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首页> 外文期刊>Solar Energy >Theoretical analysis of doping concentration, layer thickness and barrier height effects on BaSi_2 based homojunction solar cells toward high efficiency
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Theoretical analysis of doping concentration, layer thickness and barrier height effects on BaSi_2 based homojunction solar cells toward high efficiency

机译:BaSi_2基同质结太阳能电池向高效率掺杂浓度,层厚和势垒高度影响的理论分析

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摘要

Numerical calculation and theoretical study on high optical absorption material BaSi2 based np or nip homojunction solar cells were conducted by using AMPS software. The effects of doping concentration and front layer thickness on the performance of n-BaSi2/p-BaSi2 homojunciton solar cell were comprehensive investigated. It was found that the donor concentration and thickness of n-BaSi2 had decisive influence on the light performance of n-BaSi2/p-BaSi2 homojunciton solar cell, since high donor concentration in n-BaSi2 gave rise to extremely high hole trapping concentration in n-BaSi2 and thus reduced the hole current as well as total current density under light illumination. Consequently, the n-BaSi2 layer was suggested to be designed either with low donor concentration or with thin thickness to achieve high power conversion efficiency. Same effect of n-BaSi2 on the performance of nip homojucntion solar cell was also observed. Contrarily, the optimized p-BaSi2 was suggested to possess high acceptor concentration and to be slightly thicker, in order to maintain the high built-in potential as well as Voc of nip homojunciton solar cell. On account of the front and rear contact barrier height between electrode and BaSi2 functional layer, the barrier height between p-BaSi2 and rear contact electrode had comparably more sensitive influence to attenuate the built-in potential and thus the Voc of BaSi2 based nip the solar cell. However, this negative influence caused by high barrier height could be convincingly conquered by employing thick p-BaSi2 layer.
机译:利用AMPS软件对高吸光材料BaSi2基np或nip同质结太阳能电池进行了数值计算和理论研究。全面研究了掺杂浓度和表层厚度对n-BaSi2 / p-BaSi2同质结太阳能电池性能的影响。发现n-BaSi2的施主浓度和厚度对n-BaSi2 / p-BaSi2同质结太阳能电池的光性能具有决定性的影响,因为n-BaSi2中的高施主浓度导致n中极高的空穴俘获浓度-BaSi 2,因此减少了在光照下的空穴电流以及总电流密度。因此,建议将n-BaSi 2层设计为低施主浓度或薄厚度以实现高功率转换效率。还观察到n-BaSi 2对压区均质结太阳能电池性能的相同影响。相反地​​,为了维持高的夹层准分子太阳能电池的内建电势和Voc,建议优化的p-BaSi2具有高的受体浓度并稍厚一些。由于电极和BaSi2功能层之间的前后接触势垒高度,p-BaSi2和后接触电极之间的势垒高度具有相对更敏感的影响,从而衰减了内置电势,因此基于BaSi2的Voc压在太阳能电池上细胞。但是,通过使用厚的p-BaSi2层可以令人信服地克服由高势垒高度引起的这种负面影响。

著录项

  • 来源
    《Solar Energy》 |2020年第5期|857-865|共9页
  • 作者

  • 作者单位

    Wuhan Inst Technol Hubei Key Lab Plasma Chem & Adv Mat Wuhan 430205 Peoples R China;

    Zhengzhou Univ State Ctr Int Cooperat Designer Low Carbon & Envi Zhengzhou 450001 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Barium disilicide; Simulation; Solar cell;

    机译:二硅化钡;模拟;太阳能电池;

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