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Kuruganti, V.V. (author), Isabella, O. (author), Mihailetchi, Valentin D. (author)
Interdigitated back contact (IBC) architecture can yield among the highest silicon wafer-based solar cell conversion efficiencies. Since both polarities are realized on the rear side, there is a definite need for a patterning step. Some of the common patterning techniques involve photolithography, inkjet patterning, and laser ablation. This...
journal article 2024
document
Kuruganti, V.V. (author), Wurmbrand, Daniel (author), Buck, Thomas (author), Seren, Sven (author), Zeman, M. (author), Isabella, O. (author), Geml, Fabian (author), Plagwitz, Heiko (author), Terheiden, Barbara (author), Mihailetchi, Valentin D. (author)
Even though interdigitated back contact (IBC) architecture produces the most efficient solar cells, it is difficult to make them cost-effective and industrially viable. Therefore, single-sided atmospheric pressure chemical vapor deposition (APCVD) is investigated for the fabrication of IBC solar cells because it reduces the overall thermal...
journal article 2023
document
Kuruganti, V.V. (author), Mazurov, Alexander (author), Seren, Sven (author), Isabella, O. (author), Mihailetchi, Valentin D. (author)
In this work, we developed an in situ annealing process to crystallize boron-doped amorphous silicon [a-Si(p+)] layers deposited by atmospheric pressure chemical vapour deposition (APCVD) to form boron-doped polycrystalline silicon [poly-Si(p+)] layers. The influence of the temperature profiles during a-Si(p+) inline deposition on structural,...
journal article 2023