首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Single-crystal X-ray diffraction, isolated-molecule and cluster electronic structure calculations, and scanning electron microscopy in an organic solid: Models for intramolecular motion in 4,4'-dimethoxybiphenyl
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Single-crystal X-ray diffraction, isolated-molecule and cluster electronic structure calculations, and scanning electron microscopy in an organic solid: Models for intramolecular motion in 4,4'-dimethoxybiphenyl

机译:单晶X射线衍射,分离分子和簇电子结构计算,以及有机固体中的扫描电子显微镜:4,4'-二甲氧基双苯基的分子内运动模型

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This paper brings together field emission scanning electron microscopy, single-crystal X-ray diffraction, and density functional electronic structure calculations in both an isolated molecule and a cluster of seven whole and fourteen half molecules of 4,4'-dimethoxybiphenyl to investigate coupled methyl-group rotation (over a barrier) and methoxy-group libration (meaning a rotation from the ground state not all the way to the transition state and back again). The structure of the isolated molecule, determined by the electronic structure calculations, is compared with the structure of the molecule found in the crystal. As the methyl group rotates from its ground state to its transition state, the methoxy group rotates 30° in the isolated molecule and 16° in the cluster. The calculated barriers for this coupled methyl-group rotation and methoxy group libration in the isolated molecule and in the crystal are 12.8 kJ mol ~(-1) and 10.3 kJ mol ~(-1) respectively, suggesting that intermolecular interactions in the crystal lower the barrier. These barriers are compared with the value of 11.5?±0.5 kJ mol ~(-1) obtained from solid-state ~1H spin-lattice relaxation measurements [P. A. Beckmann and E. Schneider, J. Chem. Phys. 2012, 136, 054508.].
机译:本文将场发射扫描电子显微镜,单晶X射线衍射和密度函数电子结构计算在一起,分离分子和七个整体和14个半甲氧基苯基苯基的七个整体和14个半分子的簇中,以研究偶联的甲基-Group旋转(在屏障上)和甲氧基团的自由(意味着从地面状态的旋转不是一直到过渡状态并再次回来)。通过电子结构计算确定的分子分子的结构与晶体中发现的分子的结构进行比较。当甲基从其接地状态旋转到其过渡状态时,甲氧基在分离的分子中旋转30°,在簇中16°旋转。在分离的分子中和晶体中的该偶联甲基族旋转和甲氧基旋转的计算障碍分别是12.8kJ摩尔〜(-1)和10.3kJ摩尔〜(-1),表明晶体中的分子间相互作用障碍。这些屏障与从固态〜1H旋转晶格弛豫测量获得的11.5×0.5kJ mol〜(-1)的值进行比较[P. A. Beckmann和E. Schneider,J.Chem。物理。 2012,136,054508.]。

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