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Low Cost Metallization Inks for Photovoltaics

机译:低成本的光伏金属化油墨

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Commercial Si wafer solar cells employ screen printed Ag grids as the front contact and Al layers as the back contact. The drive to decrease cost is pushing manufacturers to seek both lower cost materials and methods. One obvious material change is to replace Ag with lower cost metals such as Ni and Cu. Shifting to thinner Si wafers is another reasonable cost saving measure, but it will also necessitate replacing contact methods like screen printing. InkJet and aerosol jet printing are excellent non-contact choices. These tools have been incorporated into NREL 's Atmospheric Processing Platform, along with complementary rapid thermal processing capabilities. We have used these tools to deposit Ni/Cu bilayer grids as the front contacts and Al layers as the back contacts on 21 cm2 Si solar cells. To our knowledge, this is the first time all non-contact printed metal contacts on Si solar cells have been demonstrated. These studies also show the potential of non-contact printed Al, Ni, and Cu inks to contribute to the fabrication of low-cost photovoltaic devices.
机译:商业化的硅晶片太阳能电池采用丝网印刷的Ag栅作为正面触点,Al层作为背面触点。降低成本的驱动力促使制造商寻求成本更低的材料和方法。一种明显的材料变化是用低成本金属(例如Ni和Cu)代替Ag。转向更薄的Si晶圆是另一种合理的节省成本的措施,但它也将需要替换丝网印刷等接触方法。喷墨和气溶胶喷射印刷是出色的非接触式选择。这些工具以及互补的快速热处理功能已被整合到NREL的大气处理平台中。我们已经使用这些工具在21 cm2的Si太阳能电池上沉积Ni / Cu双层栅作为前接触层,并沉积Al层作为后接触层。据我们所知,这是硅太阳能电池上所有非接触式印刷金属触点的首次展示。这些研究还表明,非接触印刷的Al,Ni和Cu墨水有可能有助于制造低成本的光伏器件。

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