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Synthesis of a lead-and particle-free metal-organic ink for front side metallization of crystalline silicon solar cells

机译:结晶硅太阳能电池前侧金属化的铅和无颗粒金属 - 有机油墨的合成

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摘要

We synthesize and investigate a lead-and particle-free metal-organic ink based on silver salts and various glass components to be used for the front side metallization of crystalline silicon solar cells. This novel metallization ink can be considered as a low-temperature sintering ink, as the silver salt reduces and builds a seed-layer layer at 450-480 °C. It can locally open the silicon nitride layer as well as form contact to the phosphorous-doped emitter at the surface. Due to the absence of particles in the ink, aerosol or ink jet printing are the ideal deposition technologies, as clogging of the printer nozzles is avoided. Additionally, as another advantage of particle-free inks, no aggregation occurs, allowing long-term stability and homogeneity. For a sufficient conductivity of the contact lines, plating of nickel and copper is investigated as an additional option for cost reduction. A final stable silver-based particle-free ink was developed consisting of 26 wt% metal content including silver-, bismuth-, and zinc-neodecanoate. Both the bismuth and zinc components are responsible for etching the ARC SiN_x layer and have been analyzed separately for ink stability, as well as etching parameters in order to reach the optimum component ratio. The solvents used were xylol and N-Methyl-2-pyrrolidon to ensure solubility of the silver-neodecanoic in the solution as well as enable good printability of the ink.
机译:我们基于银盐和各种玻璃组分合成并研究铅和颗粒的金属有机油墨,以用于晶体硅太阳能电池的前侧金属化。该新型金属化油墨可以被认为是低温烧结油墨,因为银盐减少并在450-480℃下构建种子层层。它可以局部地打开氮化硅层以及形成表面上的磷掺杂发射器的形状接触。由于油墨中没有颗粒,气溶胶或喷墨印刷是理想的沉积技术,因为避免了打印机喷嘴的堵塞。另外,作为无颗粒油墨的另一个优点,没有发生聚集,允许长期稳定性和均匀性。对于接触线的足够电导率,研究了镍和铜的镀层作为成本降低的另外的选择。由26wt%金属含量组成的最终稳定的银基颗粒油墨,包括银 - ,铋和锌 - 新癸酸盐。铋和锌组分都负责蚀刻弧形SIN_X层,并且已经分别分别分析墨水稳定性,以及蚀刻参数以达到最佳成分比。使用的溶剂是Xallol和N-甲基-2-吡咯烷酮,以确保银 - 新生在溶液中的溶解度,以及使油墨的良好印刷性。

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