Adhesion of antireflective coatings in multijunction photovoltaics

Ryan E. Brock, David C. Miller, R. Dauskardt
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Abstract

The development of a new composite dual cantilever beam (cDCB) thin-film adhesion testing method is reported, which allows the measurement of adhesion on the fragile thin substrates used in multijunction photovoltaics. We address the adhesion of several antireflective coating systems on multijunction cells. By varying interface chemistry and morphology, we demonstrate the ensuing effects on adhesion and help to develop an understanding of how high adhesion can be achieved, as adhesion values ranging from 0.5 J/m2 to 8 J/m2 were measured. Damp Heat (85 °C/85% RH) was used to invoke degradation of interfacial adhesion. We show that even with germanium substrates that fracture easily, quantitative measurements of adhesion can still 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.
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多结光伏电池中抗反射涂层的粘附性
本文报道了一种新的复合双悬臂梁(cDCB)薄膜附着力测试方法的发展,该方法可以测量用于多结光伏电池的脆性薄衬底上的附着力。我们讨论了几种抗反射涂层系统在多结电池上的粘附性。通过改变界面化学和形态,我们展示了对附着力的后续影响,并帮助理解如何实现高附着力,因为测量了0.5 J/m2到8 J/m2的附着力值。使用湿热(85°C/85% RH)引起界面粘附的降解。我们表明,即使是容易断裂的锗衬底,仍然可以在高测试良率下进行附着力的定量测量。cDCB测试作为一种重要的新方法进行了讨论,它可以广泛应用于任何使用薄、脆或其他易碎基材的系统。
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