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Damp-Heat-Stable, High-Efficiency, Industrial-Size Silicon Heterojunction Solar Cells

机译:湿热稳定,高效,工业规模的硅异质结太阳能电池

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摘要

Silicon heterojunction (SHJ) solar cells employ nanometer-thin stacks of intrinsic and doped hydrogenated amorphous silicon (a-Si:H) films as carrier-selective contacts. To achieve excellent carrier selectivity, the a-Si:H must be carefully optimized to guarantee an atomically sharp a-Si:H/c-Si interface. In this work, by combining experiments with molecular dynamics and ab initio calculations, we unveil that H atoms bonded to internal-void surfaces in a-Si:H broaden its optical band gap via a filamentary effect near the valence-band maximum. The photovoltaic performance of rear-emitter SHJ solar cells can be significantly improved by tailoring the Si-H bonding state in the front a-Si:H passivation layer, resulting in a power conversion efficiency (PCE) of 23.4% on a 6-in cell. By implementing double antireflection coatings (ARCs) of SiNx and SiOx, the PCE is further improved to 23.9%. More importantly, the ARC devices show prominently improved damp-heat stability without encapsulation in 1,000-h aging at 85 degrees C, 85% relative humidity.
机译:硅异质结(SHJ)太阳能电池采用本征和掺杂的氢化非晶硅(a-Si:H)薄膜的纳米厚度堆叠作为载流子选择触点。为了获得优异的载流子选择性,必须仔细优化a-Si:H以确保原子上清晰的a-Si:H / c-Si界面。在这项工作中,通过结合分子动力学实验和从头算计算,我们揭示了键合在a-Si:H内空隙表面上的H原子通过价带最大值附近的丝状效应扩大了其光学带隙。通过调整前a-Si:H钝化层中的Si-H键合状态,可以显着提高后发射极SHJ太阳能电池的光伏性能,从而在6英寸的功率转换效率(PCE)为23.4%细胞。通过实现SiNx和SiOx的双重抗反射涂层(ARC),PCE进一步提高到23.9%。更重要的是,ARC设备显示出显着改善的湿热稳定性,而无需封装在85摄氏度,相对湿度为85%的情况下进行1000小时的老化。

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