Evaluation of thermal radiation dependent performance of GaSb thermophotovoltaic cell based on an analytical absorption coefficient model


Autoria(s): Wang Y (Wang Y.); Chen NF (Chen N. F.); Zhang XW (Zhang X. W.); Huang TM (Huang T. M.); Yin ZG (Yin Z. G.); Wang YS (Wang Y. S.); Zhang H (Zhang H.)
Data(s)

2010

Resumo

Applying the model dielectric function method, we have expressed the absorption coefficient of GaSb analytically at room temperature relating to the contribution of various critical points of its electronic band structure. The calculated absorption spectrum shows good agreement with the reported experimental data obtained by spectral ellipsometry on nominally undoped sample. Based on this analytical absorption spectrum, we have qualitatively evaluated the response of active absorbing layer structure and its photoelectric conversion properties of GaSb thermophotovoltaic device on the perturbation of external thermal radiation induced by the varying radiator temperature or emissivity. Our calculation has demonstrated that desirable thickness to achieve the maximum conversion efficiency should be decreased with the increment of radiator temperature and the performance degradation brought by any structure deviation from its optimal one would be stronger meanwhile. For the popular radiator temperature, no more than 1500 K in a real solar thermophotovoltaic system, and typical doping profile in GaSb cell, a reasonable absorbing layer structure parameter should be controlled within 100-300 nm for the emitter while 3000-5000 nm for the base.

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国内

Identificador

http://ir.semi.ac.cn/handle/172111/13527

http://www.irgrid.ac.cn/handle/1471x/66264

Idioma(s)

英语

Fonte

Wang Y (Wang Y.), Chen NF (Chen N. F.), Zhang XW (Zhang X. W.), Huang TM (Huang T. M.), Yin ZG (Yin Z. G.), Wang YS (Wang Y. S.), Zhang H (Zhang H.).Evaluation of thermal radiation dependent performance of GaSb thermophotovoltaic cell based on an analytical absorption coefficient model.SOLAR ENERGY MATERIALS AND SOLAR CELLS,2010,94(10):1704-1710

Palavras-Chave #半导体材料 #Thermophotovoltaic #Gallium antimonide #Absorption coefficient
Tipo

期刊论文