论文标题

近场嗜热伏洛伏型能量转换与薄膜串联细胞

Near-Field Thermophotovoltaic Energy Conversion with Thin-film Tandem Cells

论文作者

Sabbaghi, Payam, Ni, Qing, Wang, Liping

论文摘要

理论上研究了由薄膜p掺杂的气体和n掺杂的Inas子细胞组成的近场热伏型系统的性能。 GA掺杂的ZnO发射极和串联细胞的温度设置为1800 K和300 K,而GASB和INAS子细胞的厚度分别为1.5UM和0.5UM。波动电动力学以及多层二元格林的功能用于研究近场辐射传热,考虑光子化学电位,而辐射重组和非辐射螺旋螺旋体重组则考虑在评估串联细胞的电性能时。在50 nm的真空差距下,发现具有独立电荷收集的串联电池以41%的转换效率达到468.8 kW/m2的功率468.8 kW/m2,相对较高的87%(或21%)的功率比单个燃气(或INAS)更高(或INAS)高度(或同一2-um厚度)高约5%(或10%)。用能量传输系数阐明了近场光谱传热的物理机制,而详细讨论了子细胞的电流特性。这项工作将为增强与串联或多开关单元的近场嗜热能量转换性能铺平道路。

The performance of a near-field thermophotovoltaic system with a tandem-cell structure composed of thin-film p-doped GaSb and n-doped InAs sub-cells on a gold backside reflector is theoretically investigated. The temperatures of the Ga-doped ZnO emitter and the tandem cells are set as 1800 K and 300 K, while the thicknesses of GaSb and InAs sub-cells are considered as 1.5um and 0.5um, respectively. Fluctuational electrodynamics along with the multilayer dyadic Green's function is used to study near-field radiative heat transfer with the consideration of photon chemical potential, whereas radiative recombination and nonradiative Auger recombination are taken into account for evaluating the electrical performance of the tandem cells. At a vacuum gap of 50 nm, it is found that the tandem cells with independent charge collections achieve electrical power output 468.8 kW/m2 at a conversion efficiency of 41%, generating relatively 87% (or 21%) more power with about absolute 5% (or 10%) higher efficiency than the single GaSb (or InAs) cell of the same 2-um thickness. The physical mechanism of near-field spectral heat transfer is elucidated with energy transmission coefficient, while the current-voltage characteristics of sub-cells are discussed in detail. This work will pave the way to enhance near-field thermophotovoltaic energy conversion performance with tandem or multi-junction cells.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源