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首页> 外文期刊>Crystal growth & design >Tris-o-phenylenedioxycyclotriphosphazene (TPP) Inclusion Compounds Containing a Dipolar Molecular Rotor
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Tris-o-phenylenedioxycyclotriphosphazene (TPP) Inclusion Compounds Containing a Dipolar Molecular Rotor

机译:含偶极分子转子的三邻苯二氧基环三磷腈(TPP)包含化合物

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摘要

A rod-shaped molecular rotor consisting of a pterphenyl shaft attached to p-carborane whose antipodal position carries a dipolar 2,3-dichlorophenyl rotator forms an inclusion compound with hexagonal tris-o-phenylenedioxycyclotriphosphazene (TPP). Results of solid-state NMR spectroscopy, X-ray powder diffraction, dielectric loss spectroscopy, and density functional theory calculations lead us to propose that the whole molecule inserts into the TPP channels, with the rotator located in the outermost surface layer. Although the placement and alignment of the dipoles at the surface appear favorable, the sample does not exhibit collective behavior even at 7 K, presumably due to the relatively large barrier to rotation (~8.6 kcal/mol). In incompletely annealed samples of the inclusion compound, some of the rotators protrude outside the surface and have a rotational barrier of ~3.4 kcal/mol. In the inclusion compound of an analog in which the rotator is replaced with a methyl group, some of the methyl substituents are located inside the surface layer of TPP and others protrude above it.
机译:棒状分子转子由与对-甲撑碳氢化合物连接的三联苯轴组成,其对映体位置带有偶极2,3-二氯苯基旋转子,与六方三邻邻苯二甲氧基环三磷腈(TPP)形成包合物。固态NMR光谱,X射线粉末衍射,介电损耗光谱和密度泛函理论计算的结果使我们提出,整个分子插入TPP通道,而旋转子位于最外层表面层。尽管偶极子在表面上的放置和排列看起来很有利,但样品甚至在7 K时也没有表现出集体行为,这可能是由于相对较大的旋转势垒(〜8.6 kcal / mol)。在夹杂物未完全退火的样品中,一些旋转器突出到表面之外,并具有〜3.4 kcal / mol的旋转势垒。在其中转子被甲基取代的类似物的包合物中,一些甲基取代基位于TPP的表面层之内,而另一些则位于TPP的表面层之上。

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