| dc.description.abstract |
In this study, an iodine-free 1-butyl-3-methylimidazolium iodide (BmimI) ionic liquid, modified with acetonitrile (AN),
was employed as a redox mediator using a facile approach to enhance DSSC performance. The optical properties of
BmimI-AN(1:2) electrolyte (BmimI: AN = 1:2 w/w) indicate low absorption and high transmittance in the visible region.
In addition to the UV-Vis spectra, Raman spectra also confirm the presence of the in-situ generated I−3 ions, which are
sufficient to complete the reaction mechanism in DSSCs. Conductivity measurements revealed that the BmimI-AN(1:2)
electrolyte possesses excellent ionic conductivity compared to BmimI and standard commercial I−/I−3 electrolytes.
The photovoltaic performances of the fabricated devices were analysed under simulated irradiation at an intensity of
100 mWcm–2 using a Xe lamp with an AM 1.5 filter. The BmimI-AN(1:2) electrolyte led to a higher power conversion
efficiency (PCE) in DSSC, reaching up to 6.26 ± 0.21%, primarily due to improvements in VOC and JSC. Apart from the
transparent nature of the BmimI-AN(1:2) electrolyte, it suppresses charge recombination, resulting in a higher electron
lifetime in DSSCs. Moreover, DSSCs with the BmimI-AN(1:2) electrolyte exhibited short-term stability comparable to
that of standard commercial electrolytes under ambient conditions, with the potential for further improvement through
future optimization. |
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