4.5 Article

Super wear-resistant and conductive cotton fabrics based on sliver nanowires

期刊

JOURNAL OF INDUSTRIAL TEXTILES
卷 51, 期 5_SUPPL, 页码 8227S-8245S

出版社

SAGE PUBLICATIONS INC
DOI: 10.1177/1528083720982005

关键词

Electronic textiles; wear resistance; nano silver morphologies; cotton fabrics

资金

  1. Key Research Project of Shaanxi Province [2020GY-258]
  2. Shaanxi Provincial Education Department Serves Local Special Project [20JC006]
  3. Shaanxi Provincial Overseas Students Science and Technology Activities Merit Funding Project (Type of Outsdanding) [2019005]
  4. Shaanxi Provincial Special Supporting Plan for High-level Talents Youth Top Talents Project

向作者/读者索取更多资源

Adsorbing linear nano-silver structures on cotton fabrics can enhance the conductivity and wear resistance of textile electrodes, with a more significant effect when the ratio of nano-silver length to diameter increases.
To investigate the effect of linear, rod and granular nano-silver structures on the electrical conductivity and wear resistance of cotton fabrics, silver nanowires (AgNWs), silver nano-rods (AgNRs) and silver nanoparticles (AgNPs) were separately obtained by solvothermal method, and then adsorbed on the cotton fabrics. Compared with AgNRs and AgNPs that silver nanowires could form network structure on the cotton fabrics. As the ratio of nano-sliver length to diameter increases, the effective adsorption mass of nano-sliver on the cotton increases, improving the conductivity of the textile electrode. No matter how many times of rubbing, it had no effect on the square resistance of the AgNWs/cotton. The cotton fabrics treated with silver nanowires had the best performances and wear resistance.

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