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Engineering Performance in TCO Films for Energy Applications

机译:能源应用的TCO膜的工程性能

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Thin film materials that exhibit both good electrical conductivity and high transparency owe this duality to careful control of the chemical state of the constituents and the attendant structure. Through manipulation of deposition conditions n- or p-type semiconducting oxide films readily can be prepared. Such films enable the performance of energy conversion devices and promote development of architectural elements including smart energy efficient windows. This paper summarizes current TCO research trends, reviews processing approaches, and offers guidelines for engineering high performance TCO films. Also provided is a glimpse of optical engineering approaches where impedance matching and quantum mechanical tunneling offer alternative avenues to further improvement of film properties.
机译:薄膜材料既具有良好的导电性又具有高的透明度,这归因于对组分和伴随结构的化学状态的仔细控制。通过控制沉积条件,可以容易地制备n型或p型半导体氧化物膜。此类薄膜可实现能量转换设备的性能,并促进包括智能节能窗户在内的建筑元素的发展。本文总结了当前的TCO研究趋势,回顾了处理方法,并为工程高性能TCO膜提供了指导。还提供了光学工程方法的一瞥,其中阻抗匹配和量子机械隧穿为进一步改善薄膜性能提供了替代途径。

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