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Quantitative adhesion characterization of antireflective coatings in multijunction photovoltaics

机译:多结光伏电池中抗反射涂层的定量粘合特性

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摘要

We discuss the development of a new composite dual cantilever beam (cDCB) thin-film adhesion testing method, which enables the quantitative measurement of adhesion on the thin and fragile substrates used in multijunction photovoltaics. In particular, we address the adhesion of several 2- and 3-layer antireflective coating systems on multijunction cells. By varying interface chemistry and morphology through processing, we demonstrate the marked effects on adhesion and help to develop an understanding of how high adhesion can be achieved, as adhesion values ranging from 0.5 J/m(2) to 10 J/m(2) were measured. Damp heat (85 degrees C/85% RH) was used to invoke degradation of interfacial adhesion. We demonstrate that even with germanium substrates that fracture relatively easily, quantitative measurements of adhesion can be made at high test yield. The cDCB test is discussed as an important new methodology, which can be broadly applied to any system that makes use of thin, brittle, or otherwise fragile substrates. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们讨论了新的复合双悬臂梁(cDCB)薄膜附着力测试方法的开发,该方法能够定量测量在多结光伏电池中使用的薄而易碎的基板上的附着力。特别地,我们解决了多结电池上几种2层和3层抗反射涂层系统的粘附问题。通过改变加工过程中的界面化学和形态,我们证明了对附着力的显着影响,并有助于加深对可以实现多高附着力的理解,因为附着力值介于0.5 J / m(2)至10 J / m(2)被测量。湿热(85℃/ 85%RH)用于引起界面粘合的降解。我们证明,即使锗基板相对容易断裂,也可以以高测试合格率对粘合力进行定量测量。讨论cDCB测试是一种重要的新方法,可以广泛应用于使用薄,易碎或易碎基板的任何系统。 (C)2016 Elsevier B.V.保留所有权利。

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