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Status and Potential of CdTe Solar-Cell Efficiency

机译:CdTe太阳能电池效率的现状和潜力

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The status of the highest efficiency CdTe solar cells is presented in the context of comparative loss analysis among the leading technologies for single- and polycrystalline photovoltaic materials. The Shockley–Queisser limit of a single-junction cell, with acknowledgement of variations from standard conditions, is used for reference. The highest CdTe currents achieved are comparable with the best single-crystal cells and superior to other thin-film cells. Voltages match those of multicrystalline Si, but lag behind those of CIGS and crystalline Si, and considerably lag behind crystalline GaAs. The potential for still higher CdTe efficiency will likely require a combination of reduced bulk recombination, smaller back-contact barriers, device structures with advantageous internal fields, and transparent emitters with minimal band offsets.
机译:在对单晶和多晶光伏材料的领先技术进行比较损耗分析的背景下,介绍了效率最高的CdTe太阳能电池的状况。单结电池的Shockley-Queisser极限,并确认了标准条件的变化,仅供参考。达到的最高CdTe电流可与最佳单晶电池媲美,并且优于其他薄膜电池。电压与多晶Si的电压匹配,但落后于CIGS和晶体Si的电压,并且远远落后于晶体GaAs。更高的CdTe效率潜力可能需要减少整体重组,较小的背接触势垒,具有有利内部电场的器件结构以及带隙最小的透明发射器的组合。

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