Efficient inorganic additive for lowering contact resistance of back electrode of solar cell
An inorganic additive, back electrode contact technology, applied in conductive materials, circuits, electrical components, etc. dispersed in non-conductive inorganic materials, to achieve the effects of good tortuosity, low activity efficiency, and large specific surface area
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Embodiment 1
[0011] The invention is a high-efficiency inorganic additive capable of reducing the contact resistance of the back electrode of a solar cell, which consists of 88% by weight of bismuth trioxide nanotubes, 9% of manganese dioxide nanotubes, and 1% of tin dioxide nanotubes , 1% zinc oxide nanotubes and 1% titanium dioxide nanotubes; among them, the average length of bismuth trioxide nanotubes is 0.1-1 μm, and the average diameter is 10-20 nm; the average length of manganese dioxide nanotubes The average length of tin dioxide nanotubes is 0.1-1.5 μm, and the average diameter is 20-50 nm; the average length of zinc oxide nanotubes is 0.1-1 μm, and the average diameter The average length of titanium dioxide nanotubes is 0.1-1 μm, and the average diameter is 10-20 nm.
Embodiment 2
[0013] The invention is a high-efficiency inorganic additive capable of reducing the contact resistance of the back electrode of a solar cell, which consists of 50% bismuth trioxide nanotubes, 20% manganese dioxide nanotubes, and 12% tin dioxide nanotubes. , 3% zinc oxide nanotubes and 15% titanium dioxide nanotubes; among them, the average length of bismuth trioxide nanotubes is 0.1-1 μm, and the average diameter is 10-20 nm; the average length of manganese dioxide nanotubes The average length of tin dioxide nanotubes is 0.1-1.5 μm, and the average diameter is 20-50 nm; the average length of zinc oxide nanotubes is 0.1-1 μm, and the average diameter The average length of titanium dioxide nanotubes is 0.1-1 μm, and the average diameter is 10-20 nm.
Embodiment 3
[0015] The invention is a high-efficiency inorganic additive capable of reducing the contact resistance of the back electrode of a solar cell, which consists of 60% bismuth trioxide nanotubes, 10% manganese dioxide nanotubes, and 10% tin dioxide nanotubes , 10% zinc oxide nanotubes and 10% titanium dioxide nanotubes; among them, the average length of bismuth trioxide nanotubes is 0.1-1 μm, and the average diameter is 10-20 nm; the average length of manganese dioxide nanotubes The average length of tin dioxide nanotubes is 0.1-1.5 μm, and the average diameter is 20-50 nm; the average length of zinc oxide nanotubes is 0.1-1 μm, and the average diameter The average length of titanium dioxide nanotubes is 0.1-1 μm, and the average diameter is 10-20 nm.
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