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Investigation of ultrafast carrier dynamics in curcumin dye for environment friendly dye-sensitized solar cell. | LitMetric

AI Article Synopsis

  • Natural dyes like curcumin are being used in dye-sensitized solar cells (DSSCs) due to their low cost and straightforward manufacturing, which can yield efficiencies of around 13%.
  • The performance of DSSCs heavily relies on the specific dyes chosen, but the detailed behaviors of natural dyes, particularly regarding their excited state dynamics, are still not well understood.
  • Using ultrafast transient absorption spectroscopy, this research explores how curcumin's characteristics and the influence of hydrogen bonding and solvent polarity affect its carrier dynamics, revealing that these factors play a significant role in the relaxation process of the dye.

Article Abstract

Natural dyes have been widely employed in the fabrication of dye-sensitized solar cells (DSSCs). DSSCs are favored for their cost-effective, and simple fabrication process relies on metal-based and organic dyes. The choice of dyes greatly affects the performance of DSSCs. DSSCs have found a lot of applications in indoor, solar power gadgets with reasonable efficiency up to 13%. Nonetheless, despite advances in DSSC technology, the complex photophysics and excited state dynamics associated with natural dyes employed in DSSCs remain elusive and have not been adequately investigated. This information gap emphasizes the need for more study and analysis into the behavior of these dyes, since understanding their underlying principles might lead to major improvements in DSSC performance and efficiency. In this work, we have investigated the fundamental characteristics and excited-state carrier dynamics of natural dye curcumin using ultrafast transient absorption (TA) spectroscopy technique. The curcumin dye shows delay time-dependent positive and negative signals in the TA spectra, which are related to excited state absorption and stimulated emission. We also found that hydrogen bonding and polarity effect of solvent significantly influence the carrier dynamics of curcumin. Ultrafast lifetime component indicates that hydrogen-bond rearrangements are involved in the kinetics of the relaxation process of the S state of curcumin photo-sensitizer.

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Source
http://dx.doi.org/10.1007/s11356-023-30668-5DOI Listing

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