Spray-combustion synthesis: efficient solution route to high-performance oxide transistors.

نویسندگان

  • Xinge Yu
  • Jeremy Smith
  • Nanjia Zhou
  • Li Zeng
  • Peijun Guo
  • Yu Xia
  • Ana Alvarez
  • Stefano Aghion
  • Hui Lin
  • Junsheng Yu
  • Robert P H Chang
  • Michael J Bedzyk
  • Rafael Ferragut
  • Tobin J Marks
  • Antonio Facchetti
چکیده

Metal-oxide (MO) semiconductors have emerged as enabling materials for next generation thin-film electronics owing to their high carrier mobilities, even in the amorphous state, large-area uniformity, low cost, and optical transparency, which are applicable to flat-panel displays, flexible circuitry, and photovoltaic cells. Impressive progress in solution-processed MO electronics has been achieved using methodologies such as sol gel, deep-UV irradiation, preformed nanostructures, and combustion synthesis. Nevertheless, because of incomplete lattice condensation and film densification, high-quality solution-processed MO films having technologically relevant thicknesses achievable in a single step have yet to be shown. Here, we report a low-temperature, thickness-controlled coating process to create high-performance, solution-processed MO electronics: spray-combustion synthesis (SCS). We also report for the first time, to our knowledge, indium-gallium-zinc-oxide (IGZO) transistors having densification, nanoporosity, electron mobility, trap densities, bias stability, and film transport approaching those of sputtered films and compatible with conventional fabrication (FAB) operations.

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عنوان ژورنال:
  • Proceedings of the National Academy of Sciences of the United States of America

دوره 112 11  شماره 

صفحات  -

تاریخ انتشار 2015