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Hovering and Twirling of Tethered Molecules by Confinement between Surfaces

机译:通过表面之间的限制在分子间盘旋和旋转

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Through STM images, we show that azobenzene-terminated alkanethiols hover and twirl when confined between the Ag tip and Au(III) substrate of an STM junction. In contrast with mechanisms of activation used to drive molecular rotors, twirling is induced by the effective elimination of lateral corrugation in the energy landscape when molecules hover by their van der Waals attraction to the approaching tip. While in the stationary state the benzenes of the head group lie flat with an inter-ring separation of 7.5 angstrom, they stand on-edge as the molecule twirls and their separation contracts to 5.2 angstrom, close to the value of the free molecule. The captured images of motion allow the characterization of physisorption potentials.
机译:通过STM图像,我们发现当被限制在STM结的Ag尖端和Au(III)衬底之间时,偶氮苯封端的链烷硫醇会盘旋和旋转。与用于驱动分子转子的激活机制相反,当分子因其范德华力吸引到接近的尖端而悬停时,通过有效消除能量格局中的横向波纹而引起旋转。当处于静止状态时,头基的苯平放,环间间隔为7.5埃,当分子旋转时,它们处于前沿,它们的间隔收缩至5.2埃,接近游离分子的值。所捕获的运动图像允许表征物理吸附电位。

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