4.7 Article

Fabrication of functionalized graphene filled carboxylated nitrile rubber nanocomposites as flexible dielectric materials

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MATERIALS CHEMISTRY FRONTIERS
卷 1, 期 4, 页码 780-788

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c6qm00025h

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  1. DRDO, India
  2. IIT Kharagpur

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Hexadecylamine (HDA) was used to covalently functionalize graphite oxide followed by its reduction to form functionalized graphene nanosheets (GNS-HDA). Subsequently, GNS-HDA has been used as filler in fabricating carboxylated nitrile rubber (XNBR) nanocomposites via solution mixing. Mechanical measurements of XNBR/GNS-HDA-2 nanocomposites compared to neat XNBR exhibited 60% improvement in tensile strength (TS), 62% improvement in elongation at break (EB) and 13% reduction in Young's modulus (YM). Thermogravimetric studies demonstrate that incorporation of GNS-HDA into a XNBR polymer matrix increases the thermal stability of composites with GNS-HDA loading. Further investigations show significant enhancement in the dielectric constant of XNBR/GNS-HDA-2 (127.6) compared to neat XNBR (8.9) at 100 Hz. The corresponding value of the dielectric loss of the composite was enhanced only similar to 2 times. Such enhanced TS, EB, reduced YM and dielectric constants while retaining low dielectric loss enables the possible application of XNBR/GNS-HDA as flexible dielectric materials in electronic devices.

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