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Oxide nanowire networks and their electronic and optoelectronic characteristics

机译:氧化纳米线网络及其电子和光电特性

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摘要

Oxide nanowire networks or oxide nanonets leverage some of the exceptional functionalities of one-dimensional nanomaterials along with the fault tolerance and flexibility of interconnected nanowires to creating exciting opportunities in large-area electronics as well as green energy systems. This paper reviews the electronic and optoelectronic properties of these networks and highlights their potential applications in field-effect transistors, optoelectronic devices, and solar cells. Techniques to grow nanowires and their subsequent integration into networks using contact printing and electrospinning are described. Electrical properties of field-effect transistors fabricated from contact printed nanowire networks are discussed, and means of integration of the nanowire networks of heterogenous materials that enable ambipolar device operation are outlined. Photocurrent properties of these nanowires are described, including the dye sensitization of large-bandgap SnO2 nanowires. The final section deals with the advantages of employing nanowire networks in dye-sensitized solar cells and the dependence of solar cell performance on morphology and surface area.
机译:氧化纳米线网络或氧化纳米纳米人利用一维纳米材料的某些特殊功能以及相互连接的纳米线的容耐力和灵活性来在大区域电子设备以及绿色能源系统中创造令人兴奋的机会。本文回顾了这些网络的电子和光电特性,并突出了它们在现场效应晶体管,光电设备和太阳能电池中的潜在应用。描述了使用触点打印和静电纺丝的技术生长纳米线的技术及其后续集成到网络中。讨论了由触点打印的纳米线网络制造的现场效应晶体管的电性能,并概述了使Ambipolar设备操作的异质材料的纳米线网络集成的手段。描述了这些纳米线的光电流特性,包括大带SNO2纳米线的染料敏化。最后一部分涉及在染料敏化的太阳能电池中采用纳米线网络以及太阳能电池性能对形态和表面积的依赖。

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