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C. Gordon, L. Du, R. Katoh, A. Furube and D. L. Officer: J. Am. Chem. Soc. Vol. 131 (2009), p. 15621. [38] Y. Liu, N. Xiang, X. Feng, P. Shen, W. Zhou, C. Weng, B. Zhao and S. Tan: Chem. Commun. (2009), p. 2499. Key Engineering Materials Vol. cn Keywords: Ionic liquid; Ionic liquid polymer;Oligomer electrolyte; Quasi-solid state electrolytes; Solidification; Ionic conductivity; Dye-sensitized solar cells; Conversion efficiency; Electrochemical properties Abstract. Ionic liquid oligomer, 1-oligo(ethyleneoxide)-3-methylimidazolium salt (PEO(X)MIm) and Ionic liquid polymer, poly(1-oligo (ethylene glycol) methacrylate-3-methylimidazolium) salt (P(MOEMIm)) prepared by incorporating imidazolium ionic liquid with PEO oligomer and polymer were investigated as electrolytes for dye-sensitized solar cells (DSCs).

Compared with 2,4,6-Me, fused-ZnP-3 reveals broadening and red-shift of Soret and Q bands due to expansion of the -system with low symmetry, as seen in fused six-membered porphyrins [26,27]. It is noteworthy that the absorption edge of fused-ZnP-3 is extended to 800 nm. Steady-state fluorescence spectra of fused-ZnP-3 and 2,4,6-Me were also measured in CH2Cl2 by exciting at the Soret band wavelength. The fluorescence spectrum of fused-ZnP-3 also reveals red-shifted emission with a maximum of 772 nm, relative to 2,4,6-Me, which is consistent with the results obtained from the UV–vis absorption spectra.

Yanagida: Chem. Mater. Vol. 16 (2004), p. 1806. (h) P. Wang, C. Klein, R. Humphry-Baker, S. M. Zakeeruddin and M. Grätzel: J. Am. Chem. Soc. Vol. 127 (2005), p. 808. [8] (a) E. Galoppini: Coord. Chem. Rev. Vol. 248 (2004), p. 1283. (b) P. Wang, C. -E. Moser, R. -L. Cevey-Ha, R. Charvet, P. Comte, S. M. Zakeeruddin and M. Grätzel: J. Phys. Chem. B Vol. 108 (2004), p. 17553. (c) G. Ramakrishna, S. Verma, D. A. Jose, D. K. Kumar, A. Das, D. K. Palit and H. N. Ghosh: J. Phys. Chem. B Vol. 110 (2006), p.

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