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Facile fabrication of highly conductive tracks using long silver nanowires and graphene composite.


ABSTRACT: Flexible long silver nanowires and graphene (AgNW-G) hybrid tracks with ultra-low resistivity were prepared by a low-temperature sintering process. The long AgNWs connect the graphene flakes in a plane and establish bridges between graphene layers by building a 3D conductive network, and finally induce a resistivity of 8.6 mΩ cm with a concentration of AgNWs of 20 wt% and sintering at 150 °C. The AgNW-G tracks show superior reliability even after 100 bending cycles. The use of AgNW-G tracks in flexible circuits indicates their possible applications in flexible electronics.

SUBMITTER: Ding S 

PROVIDER: S-EPMC9080566 | biostudies-literature | 2018 May

REPOSITORIES: biostudies-literature

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Facile fabrication of highly conductive tracks using long silver nanowires and graphene composite.

Ding Su S   Zhang Luxi L   Su Weitao W   Huang Xiwei X  

RSC advances 20180515 32


Flexible long silver nanowires and graphene (AgNW-G) hybrid tracks with ultra-low resistivity were prepared by a low-temperature sintering process. The long AgNWs connect the graphene flakes in a plane and establish bridges between graphene layers by building a 3D conductive network, and finally induce a resistivity of 8.6 mΩ cm with a concentration of AgNWs of 20 wt% and sintering at 150 °C. The AgNW-G tracks show superior reliability even after 100 bending cycles. The use of AgNW-G tracks in f  ...[more]

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