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Strong enhancement of electrical conductivity in two-dimensional micrometer-sized RuO nanosheets for flexible transparent electrodes. | LitMetric

AI Article Synopsis

  • - The study focuses on improving the electrical properties of individual RuO nanosheets for use in flexible electronics and optoelectronics, highlighting how decorating them with silver nanoparticles (Ag NPs) significantly boosts their conductivity by up to 3700%.
  • - Hall measurements confirm the n-type doping effect of Ag on RuO nanosheets, revealing their layer and temperature-dependent conductivity, as well as their ambipolar transport characteristics when undoped.
  • - The research demonstrates the successful creation of Ag-doped RuO nanosheet films on polycarbonate substrates, achieving a one-third reduction in sheet resistance and excellent bending stability, with minimal resistance change over 50,000 cycles.

Article Abstract

The enhancement in electrical transport properties of exfoliated individual RuO NSs was systemically investigated for their application in flexible electronics and optoelectronics. Decoration of Ag NPs on the surface of the RuO NSs provides donor electrons and dramatically increases the electrical conductivity of the monolayer RuO NSs by up to 3700%. The n-type doping behavior was confirmed via Hall measurement analysis of the doped RuO NSs. The layer number- and temperature-dependence of the conductivity were also investigated. Moreover, carrier concentration and mobility were obtained from Hall measurements, indicating that the undoped RuO NSs had ambipolar transport and semi-metallic characteristics. Moreover, the Ag-doped RuO NS multilayer films on polycarbonate substrates were demonstrated by the Langmuir-Blodgett assembly methods, showing one-third reduction in the sheet resistance and extraordinarily high bending stability that the change in the resistance was less than 1% over 50 000 cycles.

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Source
http://dx.doi.org/10.1039/c6nr09894kDOI Listing

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