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Thermophotovoltaic GaSb cells fabrication and characterisation

机译:散热热物气体细胞制造和表征

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For production of highly effective photoconverters semiconductor materials with strictly determined parameters. are required. For thermophotovoltaic (TPV) GaSb cells. homogeneous Te-doping level of (2-7)-10(17) cm(-3) in the bulk semiconductor is required to produce high efficient PV cells by the Zn diffusion process [1-3]. In this paper we present data on investigation of the performance of the cells obtained on different GaSb:Te wafers of (100) and (211) orientation. Based on classical I/V measurements and external quantum efficiency (EQE) curves, we analyze cell performances in order to improve all fabrication stages like wafer surface preparation, p-type GaSb emitter elaboration by the zinc diffusion process, antireflection coating deposition and contact realization. Today good performances are obtained on both 3.5 x 3.5 mm(2) (211) and 10x10 mm(2) (100) GaSb cells. We obtained EQE of 70-76 % in the 800-1600 nm range for the first one and 80-88% in the same spectrum for the second one. Electrical characterization gives respectively, the fill factor (FF) from 67.8% down to 65.8% in the 1-2 A/cm(2) range and 63 % at 5 A/cm(2). The open circuit voltage Voc increases from 0.44 V (1 A/cm(2)) up to 0.49 V (5 A/cm(2)) for the small area cell.
机译:用于生产高效的光电转换器具有严格确定的参数的半导体材料。是必要的。用于蒸发器(TPV)气体细胞。在批量半导体中均匀Te-掺杂水平(2-7)-10(17)cm(-3)的均需要通过Zn扩散过程产生高效的PV电池[1-3]。在本文中,我们提出了关于在不同气体上获得的细胞性能的研究数据:(100)和(211)取向的Te晶片。基于经典I / v测量和外部量子效率(EQE)曲线,我们分析细胞性能,以改善晶片表面制备等所有制造阶段,通过锌扩散过程,抗反射涂层沉积和接触实现的P型气体发射器阐述。今天在3.5×3.5mm(2)(2)(211)和10x10mm(2)(100)气体细胞上获得了良好的性能。在同一频谱中,我们在800-1600nm范围内获得了70-76%的EQE,为第二个和80-88%。电学表征分别给出,填充因子(FF)在1-2A / cm(2)范围内的67.8%下降至65.8%,在5A / cm(2)下63%。开路电压VOC从0.44 V(1A / cm(2))增加到小区域电池的0.49 V(5a / cm(2))。

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