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Structure of manganese diacetate tetrahydrate and low-temperature methyl-group dynamics

机译:四水合二乙酸锰的结构和低温甲基动力学

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We have determined the crystal structure of manganese(II) diacetate tetrahydrate at 300 and 14 K by single-crystal neutron diffraction. Proton density distributions for each of the three crystallographically distinct methyl groups have been calculated by Fourier difference. At room temperature the observed densities are those of quasi-free rotors. At low temperature rather well localized protons are observed. Inelastic neutron scattering measurements performed with single crystals allow us to assign each of the three tunnelling lines to a particular crystal site. Classical molecular dynamics simulations give density distributions in qualitative agreement with the observations. With quantum mechanics proton distributions can be represented with rotational wavefunctions convoluted with static distributions of librational coordinates. The effective rotational potentials are temperature dependent. [References: 23]
机译:我们已经通过单晶中子衍射在300和14 K下确定了四水合二乙酸锰(II)的晶体结构。通过傅立叶差计算了三个晶体学上不同的甲基的每个的质子密度分布。在室温下,观察到的密度是准无转子的密度。在低温下,观察到相当好的局部质子。用单晶进行的非弹性中子散射测量使我们能够将三条隧道线中的每条分配给特定的晶体位置。经典的分子动力学模拟给出了与观测结果定性一致的密度分布。利用量子力学,质子分布可以用旋转波函数表示,而旋转波函数可以用自由坐标的静态分布进行卷积。有效旋转电位取决于温度。 [参考:23]

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