基于多孔硅的太阳能元件特性模拟

A. Dyadenchuk, N. Domina, R. Oleksenko
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引用次数: 1

摘要

提出了一种具有多孔硅缓冲层的异质结构太阳能电池模型。利用PC1D程序计算了所制备结构的光特性(开路电压VOC、短路电流JSC密度、转换效率$\eta$),并绘制了电流-电压特性图。结果表明,光伏型TiO2/多孔Si/Si和CuO/多孔Si/Si太阳能电池的性能均有所提高。研究发现,使用多孔硅层的太阳能电池能量转换效率提高了约10%,达到23.6%。研究了多孔硅层异质结构光转换器的效率与多孔硅层厚度的关系。结果表明,多孔层厚度的变化对短路电流影响不大。开路电压值在孔层厚度$0.6-0.7 \mu\ mathm {m}$处达到最大值。从仿真结果分析可以看出,随着多孔层厚度的变化,CuO/多孔Si/Si异质结构太阳能电池的效率变化幅度为0.8%,而TiO2/多孔Si/Si异质转换太阳能电池的效率变化幅度为0.4%。所提出的异质结构有望开发出廉价、清洁和耐用的器件,并具有显着的光电转换效率。
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Simulation of Solar Element Characteristics Based on Porous Silicon
The article proposes a solar cell model based on heterostructures with a porous silicon buffer layer. Using the PC1D program, the light characteristics of the fabricated structure (open-circuit voltage VOC, short-circuit current JSC density, conversion efficiency $\eta$) were calculated, and the current-voltage characteristics were plotted. The results obtained show an increase in the photovoltaic TiO2/porous-Si/Si performance and CuO/porous-Si/Si solar cells. It has been found that solar cell efficiency of energetic conversion using a layer of porous silicon increases by ~10%, reaching 23.6%. The efficiency dependence of photo converters based on heterostructures with a porous silicon layer on the thickness of the porous layer is studied. It has been established that a change in the thickness of the porous layer does not significantly affect the short-circuit current. The value of the open-circuit voltage acquires a maximum value at a porous layer thickness of $0.6-0.7 \mu\mathrm{m}$. It can be seen from the analysis of the simulation results that the efficiency of a solar cell based on the CuO/porous-Si/Si heterostructure changes by 0.8% with a change in the thickness of the porous layer, while the efficiency for a solar cell based on the TiO2/porous-Si/Si heteroconversion changes by 0.4 %. The proposed heterostructures are promising for the inexpensive development, clean and durable devices with a noticeable efficiency converting light into electricity.
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