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Hot Carrier solar cell absorbers: materials, mechanisms and nanostructures

机译:热载太阳能电池吸收器:材料,机理和纳米结构

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The hot carrier cell aims to extract the electrical energy from photo-generated carriers before they thermalize to the band edges. Hence it can potentially achieve a high current and a high voltage and hence very high efficiencies up to 65% under 1 sun and 86% under maximum concentration. To slow the rate of carrier thermalisation is very challenging, but modification of the phonon energies and the use of nanostructures are both promising ways to achieve some of the required slowing of carrier cooling. A number of materials and structures are being investigated with these properties and test structures are being fabricated. Initial measurements indicate slowed carrier cooling in Ⅲ-Ⅴs with large phonon band gaps and in multiple quantum wells. It is expected that soon proof of concept of hot carrier devices will pave the way for their development to fully functioning high efficiency solar cells.
机译:热载流子的目的是在光生载流子热化到能带边缘之前从光生载流子中提取电能。因此,它可以潜在地获得高电流和高电压,因此在1个阳光下可达65%,在最大浓度下可达86%的极高效率。减慢载流子热化速率非常具有挑战性,但是声子能量的改变和纳米结构的使用都是实现载流子冷却所需的一些减慢的有前途的方式。正在研究具有这些特性的多种材料和结构,并正在制造测试结构。最初的测量表明,在具有大声子带隙的Ⅲ-Ⅴs和多个量子阱中,载流子的冷却变慢了。可以预期的是,热载流子器件的概念验证很快将为它们向全功能高效太阳能电池的发展铺平道路。

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