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Laser Processing of Solar Cells

机译:激光加工太阳能电池

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Laser processing has a long history in the manufacturing of solar cells since most thin-film photovoltaic modules have been manufactured using laser scribing for more than thirty years. Lasers have also been used by many solar cell manufacturers for a variety of applications such as edge isolation, identification marking, laser grooving for selective emitters and cutting of silicon wafers and ribbons. In addition, several laser-processing techniques are currently being investigated for the production of new types of high performance silicon solar cells. There have also been research efforts on utilizing laser melting, laser annealing and laser texturing in the fabrication of solar cells. Recently, a number of manufacturers have been developing new generations of solar cells where they use laser ablation of dielectric layers to form selective emitters or passivated rear point contacts. Others have been utilizing lasers to drill holes through the silicon wafers for emitter-wrap-through or metal-wrap-through back-contact solar cells. Scientists at Fraunhofer ISE have demonstrated high efficiency silicon solar cells (21.7%) by using laser firing to form passivated rear point contacts in p-type silicon wafers. Investigators art both the University of Stuttgart and the University of New South Wales have produced high efficiency silicon solar cells using laser doping to form selective emitters, and some companies are now developing commercial products based on both laser doping and laser firing of contacts. The use of lasers in solar cell processing appears destined to grow given the advances that are continually being made in laser technology.
机译:激光加工具有因为大多数薄膜光伏模块使用激光划线对超过三十年已经制造在制造太阳能电池的一个很长的历史。激光器也已经被许多太阳能电池制造商用于各种应用,如边缘隔离,识别标记,激光开槽用于选择性发射极和硅晶片和带的切割。此外,一些激光加工技术目前正在研究用于生产新类型的高性能硅太阳能电池中的。也有一些关于利用激光熔凝,激光退火和激光毛化太阳能电池的制造研究工作。最近,许多制造商已经开发了他们使用电介质层的激光烧蚀以形成选择性发射极或钝化背面点接触太阳能电池的新世代。他人已经利用激光来钻通硅片孔发射极穿孔卷绕或金属穿孔卷绕背接触太阳能电池。弗劳恩霍夫ISE科学家们通过使用激光烧结,以形成在p型硅晶片钝化背面点接触证明高效率的硅太阳能电池(21.7%)。研究者艺术斯图加特的两个大学和新南威尔士已经产生:使用激光掺杂,形成选择性发射极的高效率硅太阳能电池的大学,现在有些公司是基于两个激光掺杂和联系人的激光发射开发商业产品。在太阳能电池处理利用激光出现注定生长鉴于不断被在激光技术取得了进展。

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