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Effect of various encapsulants for frameless glass to glass Cu(In,Ga)(Se,S)(2) photovoltaic module

机译:无框架玻璃对玻璃Cu(In,Ga)(Se,S)(2)光伏模块的影响

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摘要

Cu(In, Ga)(Se, S)(2) (CIGSS) modules with a frameless glass to glass (G2G) structure were successfully fabricated by replacing the currently used ethylene vinyl acetate (EVA) with new encapsulants such as polyolefins (POE), ionomer (IO) and liquid silicon (LSI), and their characteristics including optical, mechanical, and reliability properties were investigated. Most of the solid films for encapsulation except POE exhibit similar light transmittance in the visible-infrared wavelength range, while LSI shows the highest light transmittance with a difference of more than 2% in the overall wavelength range. The G2G structure encapsulated with IO exhibits superior values for the adhesion strength at which interface failure occurs (about 7.5 MPa) compared to other encapsulants. Water vapor transmittance ratio (WVTR) values of the encapsulants were evaluated to determine their suitability as water-resistant materials in terms of the CIGSS G2G structure. The IO encapsulant had the lowest WVTR value of about 1.75 g per m(2) per day. Changes of cell-to-module (CTM) conversion ratio in the CIGSS G2G structure using various encapsulants were investigated using I-V measurements. The CIGSS G2G structure encapsulated by LSI shows the best CTM conversion ratio, since the module process occurs at the lowest temperature as compared with other encapsulants, therefore the module has a smaller thermal transient effect. Finally, the long-term reliability of the CIGSS modules based on various encapsulants was also evaluated by damp heat testing.
机译:通过用新的包封剂如聚烯烃(POE)通过用新的包封剂(POE)通过替换目前使用的乙烯乙烯基乙酸(EVA)来成功制造具有无框架玻璃(G2G)结构的框架玻璃(G2G)结构的Cu(In,Ga)(2)(CIGS)模块。 ),研究了离子聚物(IO)和液体硅(LSI),以及它们的特性包括光学,机械和可靠性特性。除PoE之外,大多数用于封装的固体膜在可见红外波长范围内表现出类似的透光率,而LSI则显示最高的透光率,在整体波长范围内具有大于2%的差异。用IO包封的G2G结构表现出优异的值,用于与其他密封剂相比发生界面故障的粘合强度(约7.5MPa)。评价包封剂的水蒸气透射率比(WVTR)值以根据CIGSS G2G结构确定它们作为防水材料的适用性。 IO密封剂每天具有约1.75克的最低WVTR值,每天约1.75克。使用I-V测量研究了使用各种密封剂的CIGSS G2G结构中细胞对模块(CTM)转化率的变化。由LSI封装的CIGSS G2G结构显示了最佳的CTM转换比,因为与其他密封剂相比,模块过程发生在最低温度下,因此该模块具有较小的热瞬态效果。最后,还通过潮湿的热试验评估了基于各种密封剂的CIGSS模块的长期可靠性。

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  • 来源
    《RSC Advances》 |2015年第63期|共5页
  • 作者单位

    Samsung SDI Co Ltd Photovolta Dev Team Cheonansi South Korea;

    Samsung SDI Co Ltd Photovolta Dev Team Cheonansi South Korea;

    Samsung SDI Co Ltd Photovolta Dev Team Cheonansi South Korea;

    Samsung SDI Co Ltd Photovolta Dev Team Cheonansi South Korea;

    Samsung SDI Co Ltd Photovolta Dev Team Cheonansi South Korea;

    Pusan Natl Univ Dept Polymer Sci &

    Engn Busan 609735 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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