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Screen-Printable Silver Pastes with Metallic Nano-Zinc and Nano-Zinc Alloys for Crystalline Silicon Photovoltaic Cells

机译:用于晶体硅光伏电池的金属纳米锌和纳米锌合金的丝网印刷银浆

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摘要

Silver metallization pastes for crystalline silicon PV cells containing nanosized metallic zinc were found to be superior to commercial pastes containing micrometer-sized metallic zinc and micrometer sized zinc oxide in terms of efficiency and firing window. Efficiency performance decreases as the size of the particles increases: nano-Zn > 3.6 μm Zn > 4.4 μm Zn. Advanced electron microscopy techniques were used to investigate the interracial microstructure between the front-side contact and the Si emitter of nanosized zinc additive based cells fired at temperatures from below to above optimal. These microstructural observations confirmed the possibility of a tunneling mechanism of current flow (a "nano-Ag colloid assisted tunneling" model) in the absence of Ag crystallites. Contact resistance maps were used to guide sampling, leading to a better understanding of the relationship between microstructure and contact resistance. Low contact resistance and higher cell efficiency, especially at under- and overfiring temperature conditions, are due to more uniform silicon nitride etching obtained through the use of nanosized metallic zinc additives.
机译:发现在效率和烧结窗口方面,用于包含纳米级金属锌的结晶硅PV电池的银金属化浆料优于包含微米级金属锌和微米级氧化锌的商业浆料。效率性能随颗粒尺寸的增加而降低:纳米锌> 3.6μm锌> 4.4μmZn。先进的电子显微镜技术被用来研究在从最佳温度到低于最佳温度下烧制的纳米尺寸锌添加剂基电池的正面触点和Si发射极之间的界面微观结构。这些微结构观察证实了在不存在银微晶的情况下电流隧穿机理的可能性(“纳米银胶体辅助隧穿”模型)。接触电阻图用于指导采样,从而使人们更好地了解微观结构与接触电阻之间的关系。低接触电阻和较高的电池效率,尤其是在欠烧和过烧温度条件下,是由于通过使用纳米级金属锌添加剂获得的氮化硅蚀刻更加均匀。

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