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High quality amorphous silicon materials and cells grown with hydrogen dilution

机译:通过氢稀释生长的高质量非晶硅材料和电池

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Hydrogen dilution of the active gas during deposition has been found to be a very effective way to improve the quality of amorphous silicon-based materials and solar cells. With increasing hydrogen dilution, the material is characterized by an improved order, and at a certain threshold dilution, the amorphous to microcrystalline transition takes place. The best material is grown just below the threshold and is heterogeneous consisting of tiny crystallites embedded in an amorphous matrix of improved order. In this paper, we discuss the effects of hydrogen dilution on the material and cell properties of amorphous silicon-based alloys and provide an explanation for their improved stability against light-induced degradation. We also discuss some special properties of the on-the-edge materials that are not seen in the conventional amorphous or microcrystalline alloys. (C) 2002 Published by Elsevier Science B.V. [References: 43]
机译:已经发现沉积期间活性气体的氢气稀释是提高非晶硅基材料和太阳能电池质量的非常有效的方法。随着氢稀释度的增加,材料的特征在于改进的有序性,并且在一定的阈值稀释度下,发生了无定形到微晶的转变。最好的材料生长在阈值以下,并且是由微晶组成的非均质材料,微晶嵌在改进顺序的非晶态基质中。在本文中,我们讨论了氢稀释对非晶硅基合金材料和电池性能的影响,并为它们提高的抗光诱导降解稳定性提供了解释。我们还讨论了边缘材料的一些特殊性能,而这些性能在常规非晶态或微晶合金中是看不到的。 (C)2002由Elsevier Science B.V.出版[参考:43]

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