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Antimony-Doped Tin(II) Sulfide Thin Films

机译:锑掺杂锡(II)硫化物薄膜

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摘要

Thin-film solar cells made from earth-abundant, inexpensive, and nontoxic materials are needed to replace the current technologies whose widespread use is limited by their use of scarce, costly, and toxic elements. Tin monosulfide (SnS) is a promising candidate for making absorber layers in scalable, inexpensive, and nontoxic solar cells. SnS has always been observed to be a p-type semiconductor. Doping SnS to form an n-type semiconductor would permit the construction of solar cells with p-n homojunctions. This paper reports doping SnS films with antimony, a potential n-type dopant. Small amounts of antimony (1%) were found to greatly increase the electrical resistance of the SnS. The resulting intrinsic SnS(Sb) films could be used for the insulating layer in a p-i-n design for solar cells. Higher concentrations (5%) of antimony did not convert the SnS(Sb) to low-resistivity n-type conductivity, but instead the films retain such a high resistance that the conductivity type could not be determined. Extended X-ray absorption fine structure analysis reveals that the highly doped films contain precipitates of a secondary phase that has chemical bonds characteristic of metallic antimony, rather than the antimony–sulfur bonds found in films with lower concentrations of antimony.
机译:需要由富含地球的,廉价的和无毒的材料制成的薄膜太阳能电池来代替当前的技术,这些技术由于缺乏稀有,昂贵且有毒的元素而受到广泛使用的限制。单硫化锡(SnS)是在可扩展,廉价且无毒的太阳能电池中制造吸收层的有前途的候选人。一直以来,SnS是一种p型半导体。掺杂SnS以形成n型半导体将允许构造具有p-n同质结的太阳能电池。本文报道了用锑(一种潜在的n型掺杂剂)掺杂SnS薄膜。发现少量锑(1%)会大大增加SnS的电阻。所得的本征SnS(Sb)薄膜可用于太阳能电池的p-i-n设计中的绝缘层。较高浓度(5%)的锑不会将SnS(Sb)转换为低电阻率的n型电导率,而是使薄膜保持如此高的电阻,从而无法确定电导率类型。扩展的X射线吸收精细结构分析表明,高掺杂薄膜包含具有金属锑化学键特征的第二相沉淀,而不是锑浓度较低的薄膜中存在的锑硫键。

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