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首页> 外文期刊>Journal of physical chemistry letters >CdCl2 Treatment-Induced Enhanced Conductivity in CdTe Solar Cells Observed Using Conductive Atomic Force Microscopy
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CdCl2 Treatment-Induced Enhanced Conductivity in CdTe Solar Cells Observed Using Conductive Atomic Force Microscopy

机译:使用导电原子力显微镜观察到的CdCl2处理诱导的CdTe太阳能电池电导率增强

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摘要

The rear surfaces of CdTe photovoltaic devices without back contacts, grown by close-spaced sublimation (CSS), were analyzed using conductive atomic force microscopy (C-AFM). As-deposited and CdCl2-treated CdTe samples were compared to clarify the effect of the treatment on charge flow through grains and grain boundaries. The CdCl2-treated samples exhibit a more homogeneous and enhanced current flow across the grains as compared to the as-deposited samples. The grain boundaries show variable current. Under high bias, grain boundaries dominate current flow when the main junction is reverse biased and with the conducting current in reverse breakdown. Under the opposite bias conditions, where the contact of the conductive tip to the surface is reverse biased and under breakdown conditions, the current flow is uniform with little contrast between grains and grain boundaries. The results are interpreted as resulting from the improved crystallinity of the CdTe with reduced p-type doping along the grain boundaries.
机译:使用导电原子力显微镜(C-AFM)分析了通过近距离升华(CSS)生长的无背面接触的CdTe光伏器件的背面。比较了沉积态和经CdCl2处理的CdTe样品,以阐明处理对通过晶粒和晶界的电荷流的影响。与沉积后的样品相比,经CdCl2处理的样品在晶粒上表现出更均匀且增强的电流。晶界显示出可变电流。在高偏置下,当主结被反向偏置且导电电流被反向击穿时,晶界将主导电流。在相反的偏置条件下,导电尖端与表面的接触被反向偏置,在击穿条件下,电流均匀,晶粒和晶界之间的对比度很小。结果被解释为是由于CdTe的结晶度提高,而沿晶界的p型掺杂减少所致。

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