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[131] Yum, J.H., Moon, S.J., Karthikeyan, C.S., Wietasch, H., Thelakkat, M., Zakeeruddin, S.M., Nazeeruddin, M. & Grätzel, M. Heteroleptic ruthenium complex containing substituted triphenylamine hole-transport unit as sensitizer for stable dye-sensitized solar cell . Nano Energy, 1(1):6-12, 2012.
[130] Wijeratne, K., Akilavasan, J., Thelakkat, M. & Bandara, J. Enhancing the solar cell efficiency through pristine 1-dimensional SnO2 nanostructures: Comparison of charge transport and carrier lifetime of SnO2 particles vs. nanorods. Electrochim. Acta, 72:192-198, 2012.
[129] Spreitler, F., Sommer, M., Thelakkat, M. & Köhler, J. Conformational dynamics of di-(perylene bisimide acrylate) and its footprints in steady-state, time-resolved, and fluorescence-correlation spectroscopy. Phys. Chem. Chem. Phys., 14:7971-7980, 2012.
[128] Katharina, N. & Thelakkat, M. Synthesis and characterization of donor-acceptor copolymers carrying triphenylamine units for photovoltaic applications. Proc. SPIE, 8477:84771H-84771H-3, 2012.
[127] Andringa, A., Roelofs, W., Sommer, M., Thelakkat, M., Kemerink, M. & de Leeuw, D. Localizing trapped charge carriers in NO2 sensors based on organic field-effect transistors. Appl. Phys. Lett., 101:153302, 2012.
[126] Scharsich, C., Lohwasser, R., Sommer, M., Asawapirom, U., Scherf, U., Thelakkat, M., Neher, D. & Köhler, A. Control of aggregate formation in poly(3-hexylthiophene) by solvent, molecular weight, and synthetic method. J. Polym. Sci. B Polym. Phys., 50:442-453, 2012.
[125] Brendel, J., Burchardt, H. & Thelakkat, M. Semiconductor amphiphilic block copolymers for hybrid donor–acceptor nanocomposites. J. Mater. Chem., 22:24386-24393, 2012.


[124] Zerson, M., Spitzner, E., Riesch, C., Lohwasser, R., Thelakkat, M. & Magerle, R. Subsurface Mapping of Amorphous Surface Layers on Poly(3-hexylthiophene). Macromolecules, 44:5874-5877, 2011.
[123] Pérez León, C., Kador, L., Peng, B. & Thelakkat, M. Effect of the substrate morphology on the adsorption of Ru-bipyridyl sensitizers on anatase TiO2. Phys. Status Solidi A, 208:59-64, 2011.
[122] Sommer, M., Himmerlich, M., Wicklein, A., Krischok, S., Thelakkat, M. & Hoppe, H. Morphology controlled open circuit voltage in polymer solar cells. physica status solidi (RRL) – Rapid Research Letters, 5(7):247-249, WILEY-VCH Verlag, 2011.
[121] Pars, M., Hofmann, C., Willinger, K., Bauer, P., Thelakkat, M. & Köhler, J. An Organic Optical Transistor Operated under Ambient Conditions. Angew. Chem. Int. Ed., 50:11405-11408, 2011.
[120] Xe, L., Nazeeruddin, M., Thelakkat, M., Barnes, P. & Durrant, J. Spectroelectrochemical studies of hole percolation on functionalised nanocrystalline TiO2 films: a comparison of two different ruthenium complexes. Phys. Chem. Chem. Phys., 13:1575-1584, 2011.
[119] Muth, M.A., Carrasco-Orozco, M. & Thelakkat, M. Liquid-Crystalline Perylene Diester Polymers with Tunable Charge-Carrier Mobility. Advanced Functional Materials, 21(23):4510-4518, WILEY-VCH Verlag, 2011.
[118] Lohwasser, R. & Thelakkat, M. Toward Perfect Control of End Groups and Polydispersity in Poly(3-hexylthiophene) via Catalyst Transfer Polymerization. Macromolecules, 44:3388-3397, 2011.
[117] Lang, A. & Thelakkat, M. Modular synthesis of poly(perylene bisimides) using click chemistry: A comparative study. Polym. Chem., 2:2213-2221, 2011.
[116] Bandara, J., Shankar, K., Basham, J., Wietasch, H., Paulose, M., Varghese, O., Grimes, C. & Thelakkat, M. Integration of TiO2 nanotube arrays into solid-state dye-sensitized solar cells. Eur. Phys. J. Appl. Phys., 53:20601, 2011.
[115] Bandara, J., Shankar, K., Grimes, C. & Thelakkat, M. Efficient and stable, structurally inverted poly(3-hexylthiopen): [6,6]-phenyl-C61-butyric acid methyl ester heterojunction solar cells with fibrous like poly(3-hexylthiopen). Thin Solid Films, 520:582-590, 2011.
[114] Bandara, J., Willinger, K. & Thelakkat, M. Multichromophore light harvesting in hybrid solar cells. Phys. Chem. Chem. Phys., 13:12906-12911, 2011.
[113] Erten-Ela, S., Brendel, J. & Thelakkat, M. Solid-state dye-sensitized solar cells fabricated with nanoporous TiO2 and TPD dyes: Analysis of penetration behavior and I–V characteristics. Chem. Phys. Lett., 510:93-98, 2011.
[112] Hüttner, S., Sommer, M., Kohn, P., Hodgkiss, J., Thurn-Albrecht, T., Friend, R., Steiner, U. & Thelakkat, M. Tunable charge transport using supramolecular self-assembly of nanostructured crystalline block copolymers. ACS Nano, 5:3506-3515, 2011.