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Methyl group dynamics in glassy, polycrystalline, and liquid coenzyme Q(10) studied by quasielastic neutron scattering

机译:拟弹性中子散射研究玻璃态,多晶态和液态辅酶Q(10)中的甲基动力学

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The methyl group rotation of coenzyme Q(10) confined in nanosized droplets was studied using quasielastic neutron scattering (QENS). Q(10) as an oligoisoprene derivative with ten isoprene units can easily be supercooled in nanodroplets. Fixed window scans and QENS spectra at several temperatures of glassy Q(10) were recorded to study the methyl group rotation which can be described by a logarithmic Gaussian distribution of hopping rates for temperatures below the glass transition temperature (T-g approximate to 200 K). A mean activation energy of 4.8 kJ/mol with a distribution width of 2.1 kJ/mol was obtained from the evaluation of the QENS spectra. A corresponding analysis of a fixed window scan yielded an average activation energy of 5.1 kJ/mol with a distribution width of 1.8 kJ/mol. The results are compared and discussed with those of chain deuterated polyisoprene-d(5). For polycrystalline Q(10), the QENS spectra could be described by the same model yielding a similar average activation energy as found for glassy Q(10). However, no temperature dependence of the distribution width was observed. Based on the performed low-temperature measurements, the correlation times for the methyl group rotation were extrapolated to temperatures of liquid Q(10). The complex dynamics of liquid Q(10) could be described by a model yielding an apparent diffusion coefficient, the jump rate of the methyl groups, as well as an overall molecular rotational diffusion coefficient. The correlation times of the methyl group rotation in liquid Q(10) at a given temperature T-0 coincide with values determined in the glassy phase and extrapolated to T-0. (C) 2008 American Institute of Physics.
机译:使用准弹性中子散射(QENS)研究了限制在纳米液滴中的辅酶Q(10)的甲基旋转。 Q(10)作为具有十个异戊二烯单元的低聚异戊二烯衍生物,可以很容易地在纳米液滴中过冷。记录了固定玻璃窗扫描和在多个玻璃态Q(10)温度下的QENS光谱以研究甲基旋转,这可以通过低于玻璃化转变温度(T-g约200 K)的温度的跳跃率的对数高斯分布来描述。通过QENS光谱的评估获得平均活化能为4.8kJ / mol,分布宽度为2.1kJ / mol。固定窗口扫描的相应分析得出平均活化能为5.1 kJ / mol,分布宽度为1.8 kJ / mol。将结果与链氘代聚异戊二烯-d(5)进行了比较和讨论。对于多晶Q(10),可以通过产生与玻璃态Q(10)类似的平均活化能的相同模型描述QENS光谱。然而,未观察到分布宽度的温度依赖性。基于执行的低温测量,将甲基旋转的相关时间外推到液体Q(10)的温度。液体Q(10)的复杂动力学可以通过产生表观扩散系数,甲基的跳跃率以及整体分子旋转扩散系数的模型来描述。在给定温度T-0下,液体Q(10)中甲基旋转的相关时间与在玻璃相中确定并推算到T-0的值一致。 (C)2008美国物理研究所。

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