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A technique for field effect surface passivation for silicon solar cells

机译:硅太阳能电池的场效应表面钝化技术

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摘要

The recombination of electric charge carriers at the surface of semiconductors is a major limiting factor in the efficiency of optoelectronic devices, in particular, solar cells. The reduction of such recombination, commonly referred to as surface passivation, is achieved by the combined effect of a reduction in the trap states present at the surface via a chemical component, and the reduction in the charge carriers available for a recombination process, via a field effect component. Here, we propose a technique to field effect passivate silicon surfaces using the electric field effect provided by alkali ions present in a capping oxide. This technique is shown to reduce surface recombination in a controlled manner, and to be highly stable. Surface recombination velocities in the range of 6–15 cm/s are demonstrated for 1 Ω cm n-type float zone silicon using this technique, and they are observed to be constant for over 300 days, without the use of any additional surface chemical treatment. A model of trapping-mediated ionic injection is used to describe the system, and activation energies of 1.8–2 eV are deduced for de-trapping of sodium and potassium alkali ionic species.
机译:半导体表面上的载流子的复合是光电器件特别是太阳能电池的效率的主要限制因素。这种复合的减少,通常称为表面钝化,是通过化学成分减少了表面上存在的俘获态和减少了可用于复合过程的载流子的综合作用而实现的。场效应组件。在这里,我们提出了一种技术,该技术利用由封端氧化物中存在的碱金属离子提供的电场效应来对钝化硅表面进行场效应。示出该技术以受控的方式减少了表面重组,并且是高度稳定的。使用该技术证明了1Ωcm n型浮区硅的表面复合速度在6-15 cm / s范围内,并且观察到它们在300天内保持恒定,而没有使用任何其他表面化学处理。使用捕集介导的离子注入模型来描述该系统,并推导了1.8–2 eV的活化能以去除钠和钾碱金属离子物种。

著录项

  • 来源
    《Applied Physics Letters 》 |2014年第23期| 1-5| 共5页
  • 作者单位

    Department of Materials, University of Oxford, Oxford OX1 3PH, United Kingdom|c|;

  • 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
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