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Orientational motion of nitroxides in molecular glasses: Dependence on the chemical structure, on the molecular size of the probe, and on the type of the matrix

机译:分子玻璃中氮氧化物的定向运动:取决于化学结构,探针的分子大小和基质的类型

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Echo detected electron paramagnetic resonance (EPR) study of orientational molecular motion of nitroxide spin probes in glassy solvents was performed by evaluating the anisotropic transverse relaxation rate 1/T-2 at different positions of the EPR spectrum. Experiments were done on nitroxides of different sizes and shapes, in different solvent glasses, with different deuteration degree, and at different temperatures. We found that the properties of the solvent glass have a much stronger impact on the relaxation rate than the size and shape of the nitroxide have. We concluded that the anisotropic relaxation is induced by reordering of the solvent cage and not by small angle fluctuations of the nitroxide in the cage or intramolecular motion of nitroxide. (C) 2004 American Institute of Physics.
机译:通过评估EPR光谱不同位置的各向异性横向弛豫速率1 / T-2,对玻璃态溶剂中的氮氧化物自旋探针的定向分子运动进行了回波检测电子顺磁共振(EPR)研究。在不同溶剂玻璃,不同氘化程度和不同温度的不同尺寸和形状的氮氧化物上进行了实验。我们发现,与氮氧化物的大小和形状相比,溶剂玻璃的性能对弛豫速率的影响要大得多。我们得出结论,各向异性弛豫是由溶剂笼的重新排序引起的,而不是由笼中氮氧化物的小角度波动或氮氧化物的分子内运动引起的。 (C)2004年美国物理研究所。

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