Literature DB >> 30913552

Buckled carbon nanotube network thin-film fabricated using chemically swelled elastomer substrates.

Hongjun Kim1, Eunsuk Choi, Minho Jung, Onejae Sul, Seung-Beck Lee.   

Abstract

We report on the fabrication of buckled carbon nanotube thin-film networks (CNTN) that increases in conductivity with applied tactile pressure. When tactile pressure was applied, the buckled nanotubes collapsed and increased in interconnected density and as a result increased the thin-film conductivity. Unlike conventional methods using mechanically expanded elastomers, we utilize chemically swollen elastomers as the expanded substrate to transfer the CNTN. As the chemical evaporates, it compresses the CNTN causing the thin-film to buckle. The CNTN compression can be controlled by using organic solvents with differing elastomer absorption rates. Our method requires no mechanical instruments and shows in-plane multi-axial uniform strain for the entire substrate surface. Since the buckling was controlled chemically, the buckled CNTN can be produced reliably, furthering the possibility of its application as the active sensing material for highly sensitive tactile pressure sensors.

Entities:  

Year:  2019        PMID: 30913552     DOI: 10.1088/1361-6528/ab1363

Source DB:  PubMed          Journal:  Nanotechnology        ISSN: 0957-4484            Impact factor:   3.874


  1 in total

1.  Microscopic Deformation Modes and Impact of Network Anisotropy on the Mechanical and Electrical Performance of Five-fold Twinned Silver Nanowire Electrodes.

Authors:  Nadine J Schrenker; Zhuocheng Xie; Peter Schweizer; Marco Moninger; Felix Werner; Nicolas Karpstein; Mirza Mačković; George D Spyropoulos; Manuela Göbelt; Silke Christiansen; Christoph J Brabec; Erik Bitzek; Erdmann Spiecker
Journal:  ACS Nano       Date:  2020-11-24       Impact factor: 15.881

  1 in total

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