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Mechanoresistive single-molecule junctions

机译:Mechanoresistive单分子连接

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Single-molecule junctions – devices fabricated by electrically connecting a single molecule to two electrodes – can respond to a variety of stimuli, that include electrostatic/electrochemical gating, light, other chemical species, and mechanical forces. When the latter is used, the device becomes mechanoresistive which means that its electrical resistance/conductance changes upon application of a mechanical stress. The mechanoresistive phenomenon can arise at the metal-molecule interface or it can be embedded in the molecular backbone, and several strategies to attain high reproducibility, high sensitivity and reversible behaviour have been developed over the years. These devices offer a unique insight on the process of charge transfer/transport at the metal/molecule interface, and have potential for applications as nanoelectromechanical systems, integrating electrical and mechanical functionality at the nanoscale. In this review, the status of the field is presented, with a focus on those systems that proved to have reversible behaviour, along with a discussion on the techniques used to fabricate and characterise mechanoresistive devices.
机译:单分子连接,设备制造电连接两个单分子电极,可以应对各种各样的刺激,包括静电/电化学门,光,其他化学物种,机械部队。设备变得mechanoresistive这意味着其电阻/电导的变化在应用程序的机械应力。mechanoresistive现象可能出现在也可以是嵌在metal-molecule接口分子骨干,和几个策略达到高重现性、灵敏度高可逆的行为已经发达了年。电荷转移/运输的过程金属/分子接口,有潜力应用程序作为nanoelectromechanical系统,集成机电在纳米尺度上的功能。场的状态了,关注那些系统,证明了可逆的行为,以及讨论用于制造的技术和特点mechanoresistive设备。

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