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树枝状分子转子的核心、分支和外围芳香基团处的快速旋转运动所反映的晶体流动性。

Crystal Fluidity Reflected by Fast Rotational Motion at the Core, Branches, and Peripheral Aromatic Groups of a Dendrimeric Molecular Rotor.

作者信息

Jiang Xing, O'Brien Zachary J, Yang Song, Lai Lan Huong, Buenaflor Jeffrey, Tan Colleen, Khan Saeed, Houk K N, Garcia-Garibay Miguel A

机构信息

Department of Chemistry and Biochemistry, University of California , Los Angeles, California 90095-1569, United States.

出版信息

J Am Chem Soc. 2016 Apr 6;138(13):4650-6. doi: 10.1021/jacs.6b01398. Epub 2016 Mar 25.

Abstract

Low packing densities are key structural features of amphidynamic crystals built with static and mobile components. Here we report a loosely packed crystal of dendrimeric rotor 2 and the fast dynamics of all its aromatic groups, both resulting from the hyperbranched structure of the molecule. Compound 2 was synthesized with a convergent strategy to construct a central phenylene core with stators consisting of two layers of triarylmethyl groups. Single crystal X-ray diffraction analysis confirmed a low-density packing structure consisting of one molecule of 2 and approximately eight solvent molecules per unit cell. Three isotopologues of 2 were synthesized to study the motion of each segment of the molecule in the solid state using variable temperature quadrupolar echo (2)H NMR spectroscopy. Line shape analysis of the spectra reveals that the central phenylene, the six branch phenylenes, and the 18 periphery phenyls all display megahertz rotational dynamics in the crystals at ambient temperature. Arrhenius analysis of the data gives similar activation energies and pre-exponential factors for different parts of the structure. The observed pre-exponential factors are 4-6 orders of magnitude greater than those of elementary site-exchange processes, indicating that the dynamics are not dictated by static energetic potentials. Instead, the activation energies for rotations in the crystals of 2 are controlled by temperature dependent local structural fluctuations and crystal fluidity.

摘要

低密度堆积是由静态和动态成分构成的两性动态晶体的关键结构特征。在此,我们报道了树枝状转子2的一种松散堆积晶体及其所有芳基的快速动力学,这两者均源于分子的超支化结构。化合物2采用汇聚策略合成,构建了一个带有由两层三芳基甲基组成的定子的中心亚苯基核。单晶X射线衍射分析证实了一种低密度堆积结构,每个晶胞由一个2分子和大约八个溶剂分子组成。合成了2的三种同位素异构体,以使用变温四极回波(2)H NMR光谱研究分子各部分在固态下的运动。光谱的线形分析表明,中心亚苯基、六个分支亚苯基和18个外围苯基在室温下的晶体中均表现出兆赫兹级的旋转动力学。对数据进行阿仑尼乌斯分析,得出结构不同部分具有相似的活化能和指前因子。观察到的指前因子比基本位点交换过程的指前因子大4 - 6个数量级,表明动力学不受静态能量势的支配。相反,2晶体中旋转的活化能由温度依赖性局部结构波动和晶体流动性控制。

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