钙钛矿基太阳能电池良好封装的提示和技巧

IF 8 2区 材料科学 Q1 ENERGY & FUELS
Quiterie Emery, Lea Dagault, Mark Khenkin, Nikoleta Kyranaki, Wander Max Bernardes de Araújo, Ulas Erdil, Matthias Demuylder, Stephane Cros, Rutger Schlatmann, Bernd Stannowski, Carolin Ulbrich
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引用次数: 0

摘要

封装是确保钙钛矿光伏成功实施的关键问题。最近,真空层压已被证明是一种很有前途的方法,它结合了传统光伏(PV)制造中当前工业工艺的兼容性和钙钛矿的适用性。在这里,我们探讨了一些有吸引力的封装材料的能力,防止水分进入,承受高温,并有适当的机械性能,以避免热机械问题。我们利用了之前提出的“钙钛矿测试”概念,这是一种简单样品制造的光学测试,用于评估封装质量,并通过完整的太阳能电池堆验证了研究结果。不出所料,没有边缘密封胶的密封剂显示出对水分的保护不足。离聚体与丁基封边的组合封边性能最好;然而,在热循环测试中,这种堆叠导致了电池层的快速分层。只有边缘密封胶的配置原则上没有这样的问题(没有施加机械应力),但就光学设计而言,堆叠中缺乏聚合物是不利的,有时会出现钙钛矿降解,我们将其归因于丁基本身的水分。聚烯烃加丁基封边胶并不是没有降解,但通过湿热测试显示出最有希望的折衷方案,并且在热循环实验中显示出较少的问题。总的来说,我们在这篇论文中提出的材料研究和优化表明,在选择钙钛矿器件的最佳封装方案时,需要一个整体的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Tips and Tricks for a Good Encapsulation for Perovskite-Based Solar Cells

Tips and Tricks for a Good Encapsulation for Perovskite-Based Solar Cells

Encapsulation is a critical topic to ensure the successful implementation of perovskite photovoltaics. Recently, vacuum lamination has been shown as a promising approach that combines compatibility with current industrial processes in conventional photovoltaic (PV) manufacturing and suitability to achieve good results with perovskites. Here, we explore some of the attractive encapsulation materials in terms of their ability to prevent moisture ingress, withstand elevated temperatures, and have suitable mechanical properties to avoid thermomechanical issues. We utilized the previously suggested concept of the “perovskite test,” an optical test with simple sample fabrication, for evaluating encapsulation quality and validated the findings with the full solar cell stack. Unsurprisingly, encapsulants without an edge sealant showed insufficient protection from moisture. Ionomer in combination with butyl edge seal showed the best barrier properties; however, this stack led to rapid delamination of the cell layers in thermal cycling tests. Configuration with only edge sealant does not have such an issue in principle (no mechanical stress applied), but an absence of the polymer in the stack is unfavorable in terms of optical design and sometimes showed perovskite degradation that we assign to trapped moisture in the butyl itself. Polyolefin with butyl edge sealant is not free of degradation but showed the most promising compromise by passing the damp heat test and showing fewer issues in the thermal cycling experiments. In general, our material study and optimization presented in this manuscript show that a holistic approach is needed when choosing an optimal encapsulation scheme for perovskite devices.

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来源期刊
Progress in Photovoltaics
Progress in Photovoltaics 工程技术-能源与燃料
CiteScore
18.10
自引率
7.50%
发文量
130
审稿时长
5.4 months
期刊介绍: Progress in Photovoltaics offers a prestigious forum for reporting advances in this rapidly developing technology, aiming to reach all interested professionals, researchers and energy policy-makers. The key criterion is that all papers submitted should report substantial “progress” in photovoltaics. Papers are encouraged that report substantial “progress” such as gains in independently certified solar cell efficiency, eligible for a new entry in the journal''s widely referenced Solar Cell Efficiency Tables. Examples of papers that will not be considered for publication are those that report development in materials without relation to data on cell performance, routine analysis, characterisation or modelling of cells or processing sequences, routine reports of system performance, improvements in electronic hardware design, or country programs, although invited papers may occasionally be solicited in these areas to capture accumulated “progress”.
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