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Plasmon enhanced up-conversion nanoparticles in perovskite solar cells for effective utilization of near infrared light

机译:等离子体增强的上转换纳米粒子钙钛矿为有效利用太阳能电池近红外的光

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As an alternative to silicon-based solar cells, organic-inorganic hybrid perovskite solar cells (PSCs) have attracted much attention and achieved a comparable power conversion efficiency (PCE) to silicon-based ones, although the perovskite materials can absorb only visible light. Hence, the challenge remains to enhance the PCE utilizing near infrared (NIR) light in the solar light spectrum. One of the easiest ways to utilize the NIR is to incorporate NIR active materials in PSCs such as up-conversion nanoparticles (UCNPs); however, such a stratergy is not simple to adopt in PSCs due to the inherent vurnerability of perovskite materials towards moisture. In this work, we present NIR-utilizing PSCs by locating UCNPs within the PSC structure by a simple dry transfer method. A maximum PCE of 15.56% was obtained in the case of PSC having the UCNPs located between the hole transport layer (HTL) and gold (Au) top electrode, which is an 8.4% enhancement compared to the cell without the UCNPs. This enhancement came from the combined effects of NIR light utilization and the surface plasmon resonance (SPR) phenomenon originating from the Au top electrode, which was interfacing the UCNPs.
机译:作为一个替代硅基太阳能电池,有机-无机杂化钙钛矿太阳能电池已经吸引了太多的关注,取得了同等功率转换效率(PCE)硅的,尽管钙钛矿材料只能吸收可见光。提高PCE,仍然是一个挑战利用近红外(NIR)太阳能的光光谱。利用近红外光谱结合近红外光谱活跃材料已经被如上变频纳米颗粒(UCNPs);不是简单的采用已经由于钙钛矿材料的固有vurnerability对水分。内定位UCNPs NIR-utilizing已经PSC结构通过一个简单的干传输方法。最大的PCE的情况下获得了15.56%PSC UCNPs位于之间的孔传输层(HTL)和黄金(Au)电极,相比提高了8.4%对细胞没有UCNPs。来自近红外光谱的光利用表面等离子体共振来自非盟(SPR)现象电极,连接UCNPs。

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