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World record demonstration of > 30 thermophotovoltaic conversion efficiency

机译:世界纪录展示> 30%炎热球转换效率

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We have demonstrated world-record thermophotovoltaic (TPV) conversion efficiency in two materials systems operating at two different thermal emitter temperatures. A GaAs-based PV device under a 2330 °C thermal emitter produced an efficiency of (31 ± 2)%, and an In0.53Ga0.47As -based PV device under a 1300 °C thermal emitter produced an efficiency of (30 ± 2)%. The electrical output power densities of the cells were 2.45 W/cm2 and 0.658 W/cm2, respectively. Critical to these high efficiencies were the cells' high reflectance of photon energies below the absorber band gap. Unlike solar PV, for which sub-band gap (SBG) light is lost, a TPV cell can reflect SBG light back to the thermal emitter where it can be recycled. The demonstrations were made on a custom-built measurement platform in which a ~ 100 cm2 graphite thermal emitter was heated under vacuum. The TPV efficiencies were evaluated by comparing the measured electrical output power of the cell with the total power absorbed by the cell. The measured TPV efficiencies as a function of thermal emitter temperature were corroborated by our full system modeling. As far as the authors are aware, these are the highest TPV conversion efficiencies ever measured, and device improvements should yield > 40% efficiency in the near future.
机译:我们已经在两种不同的热发射极温度下运行的两种材料系统中展示了世界纪录的蒸发器(TPV)转换效率。在2330°C热发射器下的基于GAAS的PV器件产生了(31±2)%的效率,以及 0.53 GA. 0.47 在1300°C的PV器件下,热发射器下的PV器件产生了(30±2)%的效率。电池的电输出功率密度为2.45w / cm 2 和0.658 w / cm 2 , 分别。对这些高效率至关重要的是细胞的光子能量低于吸收带隙的光子能量的高反射率。不像太阳能光伏,对哪个子带隙(SBG)的光被丢失时,TPV细胞可以反映SBG光返回到热发射体,其中它可以被回收。在定制的测量平台上进行了演示,其中A〜100厘米 2 石墨热发射器在真空下加热。通过将电池的测量电输出功率与细胞吸收的总功率进行比较来评估TPV效率。通过我们的全系统建模,测得的TPV效率作为热发射极温度的函数。就作者意识到,这些是有史以来最高的TPV转换效率,并且设备改善应在不久的将来产生> 40%的效率。

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