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Temperature effects on an InGaP (GaInP) 55Fe X-ray photovoltaic cell

机译:温度对InGaP(GaInP)55Fe X射线光伏电池的影响

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摘要

This paper investigates the effects of temperature on an InGaP (GaInP) 55Fe X-ray photovoltaic cell prototype for a radioisotope microbattery (also called a nuclear microbattery). An In0.5Ga0.5P p-i-n (5 μm i-layer) mesa photodiode was illuminated by a standard 206 MBq 55Fe radioisotope X-ray source and characterised over the temperature range −20 °C to 100 °C. The electrical power output of the device reached its maximum value of 1.5 pW at a temperature of −20 °C. An open circuit voltage and a short circuit current of 0.82 V and 2.5 pA, respectively, were obtained at −20 °C. While the electrical power output and the open circuit voltage decreased with increasing temperature, an almost flat trend was found for the short circuit current. The cell conversion efficiency decreased from 2.1% at −20 °C to 0.7% at 100 °C.
机译:本文研究了温度对放射性同位素微电池(也称为核微电池)的InGaP(GaInP) 55 Fe X射线光伏电池原型的影响。用标准206 MBq 55 Fe放射性同位素X射线源照射In0.5Ga0.5P引脚(5微米i层)台面光电二极管,并在-20 C至100°的温度范围内进行表征C。在-20°C的温度下,该设备的电功率输出达到1.5µpW的最大值。在-20 C下获得的开路电压和短路电流分别为0.82 V和2.5 pA。尽管电功率输出和开路电压随温度升高而降低,但发现短路电流几乎趋于平坦。电池转换效率从-20°C下的2.1%降至100°C下的0.7%。

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