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首页> 外文期刊>Journal of Applied Physics >Local current flow in amorphous and nanocrystalline mixed-phase silicon solar cells
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Local current flow in amorphous and nanocrystalline mixed-phase silicon solar cells

机译:非晶和纳米晶混合相硅太阳能电池中的局部电流

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摘要

Local current flow in amorphous and nanocrystalline mixed-phase n-i-p silicon solar cells is measured using conductive atomic force microscopy (C-AFM) and correlated to the material structure from Raman measurement. The C-AFM images show that the current is very low over the entire surface of the fully amorphous region. High current spikes are observed in the mixed-phase region, where the current spike corresponds to aggregations of nanocrystallites. The size of the nanocrystalline aggregations is on the order of a half micrometer in diameter. The density of the current spike increases from the mixed phase to the heavily nanocrystalline regions. A thick amorphous silicon buffer layer inserted between the p and i layers significantly reduced the magnitude of the current spike. The C-AFM measurements suggest that the mixed-phase cells can be considered as a two-phase parallel-connected diode structure, consistent with our previously proposed model.
机译:使用导电原子力显微镜(C-AFM)测量非晶和纳米晶混合相n-i-p硅太阳能电池中的局部电流,并将其与拉曼测量的材料结构相关联。 C-AFM图像显示,在完全非晶区的整个表面上电流非常低。在混合相区域中观察到高电流尖峰,其中电流尖峰对应于纳米微晶的聚集。纳米晶体聚集体的尺寸为直径的一半微米。电流尖峰的密度从混合相到重纳米晶区域增加。插在p和i层之间的厚非晶硅缓冲层可显着降低电流尖峰的幅度。 C-AFM测量表明,混合相电池可以视为两相并联二极管结构,与我们先前提出的模型一致。

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