首页> 外文期刊>Metallurgical and Materials Transactions, E. Materials for Energy Systems >Cz-Silicon Produced from Solar-Grade and Recycled Materials, Part II: Investigating Performances of Solar Cell Produced from Solar-Grade Cz-Silicon
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Cz-Silicon Produced from Solar-Grade and Recycled Materials, Part II: Investigating Performances of Solar Cell Produced from Solar-Grade Cz-Silicon

机译:由太阳能级和再生材料生产的Cz-硅,第二部分:调查由太阳能级Cz-硅生产的太阳能电池的性能

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摘要

This paper is the second of two, investigating the properties of P-type Cz-silicon materials and solar cells produced with recycled silicon and Elkem Solar Silicon (ESS) materials. While the focus on the first work was on the bulk properties and grown defects of the material, the current study focuses on the solar cell performances. In the processing of the solar cells, the phosphorous diffusion process was optimized to improve the bulk properties and thus to maximize the final solar cell characteristics. Results from the characterization of material defects suggest that the performances of the experimental ingots are limited by the activated grown-in defects, which should be strictly controlled during crystal growth and solar cell processing. The solar cells produced from the investigated ingots showed efficiency values up to 18.5 pct and fill factor values up to 79 pct, comparable to conventional silicon produced from poly silicon. Solar cells produced from mixed recycled and ESS material exhibit a better performance than 100 pct recycled material. Boron and oxygen concentration levels and net doping level showed a concurrent effect on light-induced degradation (LID). Appropriate compensation was finally demonstrated to be an efficient way to improve solar cells efficiency of Cz-silicon produced from recycled silicon, even though higher dopant concentration incurred relatively faster LID.
机译:本文是二者的第二篇,研究了P型Cz硅材料以及由再生硅和Elkem太阳能硅(ESS)材料生产的太阳能电池的性能。最初工作的重点是材料的整体性能和生长缺陷,而当前的研究重点是太阳能电池的性能。在太阳能电池的加工过程中,优化了磷扩散工艺以改善整体性能,从而最大程度地提高了最终的太阳能电池特性。材料缺陷表征的结果表明,实验锭的性能受到活化的生长缺陷的限制,应在晶体生长和太阳能电池加工过程中严格控制该缺陷。与由多晶硅生产的常规硅相比,由所研究的铸锭生产的太阳能电池的效率值高达18.5 pct,填充因子值高达79 pct。由混合的回收和ESS材料制成的太阳能电池比100 pct的回收材料表现出更好的性能。硼和氧的浓度水平以及净掺杂水平对光致降解(LID)产生同时影响。最终证明,适当的补偿是提高回收硅生产的Cz硅太阳能电池效率的有效方法,即使较高的掺杂剂浓度会导致相对较快的LID。

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