Silicon solar cell front electrode leadless main grid slurry and preparation method thereof
A silicon solar cell, front electrode technology, applied in conductive materials, circuits, photovoltaic power generation, etc. dispersed in non-conductive inorganic materials, can solve the problem of waste material use and so on
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[0029] Another object of the present invention is to provide a method for preparing a lead-free busbar paste for front electrodes of silicon solar cells, including:
[0030] According to the component distribution ratio described in claim 1, put the weighed glass powder and organic carrier into the ball milling equipment, add zirconium balls according to the ratio of material: zirconium balls = 1:1, and carry out mixing and ball milling for 15-24 hours After the fineness is ≤7 μm, the material is filtered and discharged, and then mixed with spherical silver powder and flake silver powder and rolled by a three-roll mill to a fineness of ≤7 μm to obtain a lead-free busbar paste for the front electrode of a silicon solar cell.
[0031]Another object of the present invention is to provide the application of the lead-free busbar paste for the front electrode of the silicon solar cell to the front electrode of the silicon solar cell. The lead-free busbar paste for the front electrod...
Embodiment approach 1
[0033] Embodiment 1, a lead-free busbar paste for the front electrode of a silicon solar cell, the lead-free busbar paste includes the following components in weight percentage: spherical silver powder 55-75wt%, flake silver powder 2.5-10wt%, glass Powder 1-3wt% and organic carrier 15-40wt%, the particle size of the spherical silver powder is 0.5-2.5 μm, the tap density is 3.0-4.0g / ml, the particle size of the flake silver powder is 2.5-5 μm, The tap density is 2.0-3.5g / ml, and the glass powder is Bi 2 o 3 - SiO 2 -B 2 o 3 -TeO 2 - ZnO glass system.
Embodiment approach 2
[0034] Embodiment 2 is the same as Embodiment 1, except that the particle size of the glass powder is 0.1-3 μm, and the specific surface area is 3.5-5.5 μm 2 / g.
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