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首页> 外文期刊>Photovoltaics, IEEE Journal of >Heterojunction Interdigitated Back-Contact Solar Cells Fabricated on Wafer Bonded to Glass
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Heterojunction Interdigitated Back-Contact Solar Cells Fabricated on Wafer Bonded to Glass

机译:异质结叉指背接触式太阳能电池,用硅片粘结在玻璃上制成

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摘要

Future wafer-based silicon solar cells will be fabricated on thin (<140 μm) wafers. However, technologies to handle thin wafers during cell processing are not yet available for industry. In this paper, a flow to handle thin wafers during rear side cell processing is developed and demonstrated on 4-in 200 μm-thick wafers. The flow involves bonding the wafers to glass after front-side processing followed by a low-temperature p-n heterojunction formation on the rear side. 2.5 × 2.5 cm$^{2}$ amorphous/crystalline silicon heterojunction interdigitated back-contact solar cells are fabricated by use of lithography while bonded to glass, and they show an efficiency of up to 17.7%. Shunts, infrared light absorption, and rear side interface passivation are identified as the main efficiency losses. Dedicated experiments suggest that the passivation losses are related to the degradation of the adhesive during wafer cleaning. Hence, methods to improve the compatibility of the adhesive with the cleaning process are discussed.
机译:未来的基于晶片的硅太阳能电池将在薄(<140μm)晶片上制造。但是,工业上尚不能使用在电池处理过程中处理薄晶圆的技术。在本文中,开发了在背面单元处理期间处理薄晶圆的流程,并在200微米厚4英寸晶圆上进行了演示。该流程涉及在正面处理之后将晶圆键合到玻璃,然后在背面形成低温p-n异质结。 2.5英寸2.5厘米^ {2} $非晶/结晶硅异质结叉指背接触太阳能电池是通过光刻并结合到玻璃上制成的,效率高达17.7%。分流,红外光吸收和背面界面钝化被认为是主要的效率损失。专门的实验表明,钝化损失与晶片清洁过程中粘合剂的降解有关。因此,讨论了改善粘合剂与清洁工艺的相容性的方法。

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