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Integration of Light Trapping Silver Nanostructures in Hydrogenated Microcrystalline Silicon Solar Cells by Transfer Printing

机译:通过转移印刷技术在氢化微晶硅太阳能电池中集成光阱银纳米结构

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摘要

One of the potential applications of metal nanostructures is light trapping in solar cells, where unique optical properties of nanosized metals, commonly known as plasmonic effects, play an important role. Research in this field has, however, been impeded owing to the difficulty of fabricating devices containing the desired functional metal nanostructures. In order to provide a viable strategy to this issue, we herein show a transfer printing-based approach that allows the quick and low-cost integration of designed metal nanostructures with a variety of device architectures, including solar cells. Nanopillar poly(dimethylsiloxane) (PDMS) stamps were fabricated from a commercially available nanohole plastic film as a master mold. On this nanopatterned PDMS stamps, Ag films were deposited, which were then transfer-printed onto block copolymer (binding layer)-coated hydrogenated microcrystalline Si (µc-Si:H) surface to afford ordered Ag nanodisk structures. It was confirmed that the resulting Ag nanodisk-incorporated µc-Si:H solar cells show higher performances compared to a cell without the transfer-printed Ag nanodisks, thanks to plasmonic light trapping effect derived from the Ag nanodisks. Because of the simplicity and versatility, further device application would also be feasible thorough this approach.
机译:金属纳米结构的潜在应用之一是太阳能电池中的光捕获,其中纳米金属的独特光学特性(通常称为等离子体效应)起着重要作用。然而,由于难以制造包含所需功能金属纳米结构的装置而阻碍了该领域的研究。为了对此问题提供可行的策略,我们在此展示了一种基于转移印刷的方法,该方法允许将设计的金属纳米结构与包括太阳能电池在内的各种设备架构进行快速且低成本的集成。纳米柱状聚(二甲基硅氧烷)(PDMS)压模由市售的纳米孔塑料膜作为母模制成。在此具有纳米图案的PDMS压模上,沉积Ag膜,然后将其转移印刷到嵌段共聚物(粘合层)涂层的氢化微晶Si(µc-Si:H)表面上,以提供有序的Ag纳米盘结构。可以证实,由于不具有转移印刷的Ag纳米盘,因此所形成的掺有Ag纳米盘的µc-Si:H太阳能电池与无转移打印的Ag纳米盘相比,具有更高的性能,这归因于源自Ag纳米盘的等离子光捕获效应。由于其简单性和多功能性,通过该方法进一步应用设备也是可行的。

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