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Enhanced low-gap thermophotovoltaic cell efficiency for a wide temperature range based on a selective meta-material emitter

机译:基于选择性超材料发射器,可在宽温度范围内提高低间隙热光电电池效率

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摘要

The concept of thermophotovoltaic system, based on a compact selective meta-material film structure acting as a selector thermal blackbody radiation emitter, is presented. The meta-material (MTM) film exhibits broad-band thermal radiation absorption with selective narrow-band thermal infrared emission, and can thus be efficiently coupled to a tandem (InAs/GaInAsSb) thermophotovoltaic (TPV) cell, which has based on the experimentally sub-cells data. The TPV tandem cell combined with the selective emitter achieves highest TPV conversion efficiency of 41% for black body radiation temperature (T-BB) = 1500 degrees C, and lowest TPV conversion efficiency of 11.82% for T-BB = 300 degrees C. The TPV combined system thus operates in wide temperature range of 300 degrees C to 1500 degrees C, and the combined system shows higher performance when the MTM film is included. It also shows much higher performance than literature values reported for GaSb/GaInAsSb tandem thermophotovoltaic cells having no MTM film.
机译:提出了基于紧凑的选择性超材料薄膜结构作为选择器黑体辐射发射器的热光电系统的概念。超材料(MTM)膜具有宽带热辐射吸收和选择性窄带热红外发射的特性,因此可以有效地耦合至串联(InAs / GaInAsSb)热光电(TPV)电池,该电池基于实验子单元格数据。 TPV串联电池与选择性发射极结合使用时,黑体辐射温度(T-BB)= 1500摄氏度时的最高TPV转换效率为41%,而T-BB = 300摄氏度时的最低TPV转换效率为11.82%。因此,TPV组合系统可在300摄氏度至1500摄氏度的宽温度范围内运行,并且当包含MTM膜时,该组合系统表现出更高的性能。与没有MTM膜的GaSb / GaInAsSb串联热光电电池所报道的文献值相比,它的性能也高得多。

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