Bandara, K.M.S.P.Bandara, T.M.W.J.Bandara, L.R.A.K.Wijayaratne, W.M.K.B.N.Gunathilake, S.M.S.2026-06-152026-06-152023-09-20Proceedings of the Peradeniya University International Research Sessions (iPURSE) – 2023, University of Peradeniya, P 1901391-4111https://ir.lib.pdn.ac.lk/handle/20.500.14444/7796This study investigated the use of graphene as a performance enhancer of the electrolyte for dye-sensitized solar cells (DSSC). The electrolyte is a major component that affects the performance of a DSSC, as it can govern both the efficiency and the stability of the solar cell. A gel polymer electrolyte, which shows higher long-term stability while maintaining comparable efficiency, is developed in this study. In this research, a small percentage of graphene is added to an electrolyte containing ethylene carbonate, propylene carbonate, polyethylene oxide, 4- tertbutylpyridine, lithium iodide, tetra-hexyl-ammonium iodide, 1-methyl-3-propyl imidazolium iodide and iodine. The conductivity of the electrolyte and the efficiency of the solar cell are studied. The electrolyte containing 1% graphene mass fraction with respect to polymer demonstrated a higher conductivity of 0.511 mS cm-1 at 30 °C. A quasi-solid state DSSCs constructed using 6-layered TiO2 photoelectrodes and Pt counter electrodes exhibited a power conversion efficiency (PCE) of 5.83%, which is 4.3% higher than the control cell. This observation can be attributed to the higher conductivity of the graphene-added electrolyte since graphene may assist charge transportation through the electrolyte.en-USGel polymer electrolytesGrapheneHigh-efficiency DSSCsIonic conductivityEffect of incorporation of graphene to the electrolyte on the performance of quasi-solid-state dye-sensitized solar cellsArticle