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Use of Coated-Metal Particles in Rear Busbar Pastes to Reduce Silver Consumption

机译:在后母线浆料中使用涂层金属颗粒以减少银消耗

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Reducing the amount of silver is one of the most important ways to reduce the cost of photovoltaic cells. The common way to reduce silver consumption on a cell is the reduction of the metal content in the paste. We present a new paste with silver-coated nickel particles, reducing the silver amount and still keeping the properties of silver related to oxidation and sintering. This paper shows the limits in conductivity due to porosity and oxidation of coated-metal particle pastes in comparison with silver pastes. Simulations and cell tests show that coated-metal particle pastes reduce silver consumption without decreasing the cell efficiency replacing busbar pastes. Coated-metal particle pastes are able to decrease silver consumption for rear-side busbars to mg/cm, leading to a conductivity S/cm, without decreasing cell or module efficiency. The conductivity of coated-metal particle pastes is too low using pastes with coated-metal particles as a replacement for the metallization paste for grid fingers but good enough to replace the silver paste for busbars with a cheap alternative.
机译:减少银的含量是降低光伏电池成本的最重要方法之一。减少电池中银消耗的常用方法是减少浆料中的金属含量。我们提出了一种带有镀银镍颗粒的新浆料,可减少银含量,并仍保持银的性质与氧化和烧结有关。本文显示了与银浆相比,由于涂层金属颗粒浆的孔隙率和氧化导致的电导率极限。仿真和电池测试表明,涂覆金属颗粒的浆料可减少银的消耗,而不会降低代替母线浆料的电池效率。带涂层的金属颗粒浆料能够将后侧母线的银消耗降低至mg / cm,从而导致电导率S / cm,而不会降低电池或模块的效率。使用带涂层金属颗粒的浆料替代栅指金属化浆料时,涂层金属颗粒浆料的电导率太低,但足以替代廉价的母线用银浆。

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