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- W3196369145 abstract "Optimally prepared industrial n-type TOPCon c-Si bifacial solar cells (156 mm × 156 mm) fabricated with cost-effective screen-printable front-side and rear-side metallization pastes had a median solar cell efficiency of 22.19 ± 0.10% and bifaciality Eff factor of 82.3%. A front-side paste comprising silver, metallic aluminum, and inorganic frit was designed to contact p+ boron-diffused Si emitter surfaces with SiN x : H-Al 2 O 3 antireflection-passivation layers. A rear-side paste comprising silver and inorganic frit was designed to contact n+ phosphorous-diffused Si surfaces with tunnel-SiO x /n+poly-Si/SiN x : H layers. Solar cell electrical data suggests efficiency is being limited primarily by the front-side metallization paste. The final front-side metallization microstructure shows isolated metallic aluminum particles surrounded by solidified glass within the bulk sintered silver conductor line. The front-side conductor metal-p+ boron-diffused Si emitter contact region shows continuous interfacial films decorated with silver colloids located between the bulk conductor metal and Si emitter surface. A microstructural model suggests electrical contact for the front-side contact region occurs by a tunneling mechanism though the residual interfacial films." @default.
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- W3196369145 date "2021-06-20" @default.
- W3196369145 modified "2023-09-27" @default.
- W3196369145 title "Screen-Printable Conductor Metallizations for Industrial n-TOPCon Crystalline Silicon Solar Cells" @default.
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- W3196369145 doi "https://doi.org/10.1109/pvsc43889.2021.9518477" @default.
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