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Increasing the efficiency of silicon heterojunction solar cells and modules by light soaking

机译:通过光浸泡提高硅杂交太阳能电池和模块的效率

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摘要

Silicon heterojunction solar cells use crystalline silicon (c-Si) wafers as optical absorbers and employ bilayers of doped/intrinsic hydrogenated amorphous silicon (a-Si:H) to form passivating contacts. Recently, we demonstrated that such solar cells increase their operating voltages and thus their conversion efficiencies during light exposure. We found that this performance increase is due to improved passivation of the a-Si:H/c-Si interface and is induced by injected charge carriers (either by light soaking or forward-voltage biasing of the device). Here, we discuss this counterintuitive behavior and establish that: (i) the performance increase is observed in solar cells as well as modules; (ii) this phenomenon requires the presence of doped a-Si:H films, but is independent from whether light is incident from the a-Si:H(p) or the a-Si:H(n) side; (iii) UV and blue photons do not play a role in this effect; (iv) the performance increase can be observed under illumination intensities as low as 20 W m(-1) (0.02-sun) and appears to be almost identical in strength when under 1-sun (1000 W m(-1)); (v) the underlying physical mechanism likely differs from annealing-induced surface passivation.
机译:硅杂函数太阳能电池使用晶体硅(C-Si)晶片作为光学吸收剂,并使用掺杂/固有氢化非晶硅(A-Si:H)的双层以形成钝化触点。最近,我们证明这种太阳能电池增加了它们的工作电压,从而增加了它们在轻曝光期间的转化效率。我们发现,这种性能增加是由于A-Si:H / C-Si接口的钝化改善,并通过注入的电荷载流子(通过光浸泡或装置的正向偏置)引起的。在这里,我们讨论了这项反向性的行为,并确定:(i)在太阳能电池以及模块中观察到性能增加; (ii)这种现象需要存在掺杂A-Si:H膜,但是独立于光线是否从A-Si:H(P)或A-Si:H(n)侧发生; (iii)紫外线和蓝色光子在这种效果中没有发挥作用; (iv)可以在低至20W m(-1)(0.02-SUN)的照明强度下观察性能增加,并且在1℃下的强度几乎相同(1000W m(-1)); (v)潜在的物理机制可能与退火诱导的表面钝化不同。

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