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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Formation and characterization of porous silicon layers for application in multicrystalline silicon solar cells
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Formation and characterization of porous silicon layers for application in multicrystalline silicon solar cells

机译:用于多晶硅太阳能电池的多孔硅层的形成与表征

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摘要

The electrochemical formation of porous silicon (PS) layers in the n~+ emitter of silicon p-n~+ homojunctions for solar energy conversion has been investigated. During the electrochemical process under constant polarization, a variation of the current density occurs. This effect is explained by considering the doping impurity gradient in the emitter and by TEM characterization of the PS layer structure. Optical transmission measurements indicate that modifications of the refractive index and absorption coefficient of PS are mainly related to the porosity value. Reflectivity measurements, spectral response and I-V characteristics show that PS acts as an efficient antireflection coating layer. However, beyond a critical layer thickness, i.e. when PS reaches the p-n~+ interface, the junction properties are degraded.
机译:研究了在硅p-n〜+同质结的n〜+发射极中用于太阳能转换的多孔硅(PS)层的电化学形成。在恒定极化的电化学过程中,电流密度发生变化。通过考虑发射极中的掺杂杂质梯度以及PS层结构的TEM表征可以解释这种效果。光学透射率测量表明,PS的折射率和吸收系数的变化主要与孔隙率值有关。反射率测量,光谱响应和I-V特性表明PS可以用作有效的抗反射涂层。然而,超过临界层厚度,即,当PS到达p-n +界面时,结性能下降。

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