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Critical aspects of impedance spectroscopy in silicon solar cell characterization: A review

机译:硅太阳能电池表征中阻抗谱的关键方面:综述

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Solar energy generation and utilization is dominated by silicon based solar photovoltaic technology, which has a market share of 80-90% of the solar photovoltaic industry worldwide. The performance indicating parameters of silicon solar cells include power conversion efficiency, series and shunt resistance, ideality factor and built-in potential. These parameters are mostly characterized by DC techniques, which is limited by its insufficiency to identify other important parameters such as interfacial diffusion and transition capacitance and resistive and capacitive components of p-p(+) interface of a silicon solar cell. Impedance spectroscopy is considered to be one of the Most promising techniques for the characterization of abovementioned performance limiting parameters of a solar cell. In order to address the decoupling of various physical processes associated with different interfaces of a solar cell, quantitative analysis of the impedance spectroscopic data is required. An appropriate mathematical model is frequently used to correlate with the physical performance limiting parameters. This review presents a complete overview of the required mathematical models to analyse impedance spectroscopic data for interfacial processes of silicon solar cell.
机译:太阳能的产生和利用由基于硅的太阳能光伏技术主导,该技术在全球太阳能光伏行业中占有80-90%的市场份额。硅太阳能电池的性能指示参数包括功率转换效率,串联电阻和分流电阻,理想因子和内置电势。这些参数主要由直流技术表征,直流技术受限于其不足以识别其他重要参数,例如硅太阳能电池的p-p(+)界面的界面扩散和过渡电容以及电阻性和电容性成分。阻抗谱被认为是表征太阳能电池的上述性能极限参数的最有前途的技术之一。为了解决与太阳能电池的不同界面相关联的各种物理过程的解耦,需要对阻抗谱数据进行定量分析。经常使用适当的数学模型来与物理性能限制参数相关联。这篇综述全面介绍了用于分析硅太阳能电池界面过程的阻抗谱数据所需的数学模型。

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