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        Ruthenium(II) dicarboxylated bipyridyl based metal organic polymer as a sensitizer for nanostructured TiO2 based dye-sensitized solar cells (DSSC)

        Sathishkumar Chinnasamy,Sivasubramanian Ramanathan 한양대학교 세라믹연구소 2020 Journal of Ceramic Processing Research Vol.21 No.1

        In this work, ruthenium(II)bis(2,2'-bipyridyl4,4'-dicarboxylicacid)(pyrazine)bis(tetrafluroborate) [Ru(II)(dcbpy)2(pyz)]n(BF4)2n]based metal organic polymer (RuMOP-Pyz-1), was synthesized at room temperature under inert atmosphere and theirperformance in dye-sensitized solar cells (DSSC) were studied. The metal organic polymer was prepared by coupling pyrazineas linker units with the Ru(II) dicarboxylated based mono metallic complex. The UV-visible absorption profiles covered abroad range of absorption and the formation of polymer leads to shift in the absorption wavelength. The metal mediated π-conjugation units in the polymer complex exhibit a strong emission at λem = 552 nm with an excitation wavelength of 395 nm. The synthesized metallo-polymer was employed as a sensitizer in DSSC and the maximum power conversion efficiency (PCE)value of ɳ = 1.507 % with short circuit current (Jsc) of 3.22 mA/cm2; open circuit voltage (Voc) 0.684 V and Fill Factor (FF)of 68.45 % under Air Mass (AM) 1.5 G simulated sunlight at a light intensity of 100 mW/cm2 was obtained. The efficiencyof the device and its photovoltaic performances were found to be satisfactory. The enhanced performance of the device isattributed to the presence of extended conjugation of the metallo polymer which helps in a facile electron transfer from theHOMO to LUMO of TiO2.

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