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Numerical Analysis of Novel Cs2AuBiCl6-Based Double Perovskite Solar Cells with Graphene Oxide as HTL—A SCAPS-1D Simulation

  • 2023
  • OriginalPaper
  • Chapter
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Abstract

The chapter delves into the numerical simulation of a novel Cs2AuBiCl6-based double perovskite solar cell using graphene oxide as the hole transport layer, conducted with the SCAPS-1D software. The study optimizes the device's performance by varying the thickness of the absorber and hole transport layers, and investigating the effects of temperature and parasitic resistances. The results show that the efficiency of the device increases with the thickness of the absorber layer and remains fairly constant with the thickness of the hole transport layer. The optimal operating temperature is found to be 300K, with any deviation adversely affecting performance. The use of graphene oxide as a hole transport layer presents a promising, non-toxic, and cost-effective alternative to traditional materials, making this chapter a significant contribution to the field of photovoltaics.

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Title
Numerical Analysis of Novel Cs2AuBiCl6-Based Double Perovskite Solar Cells with Graphene Oxide as HTL—A SCAPS-1D Simulation
Authors
Titu Thomas
Davis Johny
B. Sudakshina
Copyright Year
2023
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-1616-0_3
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