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Electron paramagnetic resonance spectra simulation directly from molecular dynamics trajectories of a liquid crystal with a doped paramagnetic spin probe.

机译:直接用掺杂的顺磁性自旋探针从液晶的分子动力学轨迹模拟电子顺磁共振光谱。

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摘要

We report simulation of EPR spectra directly and entirely from trajectories generated from molecular dynamics simulations. Results are reported for a model 3β-DOXYL-5α-cholestane spin probe in a coarse-grained solvent representing a 5CB nematic host. The results are in excellent agreement with the experimental spectra. The calculated order parameters associated with the paramagnetic probe show strong correlation with the order parameter of 5CB mesogens and are in agreement with those reported in the literature. Simulation of EPR spectra entirely from molecular dynamics of real structures provides direct correlation between molecular motions and the features observed in the spectra, allowing unambiguous interpretation of the spectra. This method opens the possibility for “computer engineering” of spin-labeled materials with the desired properties, such as spin-labeled proteins, prior to experiment.
机译:我们直接和完全从分子动力学模拟生成的轨迹报告EPR光谱的模拟。报告了在代表5CB向列宿主的粗粒溶剂中的3β-DOXYL-5α-胆甾烷自旋探针模型的结果。结果与实验光谱非常吻合。计算出的与顺磁探针相关的有序参数显示出与5CB液晶元的有序参数有很强的相关性,并且与文献报道的一致。完全从真实结构的分子动力学模拟EPR光谱,可以在分子运动与光谱中观察到的特征之间建立直接的关联,从而可以清晰地解释光谱。这种方法为实验前具有所需特性的自旋标记材料(如自旋标记蛋白)的“计算机工程”打开了可能性。

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