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- W2891963217 abstract "In this study, interlayers with varied thickness of TiN between Cu 2 ZnSnS(e) 4 (CZTS(e)) absorbers and Mo on soda‐lime glass substrates are investigated for CZTS(e) thin film solar cells. Na diffusion is analyzed using Secondary Ion Mass Spectrometry and it is found that the use of thick TiN interlayers facilitates Na diffusion into the absorbers. The CZTS(e)/TiN/Mo interfaces are scrutinized using Transmission Electron Microscopy (TEM) Electron Energy Loss Spectroscopy (EELS). It is found that diffusion of chalcogens present in the precursor occurs through openings, resulting from surface roughness in the Mo, in the otherwise chemically stable TiN interlayers, forming point contacts of MoS(e) 2 . It is further established that both chalcogens and Mo diffuse along the TiN interlayer grain boundaries. Solar cell performance for sulfur‐annealed samples improved with increased thickness of TiN, and with a 200 nm TiN interlayer, the solar cell performance is comparable to a typical Mo reference. Pure TiN bulk contacts are investigated and shown to work, but the performance is still inferior to the TiN interlayer back contacts. The use of thick TiN interlayers offers a pathway to achieve high efficiency CZTS(e) solar cells on highly inert back contacts." @default.
- W2891963217 created "2018-09-27" @default.
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- W2891963217 date "2018-09-14" @default.
- W2891963217 modified "2023-10-05" @default.
- W2891963217 title "TiN Interlayers with Varied Thickness in Cu<sub>2</sub> ZnSnS(e)<sub>4</sub> Thin Film Solar Cells: Effect on Na Diffusion, Back Contact Stability, and Performance" @default.
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- W2891963217 doi "https://doi.org/10.1002/pssa.201800491" @default.
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