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研究了一种高效非晶硅(a-Si)太阳电池和大面积a-Si太阳电池子模用的一种新型材料。使用BMe_3材料作掺杂剂,从而改善了P型a-Sic膜的性能,并使10×10Cm集成型子模的总面积能量转换效率达到9.6%。一种通用的分离分析方法使测定的开路电压参数值更加完善。用等离子化学气相沉积法(控制等离子磁控管)制备的微晶Sic膜用于太阳电池,其开路电压已达到0.96V。大面积太阳
A novel material for high efficiency amorphous silicon (a-Si) solar cells and large-area a-Si solar cell submodules was investigated. The use of BMe_3 as a dopant improves the performance of the p-type a-Sic film and brings the total area energy conversion efficiency of the 10 × 10 cm integrated submode to 9.6%. A common method of separation and analysis allows the determination of open circuit voltage parameter values more perfect. The microcrystalline SiC film prepared by plasma chemical vapor deposition (controlled plasma magnetron) was used in solar cells and the open circuit voltage reached 0.96V. Large area of the sun