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Tribo-corrosion of Ag and Ag-alloy ITO multilayers used in solar energy applications

机译:Tribo-corrosion Ag)和Ag-alloy ITO多层膜用于太阳能的应用程序

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摘要

The efficiency and long term reliability of multilayered films of Ag/Ag-alloy based indium tin oxide (ITO) used in solar energy applications depend on the surface integrity of the film. Surface integrity can be breached due to exposure to a harsh outdoor environment and mishandling. It is therefore important to study the tribo-corrosion properties of such film systems. Reciprocating polytetrafluoroethylene (PTFE) ball-on-film tests are conducted in a NaCl solution under moderate loading conditions and increasing number of cycles. Ag, Ag-Pd and Ag-Au alloy based ITO multilayers, deposited on a polymer substrate, are used and the tribo-corrosion resistance is investigated. Electrochemical impedance spectroscopy and X-ray photoelectron spectroscopy are used, after testing, in order to characterize and determine the corrosion and wear mechanisms. The effect of the reciprocating cycles on the multilayer failure initiation and propagation is studied. The resulting tribo-corrosion mechanisms are observed using scanning electron and optical microscopy. Understanding the tribo-corrosion properties of such model multilayers can lead to increasing the efficiency and long term reliability of various solar energy and energy-efficient systems.
机译:的效率和长期可靠性基于多层膜的Ag / Ag-alloy铟氧化锡(ITO)用于太阳能的应用程序取决于电影的表面完整性。由于接触表面完整性可以突破恶劣的户外环境,处理不当。因此重要的研究tribo-corrosion此类电影系统的属性。往复式聚四氟乙烯(PTFE)在氯化钠ball-on-film进行测试在温和的加载条件和解决方案越来越多的周期。基于合金ITO多层膜,沉积在一个聚合物基质和使用tribo-corrosion抵抗了。电化学阻抗谱和x射线光电子能谱,之后测试中,为了描述和确定腐蚀和磨损机制。在多层往复周期失败引发和传播进行了研究。结果tribo-corrosion机制观察使用扫描电子和光学显微镜。这样的模型多层膜可以导致的性质增加效率和长期各种太阳能和可靠性节能系统。

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