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首页> 外文期刊>Physica status solidi >Enhanced Wide-Angle Energy Conversion Using Structure-Tunable Waveguide Arrays as Encapsulation Materials for Silicon Solar Cells
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Enhanced Wide-Angle Energy Conversion Using Structure-Tunable Waveguide Arrays as Encapsulation Materials for Silicon Solar Cells

机译:使用结构可调波导阵列作为硅太阳能电池的封装材料来增强广角能量转换

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摘要

The authors report on the enhancement in optical energy conversion in silicon solar cells encapsulated with a polymer film comprising of waveguide array structures. The structures are fabricated through light-induced self-writing with periodic arrangements of optical beams transmitted through a binary component photopolymer, wherein a periodic core-cladding architecture is produced. The size, spacing, and arrangement of the cores are varied through the size and arrangement of the optical beams via photomask design. A range of waveguide array structures are produced using different masks and component weight fractions. External quantum efficiency (EQE) measurements reveal structures that provide the greatest enhancement for normal and non-normal incidence irradiation, the latter for which reveals wide-angle light capture and conversion. Encapsulated solar cells yield an approximate 10% enhancement in EQE and a 20% increase in the short circuit current, up to an incident angle of 40 degrees, as compared to uniform encapsulants. The experimental results are corroborated by beam propagation simulations that show the spatial confinement of transmitted optical energy is the main effect that increases conversion efficiency. Principles that establish a structure-property-performance relationship are discussed, toward rational materials processing to increase energy conversion.
机译:作者报告了用包含波导阵列结构的聚合物膜封装的硅太阳能电池中光能转换的增强。该结构是通过光诱导的自写来制造的,该光具有通过二元组分光敏聚合物传输的光束的周期性排列,其中产生了周期性的芯包层结构。经由光掩模设计,通过光束的尺寸和布置来改变芯的尺寸,间隔和布置。使用不同的掩模和组件重量分数可以生产一系列波导阵列结构。外部量子效率(EQE)测量揭示了可为法向和非法向入射辐射提供最大增强的结构,后者可显示广角光捕获和转换。与均匀的密封剂相比,密封的太阳能电池的EQE大约提高10%,短路电流增加20%,入射角最大为40度。光束传播模拟证实了实验结果,表明传输光能的空间限制是提高转换效率的主要作用。讨论了建立结构-性能-性能关系的原理,旨在进行合理的材料加工以增加能量转换。

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