A novel MoS2-based hybrid film as the back electrode for high-performance thin film solar cells

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Abstract

MoS2, a representative two-dimensional transition metal dichalcogenide, gains significant interest due to its unique layered structure and electronic structure. In this work, a novel MoS2-based hybrid thin film was constructed by disordered stacking of MoS2-NMP hybrid particles, which were mainly composed of MoS2(NMP)3 molecules stacking in a nearly-parallel manner through S⋯H-C hydrogen bonds. Interestingly, it presents a higher work function (5.42 eV) than Au (5.32 eV), and a unique thickness-dependent conductivity with p-type semiconductor characteristic. Using it as the back contact of CdTe solar cells, the efficiency was improved by 2.6% compared to the traditional cells, mainly from the great improvement in short-circuit current density (Jsc). This significant improvement in solar performance was ascribed to the matchable energy levels at the CdTe/MoS2-based thin film interface and its unique thickness-dependent conductivity. This work opens a new direction for the extensive applications of TMD-based materials.

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Yuan, S., Zhang, M. J., Yang, X., Mei, Z., Chen, Y., & Pan, F. (2017). A novel MoS2-based hybrid film as the back electrode for high-performance thin film solar cells. RSC Advances, 7(38), 23415–23421. https://doi.org/10.1039/c7ra03233a

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