4.7 Article

Sol-gel preparation of Ag-silica nanocomposite with high electrical conductivity

Journal

APPLIED SURFACE SCIENCE
Volume 436, Issue -, Pages 732-738

Publisher

ELSEVIER
DOI: 10.1016/j.apsusc.2017.12.101

Keywords

Sol-gel; Silica; Ag nanoparticle; Electrical conductivity

Funding

  1. National Natural Science Foundation of China [51302087, 51375444]
  2. Pearl River S&T Nova Program of Guangzhou [201610010119]
  3. Xiangjiang Scholar [XJ2016051]

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Sol-gel derived noble-metal-silica nanocomposites are very useful in many applications. Due to relatively low price, higher conductivity, and higher chemical stability of silver (Ag) compared with copper (Cu), Ag-silica has gained much more research interest. However, it remains a significant challenge to realize high loading of Ag content in sol-gel Ag-silica composite with high structural controllability and nanoparticles' dispersity. Different from previous works by using multifunctional silicon alkoxide to anchor metal ions, here we report the synthesis of Ag-silica nanocomposite with high loading of Ag nanoparticles by employing acetonitrile bi-functionally as solvent and metal ions stabilizer. The electrical conductivity of the Ag-silica nanocomposite reached higher than 6800 S/cm. In addition, the Ag-silica nanocomposite could simultaneously possess high electrical conductivity and positive conductivity-temperature coefficient by properly controlling the loading content of Ag. Such behavior is potentially advantageous for high-temperature devices (like phosphoric acid fuel cells) and inhibiting the thermal-induced increase of devices' internal resistance. The strategy proposed here is also compatible with block-copolymer directed self-assembly of mesoporous material, spin-coating of film and electrospinning of nanofiber, making it more charming in various practical applications. (C) 2017 Elsevier B.V. All rights reserved.

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