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Research Article

Closely packed nanoparticle monolayer as a strain gauge fabricated by convective assembly at a confined angle

Chao Zhang1Juan Li1Shanshan Yang1Weihong Jiao1Shuang Xiao1Mingqing Zou1Songliu Yuan1Fei Xiao2Shuai Wang2( )Lihua Qian1 ( )
School of PhysicsHuazhong University of Science and TechnologyWuhan430074China
School of Chemistry and Chemical EngineeringHuazhong University of Science and TechnologyWuhan430074China
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Abstract

The reliability and sensitivity of a strain gauge made from a nanoparticle monolayer intrinsically depend on electron tunneling between the adjacent nanoparticles, so that creating nanoscale interstitials with uniform distribution and tuning the interparticle separation reversibly during cyclic mechanical stress are two vital issues for performance enhancement. In this work, one assembly technique is initialized to fabricate parallel nanoparticle strips by precisely tailoring the contact angle of a gold colloid on a substrate. The assembly of a nanoparticle monolayer with a close-packed pattern can be simultaneously switched on and off by independently varying the contact angle across a threshold value of 4.2°. This nanoparticle strip shows a reversible and reliable electrical response even if a mechanical strain as small as 0.027% is periodically supplied, implying well-controlled electron tunneling between the adjacent nanoparticles.

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Nano Research
Pages 824-834

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Cite this article:
Zhang C, Li J, Yang S, et al. Closely packed nanoparticle monolayer as a strain gauge fabricated by convective assembly at a confined angle. Nano Research, 2014, 7(6): 824-834. https://doi.org/10.1007/s12274-014-0443-x

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Received: 06 December 2013
Revised: 06 February 2014
Accepted: 01 March 2014
Published: 03 June 2014
© Tsinghua University Press and Springer-Verlag Berlin Heidelberg 2014