Molecular Muscle based Nano-Electro-Mechanical-Systems (NEMS)

B. K. Juluri, Ajeet Kumar, Yi Liu, T. Ye, Ying-Wei Yang, A. Flood, Lei Fang, J. Stoddart, P. Weiss, T. Huang
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引用次数: 0

Abstract

Created by a bottom-up approach based on self-assembly and molecular recognition, molecular motors and muscles such as bistable rotaxanes are recognized as promising actuation materials for Micro/Nano Electro-Mechanical-Systems (MEMS/NEMS). In this work, we report a hybrid NEMS actuation device based on electrochemical activation of surface-bound bistable rotaxanes (molecular muscles). This NEMS actuator consists of a micro-cantilever coated with a self-assembled monolayer of redox-active palindromic bistable [3]rotaxane R8+ molecules, and when subjected to oxidizing and reducing electrochemical potential undergoes controllable and reversible bending. This work represents an important step towards the practical realization of artificial molecular muscle based actuators for various NEMS/MEMS applications.
分子肌肉纳米机电系统(NEMS)
基于自组装和分子识别的自下而上方法,双稳态轮烷等分子马达和肌肉被认为是微/纳米机电系统(MEMS/NEMS)中有前途的驱动材料。在这项工作中,我们报道了一种基于表面结合双稳态轮烷(分子肌肉)的电化学激活的混合NEMS驱动装置。该NEMS执行器由微悬臂组成,微悬臂由自组装的氧化还原活性回文双稳态[3]轮烷R8+分子单层包覆,在氧化还原电化学电位作用下发生可控可逆弯曲。这项工作代表了为各种NEMS/MEMS应用实际实现基于人工分子肌肉的致动器的重要一步。
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