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Plasma-initiated rehydrogenation of amorphous silicon to increase the temperature processing window of silicon heterojunction solar cells

机译:等离子体引发的非晶硅再氢化以增加硅异质结太阳能电池的温度处理窗口

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摘要

abstract: The dehydrogenation of intrinsic hydrogenated amorphous silicon (a-Si:H) at temperatures above approximately 300 °C degrades its ability to passivate silicon wafer surfaces. This limits the temperature of post-passivation processing steps during the fabrication of advanced silicon heterojunction or silicon-based tandem solar cells. We demonstrate that a hydrogen plasma can rehydrogenate intrinsic a-Si:H passivation layers that have been dehydrogenated by annealing. The hydrogen plasma treatment fully restores the effective carrier lifetime to several milliseconds in textured crystalline silicon wafers coated with 8-nm-thick intrinsic a-Si:H layers after annealing at temperatures of up to 450 °C. Plasma-initiated rehydrogenation also translates to complete solar cells: A silicon heterojunction solar cell subjected to annealing at 450 °C (following intrinsic a-Si:H deposition) had an open-circuit voltage of less than 600 mV, but an identical cell that received hydrogen plasma treatment reached a voltage of over 710 mV and an efficiency of over 19%.
机译:摘要:本征氢化非晶硅(a-Si:H)在大约300 C以上的温度下脱氢会降低其钝化硅片表面的能力。这限制了高级硅异质结或硅基串联太阳能电池制造过程中钝化后处理步骤的温度。我们证明氢等离子体可以使已经通过退火脱氢的本征a-Si:H钝化层再氢化。氢等离子体处理可在高达450 C的温度下退火后,将覆盖8纳米厚本征a-Si:H层的织构晶体硅晶片中的有效载流子寿命完全恢复到几毫秒。等离子体引发的再氢化也可以转化为完整的太阳能电池:在450 C(进行本征a-Si:H沉积之后)进行退火的硅异质结太阳能电池的开路电压小于600 mV,但是相同的电池可以接受氢等离子体处理的电压达到710 mV以上,效率超过19%。

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