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Thermal modulation of birefringence observed in a crystalline molecular gyrotop

机译:在晶体分子陀螺仪中观察到双折射的热调制

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Recently, functional organic materials have been put into practical use. The application of molecular motions has the potential to create new molecule-based materials. For this reason, considerable attention has been focused on the chemistry and properties of molecular machines in which mechanical motions of parts of the molecules are observed. In particular, phenylene rotation in the crystalline state has been investigated using framed molecular gyrotops having a phenylene rotor encased in three long alkyl spokes. In this study, we show thermal modulation of birefringence in a crystal due to the states of dynamic equilibrium of a novel molecular gyrotop. A macrocage molecule having a bridged phenylene rotor was synthesized as a novel molecular gyrotop. Rapid rotation of the phenylene rotor of the molecular gyrotop was confirmed by solid-state 2H NMR spectroscopy that showed changes in the optical properties of a single crystal, i.e., the thermal modulation of birefringence. These results are the first application of the dynamic states in a crystal causing an optical change. These phenomena were also confirmed by control experiments using a molecular gyrotop with a nonrotating xylene rotor. We anticipate our finding to be a starting point for the creation of a new field of material chemistry that will make use of the dynamic states of molecules.
机译:近来,功能性有机材料已投入实际使用。分子运动的应用有可能创造出新的基于分子的材料。由于这个原因,人们对分子机器的化学性质和性质给予了相当大的关注,其中观察到了分子部分的机械运动。特别地,已经使用具有包围在三个长烷基辐条中的亚苯基转子的框架分子陀螺仪研究了在结晶状态下的亚苯基旋转。在这项研究中,由于新型分子陀螺仪的动态平衡状态,我们显示了晶体中双折射的热调制。具有桥联亚苯基转子的巨笼分子被合成为新型分子陀螺仪。固态陀螺仪的2H NMR光谱证实了分子陀螺仪的亚苯基转子的快速旋转,该光谱显示了单晶光学性质的变化,即双折射的热调制。这些结果是动态状态在晶体中引起光学变化的首次应用。这些现象也通过使用具有非旋转二甲苯转子的分子陀螺仪的对照实验得到了证实。我们希望我们的发现将成为创建新的材料化学领域的起点,该领域将利用分子的动态状态。

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