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Excellent c-Si surface passivation by low-temperature atomic layer deposited titanium oxide

机译:低温原子层沉积的氧化钛具有出色的c-Si表面钝化性能

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In this work, we demonstrate that thermal atomic layer deposited (ALD) titanium oxide (TiOx) films are able to provide a—up to now unprecedented—level of surface passivation on undiffused low-resistivity crystalline silicon (c-Si). The surface passivation provided by the ALD TiOx films is activated by a post-deposition anneal and subsequent light soaking treatment. Ultralow effective surface recombination velocities down to 2.8 cm/s and 8.3 cm/s, respectively, are achieved on n-type and p-type float-zone c-Si wafers. Detailed analysis confirms that the TiOx films are nearly stoichiometric, have no significant level of contaminants, and are of amorphous nature. The passivation is found to be stable after storage in the dark for eight months. These results demonstrate that TiOx films are also capable of providing excellent passivation of undiffused c-Si surfaces on a comparable level to thermal silicon oxide, silicon nitride, and aluminum oxide. In addition, it is well known that TiOx has an optimal refractive index of 2.4 in the visible range for glass encapsulated solar cells, as well as a low extinction coefficient. Thus, the results presented in this work could facilitate the re-emergence of TiOx in the field of high-efficiency silicon wafer solar cells.
机译:在这项工作中,我们证明了热原子层沉积(ALD)的氧化钛(TiOx)膜能够在未扩散的低电阻率晶体硅(c-Si)上提供(迄今为止前所未有的)表面钝化水平。 ALD TiOx膜提供的表面钝化可通过沉积后退火和随后的光浸处理来激活。在n型和p型浮区c-Si晶圆上,分别实现了分别低至2.8 cm / s和8.3 cm / s的超低有效表面重组速度。详细的分析证实,TiOx薄膜几乎是化学计量的,没有明显的污染物水平,并且具有非晶态性质。在黑暗中存储八个月后,发现钝化是稳定的。这些结果表明,TiO x膜还能够以与热氧化硅,氮化硅和氧化铝相当的水平对未扩散的c-Si表面提供出色的钝化。此外,众所周知,对于玻璃封装的太阳能电池,TiOx在可见光范围内的最佳折射率为2.4,并且消光系数低。因此,这项工作中提出的结果可以促进TiOx在高效硅晶片太阳能电池领域的重新出现。

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