Author:
Kitaguchi Yuya,Habuka Satoru,Okuyama Hiroshi,Hatta Shinichiro,Aruga Tetsuya,Frederiksen Thomas,Paulsson Magnus,Ueba Hiromu
Abstract
Mechanical methods for single-molecule control have potential for wide application in nanodevices and machines. Here we demonstrate the operation of a single-molecule switch made functional by the motion of a phenyl ring, analogous to the lever in a conventional toggle switch. The switch can be actuated by dual triggers, either by a voltage pulse or by displacement of the electrode, and electronic manipulation of the ring by chemical substitution enables rational control of the on-state conductance. Owing to its simple mechanics, structural robustness, and chemical accessibility, we propose that phenyl rings are promising components in mechanical molecular devices.
Subject
Electrical and Electronic Engineering,General Physics and Astronomy,General Materials Science
Cited by
11 articles.
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