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THERMOPHOTOVOLTAIC CELLS WITH INTEGRATED AIR-BRIDGE FOR IMPROVED EFFICIENCY

机译:具有集成空气桥的蒸汽电池,效率提高

摘要

To reach high efficiencies, thermophotovoltaic cells must utilize the broad spectrum of a radiative thermal source. One promising approach to overcome this challenge is to have low-energy photons reflected and reabsorbed by the thermal emitter, where their energy can have another chance at contributing toward photogeneration in the cell. However, current methods for photon recuperation are limited by insufficient bandwidth or parasitic absorption, resulting in large efficiency losses relative to theoretical limits. This work demonstrates nearly perfect reflection of low-energy photons (˜99%) by embedding an air layer within the TPV cell. This result represents a four-fold reduction in parasitic absorption relative to existing TPV cells. As out-of-band reflectance approaches unity, TPV efficiency becomes nearly insensitive to cell bandgap and emitter temperature. Accessing this regime unlocks a range of possible materials and heat sources that were previously inaccessible to TPV energy conversion.
机译:为了达到高效率,蒸发电池必须利用辐射热源的广谱。一种克服这一挑战的一个有希望的方法是通过热发射器反射并重新吸收低能量的光子,其能量可以在细胞中有助于朝光的射击贡献。然而,目前的光子回收方法受带宽或寄生吸收不足的限制,导致相对于理论限制的效率损失。这项工作通过将空气层嵌入TPV电池内的空气层来表明几乎完美的反射(~99%)。该结果表示相对于现有TPV细胞的寄生吸收降低四倍。由于带外反射率接近统一,TPV效率几乎对细胞带隙和发射极温度几乎不敏感。访问此制度解锁了先前无法访问TPV能量转换的可能材料和热源范围。

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