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Comparative Analysis, Simulation and Optimization of Current Density-Voltage Characteristics of CIGS and CZTS Thin Film Solar Cells

机译:CIGS和CZTS薄膜太阳能电池电流密度 - 电压特性的比较分析,仿真和优化

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This work focuses on the comparison, characterization and optimization of the current density (J) versus voltage (V) characteristics of CIGS and CZTS based thin film solar cells by using an analytical model. The model explains how the variation of parameters such as electron lifetime, hole lifetime and buffer layer material affect the J-V characteristic of CIGS and CZTS thin film solar cells. Simulation results show that the CIGS thin film solar cell gives more current density compared to CZTS thin film solar cell and ZnO material is more efficient than CdS material as a buffer layer for both CIGS and CZTS thin film solar cells. This method proposed in this research work would be very helpful to develop CIGS and CZTS based high efficiency thin film solar cells for the next generation optoelectronics applications.
机译:该工作侧重于使用分析模型的CIGS基于CIGS和CZTS的电流密度(j)与电压(v)特性的比较,表征和优化。该模型说明了如何如何影响诸如电子寿命,孔寿命和缓冲层材料的参数的变化影响CIGS和CZTS薄膜太阳能电池的J-V特性。仿真结果表明,与CZTS薄膜太阳能电池和ZnO材料相比,CIGS薄膜太阳能电池给出了更多电流密度,并且ZnO材料比CDS材料更有效,作为CIGS和CZTS薄膜太阳能电池的缓冲层。该研究工作中提出的该方法对于开发基于CIGS和CIGS的高效薄膜太阳能电池,对于下一代光电子应用,这是非常有帮助的。

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