Literature DB >> 26911662

Characterisation of graphene fibres and graphene coated fibres using capacitively coupled contactless conductivity detector.

Joan M Cabot1, Emer Duffy2, Sinéad Currivan2, Andres Ruland3, Rouhollah Jalili3, Attila J Mozer3, Peter C Innis3, Gordon G Wallace3, Michael Breadmore1, Brett Paull1.   

Abstract

The use of capacitively coupled contactless conductivity detection (C(4)D) for the characterisation of thin conductive graphene fibres, graphene composite fibres, and graphene coated fibrous materials is demonstrated for the first time. Within a few seconds, the non-destructive C(4)D detector provides a profile of the longetudinal physical homogeneity of the fibre, as well as extra information regarding fibre mophology and composition. In addition to the theoretical considerations related to the factors affect the output signal, this work evaluates the properties of graphene fibres using scanning C(4)D following the manufacturing process of wet-spinning. Furthermore, conductive graphene-coated fibrous materials and the effectiveness of the coating and reduction procedures applied could be investigated. Apart from the application of C(4)D in the monitoring of such processes, the feasibility of this small, highly sensitive and rapidly-responsive detector to monitor strain and elasticity responses of conductive and elastomeric composite fibres for applications in motion sensing, biomedical monitoring, and stretchable electronics was also demonstrated.

Entities:  

Year:  2016        PMID: 26911662     DOI: 10.1039/c5an02534f

Source DB:  PubMed          Journal:  Analyst        ISSN: 0003-2654            Impact factor:   4.616


  1 in total

1.  Confinement of Monolithic Stationary Phases in Targeted Regions of 3D-Printed Titanium Devices Using Thermal Polymerization.

Authors:  Marta Passamonti; Ischa L Bremer; Suhas H Nawada; Sinéad A Currivan; Andrea F G Gargano; Peter J Schoenmakers
Journal:  Anal Chem       Date:  2020-01-13       Impact factor: 6.986

  1 in total

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