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DESIGN OF A NEW ROTARY MOLECULAR MACHINE BASED ON NITROGEN INVERSION: A DFT INVESTIGATION

机译:基于氮反演的新型旋转式分子机的设计:DFT研究

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Ab initio calculations are employed to investigate nitrogen inversion as a configuration change that can supply an extremely useful switchable control mechanism for some complex systems. In this paper, the design of a new artificial rotary molecular machine based on nitrogen inversion is discussed. The introduced design of a molecular rotator is based on the reciprocating motion of a substituent due to the inversion phenomenon, leading to the rotary motion in the molecule. Since simple secondary amines easily face the inversion process at room temperature, aziridine is selected as the initial driver for the molecular motion. The most obvious finding from this study is that, following the displacement of the substituent attached to the aziridine nitrogen atom, two rotary motions occurr in the molecule, one clockwise and another counterclockwise with a 39.52 to 150.09° angle domain.
机译:从头算就可以用来研究氮反转的构型变化,它可以为某些复杂的系统提供极为有用的可切换控制机制。本文讨论了一种基于氮转化的新型人工旋转分子机的设计。分子旋转器的引入设计基​​于由于反转现象而导致的分子旋转运动的取代基的往复运动。由于简单的仲胺很容易在室温下面对转化过程,因此选择了氮丙啶作为分子运动的初始驱动力。这项研究最明显的发现是,随着取代氮丙啶氮原子上取代基的置换,分子中发生了两个旋转运动,一个是顺时针方向,另一个是逆时针方向,角域为39.52至150.09°。

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