Ultrafast excited state dynamics of iridium(iii) complexes and their changes upon immobilisation onto titanium dioxide layers

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Abstract

Time-resolved spectroscopy was applied to investigate the excited state dynamics of two heteroleptic Ir(iii) complexes with the general formula [Ir(C^N)2(N^N)]+, where C^N and N^N represent different cyclometalating and diimine ligands, respectively. The excited state relaxation is influenced by the ligand substitution as well as the light polarisation. Vibrational relaxation occurs in the sub-ps timescale and interligand charge transfer results in polarisation dependent signal dynamics with a time constant of about 30 ps. Electron injection from the iridium dye to TiO2 is analysed with respect to potential applications in solar energy conversion.

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Tschierlei, S., Neubauer, A., Rockstroh, N., Karnahl, M., Schwarzbach, P., Junge, H., … Lochbrunner, S. (2016). Ultrafast excited state dynamics of iridium(iii) complexes and their changes upon immobilisation onto titanium dioxide layers. Physical Chemistry Chemical Physics, 18(16), 10682–10687. https://doi.org/10.1039/c6cp00343e

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