效应在调节典型氮氧化物自旋探针的超精细和旋磁张量中的作用。在两种质子溶剂中以及在气相中都可以作为参考;动力学的结构分析,以及与优化的溶质-溶剂簇的比较,可用于识别主要的溶质-溶剂氢键模式,并有助于确定策略磁参数的计算。这是在一个单独的步骤中,通过大量的DFT方法在大量帧上执行的,该方法将PBEO杂化功能与量身定制的基础集结合在一起,并适当考虑了特定和大量溶剂的影响。从水溶液到甲醇溶液,发现溶剂化网络发生了变化,从而提供了合理的方法间接的实验可得的证据。计算出的磁参数与可得的测量值令人满意地吻合,并且可以公正地评估不同效应在调节总体EPR观测值中的作用。除了它们的内在兴趣,我们的结果也为我们铺平了道路。致力于基于特定光谱签名的可调检测协议的开发。

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