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分子气球:苯撑转子旋转导致分子陀螺笼的膨胀。

A molecular balloon: expansion of a molecular gyrotop cage due to rotation of the phenylene rotor.

机构信息

Faculty of Pharmaceutical Sciences at Kagawa Campus, Tokushima Bunri University, Sanuki, Kagawa, Japan.

出版信息

J Am Chem Soc. 2012 Aug 1;134(30):12458-61. doi: 10.1021/ja305822e. Epub 2012 Jul 19.

Abstract

A macrocage molecule with a bridged phenylene rotor has been reported as a molecular gyrotop, because the rotor can rotate even in a crystalline state. Although the most stable cage structure of the molecular gyrotop in a crystal was folded and shrunken at low temperature, expansion of the cage was observed at high temperature due to rapid rotation of the phenylene in a crystal. This phenomenon is analogous to the deflation and inflation of a balloon. Moreover, the unusually large thermal expansion coefficient of the crystal was estimated in the temperature range in which the expansion of the cage was observed, indicating a new function of dynamic states of the molecules.

摘要

一种带有桥联亚苯基转子的大环分子被报道为分子陀螺,因为即使在晶体状态下,转子也可以旋转。尽管分子陀螺在晶体中的最稳定笼状结构在低温下会折叠和收缩,但由于亚苯基在晶体中的快速旋转,在高温下观察到笼状结构的膨胀。这种现象类似于气球的放气和充气。此外,在观察到笼状结构膨胀的温度范围内,估计晶体具有异常大的热膨胀系数,这表明分子动态状态具有新的功能。

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