首页> 外文会议>European Photovoltaic Solar Energy Conference; 20060904-08; Dresden(DE) >NOVEL LOW TEMPERATURE FRONT SIDE METALLISATION SCHEME USING SELECTIVE LASER ABLATION OF ANTI REFLECTION COATINGS AND ELECTROLESS NICKEL PLATING
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NOVEL LOW TEMPERATURE FRONT SIDE METALLISATION SCHEME USING SELECTIVE LASER ABLATION OF ANTI REFLECTION COATINGS AND ELECTROLESS NICKEL PLATING

机译:采用选择性激光烧蚀抗反射涂层和化学镀镍的新型低温前侧金属化方案

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For the development of a new low temperature front side metallisation the selective opening of the front surface anti reflection coating is inevitable. Secondly the selective deposition of an electroplating seed layer is necessary. In this paper the approach of using a laser ablation process to selectively remove this layer is presented. The possibility to perform this step without inducing damage into the solar cell front surface is demonstrated by optical methods like scanning electron microscopy as well as lifetime measurements. Dark and light IV measurements on solar cells show the potential of the process when using photo lithographically defined titanium / palladium / silver front side metallisation by reaching an efficiency of 16.5% with a planar front surface. The possibility to circumvent this laboratory process by using electroless nickel plating is demonstrated as well.
机译:为了开发新的低温正面金属化层,不可避免地要选择性地打开正面抗反射涂层。其次,必须选择性地沉积电镀种子层。在本文中,提出了使用激光烧蚀工艺选择性去除该层的方法。通过光学方法,例如扫描电子显微镜以及寿命测量,证明了执行该步骤而不会对太阳能电池前表面造成损害的可能性。当使用光刻定义的钛/钯/银正面金属化时,对太阳能电池的暗和亮IV测量显示了该工艺的潜力,该方法的平坦正面使效率达到16.5%。还证明了通过使用化学镀镍来规避该实验室过程的可能性。

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