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DESIGNER MATERIALS FOR SUSTAINABLE PHOTONIC APPLICATIONS

机译:可持续光子学应用程序的设计材料

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摘要

Large area transparent electronic or photonic products have experienced decades of accelerating growth and the trend is expected to continue for the foreseeable future. On top of current major applications such as touch screens and flat-panel displays, the pressing need in developing low-cost thin-film PV cells provides another great driver to increase the demand even further. Unfortunately, current technologies are not based on sustainable materials resources and alternative solutions have to be developed. Here we discuss about the role of fundamental materials/device modelling on cost effective delivery of materials for a new generation of transparent electronic systems, covering sustainable ITO alternatives and band-engineered metal oxides for efficient harvest of solar energy. We show that low cost alternatives based on sustainable and environmentally friendly resources can be delivered cost effectively through a designer" approach combining fundamental modelling and novel thin film processing.
机译:大面积的透明电子或光子产品经历了数十年的加速增长,并且在可预见的未来,这种趋势有望继续。在当前的主要应用(如触摸屏和平板显示器)之上,开发低成本薄膜PV电池的迫切需求为进一步增加需求提供了另一个动力。不幸的是,当前的技术不是基于可持续的材料资源,必须开发替代解决方案。在这里,我们讨论了基本材料/设备建模在新一代透明电子系统的成本有效交付材料中的作用,涵盖了可持续的ITO替代品和能有效收集太阳能的能谱工程金属氧化物。我们表明,通过结合基础建模和新颖薄膜加工的设计人员方法,可以以具有成本效益的方式提供基于可持续发展和环境友好资源的低成本替代品。

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