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Synthesis of Ag-Ni core-shell nanowires and their application in anisotropic transparent conductive films
Journal article   Peer reviewed

Synthesis of Ag-Ni core-shell nanowires and their application in anisotropic transparent conductive films

Bo-Tau Liu, Shao-Xian Huang, Mei-Feng Lai and Zung-Hang Wei
RSC Advances, Vol.5(3), pp.1684-1689
2015

Abstract

We report a modified two-step method for the synthesis of highly dispersed and conductive Ag-Ni core-shell nanowires. The conductivity of the nanowire networks was improved by thermal treatment under various atmospheres. H 2 -thermal treatment shows superior enhancement on electrical conductivity and reduces the sheet resistance by nearly seven orders of magnitude relative to that of the pristine networks. X-Ray photoelectron spectroscopic analysis reveals that the metallic Ni 0 fraction on the surface is more important to the electrical conductivity than the amount of Ni on the surface. The transparent conductive films of Ag-Ni nanowires have a sheet resistance of 220 Ω sq -1 at a transmittance of 75%, much better than those made from the pure Ni nanowires. The Ag-Ni nanowires were aligned easily by applying an external magnetic field; the anisotropic conductivity ratio for the corresponding transparent conductive films can be larger than 10 5 . The good performance may be attributed to the fact that the as-prepared nanowires possess moderate saturation magnetization and low coercivity, alleviating the aggregation of nanowires and favoring the nanowire alignment. This journal is

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