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Dr. Chetan Raj Singh

Publications in the Thelakkat group

[1] Mohanraj, J., Singh, C.R., Gujar, T.P., Heinrich, C.D. & Thelakkat, M. Nanostructured Hybrid Metal Mesh as Transparent Conducting Electrodes: Selection Criteria Verification in Perovskite Solar Cells. Nanomaterials, 11(7), 2021.
[2] Stelling, C., Singh, C.R., Karg, M., Koenig, T.A.F., Thelakkat, M. & Retsch, M. Plasmonic nanomeshes: their ambivalent role as transparent electrodes in organic solar cells. Scientific Reports, 7:42530, 2017.
[3] Mitchell, V.D., Gann, E., Huettner, S., Singh, C.R., Subbiah, J., Thomsen, L., McNeill, C.R., Thelakkat, M. & Jones, D.J. Morphological and Device Evaluation of an Amphiphilic Block Copolymer for Organic Photovoltaic Applications. Macromolecules, 50(13):4942-4951, 2017.
[4] Heinrich, C., Hufnagel, M., Singh, C., Fischer, M., Alam, S., Hoppe, H., Thurn-Albrecht, T. & Thelakkat, M. Nanoscale Morphology from Donor–Acceptor Block Copolymers: Formation and Functions. , pages 157-191, 2017.
[5] Konkin, A., Singh, C., Orlinskii, S., Mamin, G., Aganov, A., Lohwasser, R., Ritter, U., Scharff, P., Thelakkat, M. & Hoppe, H. Light-induced X,W-band Electron Spin Resonance study of double-crystalline donor-acceptor P3HT-b-PPerAcr block copolymers in solid thin films. Synthetic Metals, 215:251-259, 2016.
[6] Mueller, C.J., Singh, C.R. & Thelakkat, M. EDOT-diketopyrrolopyrrole copolymers for high bulk hole mobility and near infrared absorption. Journal of Polymer Science Part B: Polymer Physics, 54(6):639-648, 2016.
[7] Singh, C.R., Honold, T., Gujar, T.P., Retsch, M., Fery, A., Karg, M. & Thelakkat, M. The role of colloidal plasmonic nanostructures in organic solar cells. Phys. Chem. Chem. Phys., pages -, 2016.
[8] Singh, C.R., Li, C., Mueller, C.J., Hüttner, S. & Thelakkat, M. Influence of Electron Extracting Interface Layers in Organic Bulk-Heterojunction Solar Cells. Advanced Materials Interfaces, pages n/a-n/a, 2016.
[9] Singh, S., Li, C., Panzer, F., Narasimhan, K.L., Graeser, A., Gujar, T.P., Köhler, A., Thelakkat, M., Huettner, S. & Kabra, D. Effect of Thermal and Structural Disorder on the Electronic Structure of Hybrid Perovskite Semiconductor CH3NH3PbI3. The Journal of Physical Chemistry Letters, 7(15):3014-3021, 2016., (PMID: 27435936).
[10] Mueller, C.J., Gann, E., Singh, C.R., Thelakkat, M. & McNeill, C.R. Control of Molecular Orientation in Polydiketopyrrolopyrrole Copolymers via Diffusive Noncovalent Interactions. Chemistry of Materials, 28(19):7088-7097, 2016.
[11] G., G., Singh, C.R. & Thurn-Albrecht. T, R.H.L. Morphology, Crystal Structure and Charge Transport in Donor-Acceptor Block Copolymer Thin Films. ACS Applied Materials \& Interfaces, 2015.
[12] Hunger, C., Rao, K.D.M., Gupta, R., Singh, C.R., Kulkarni, G.U. & Thelakkat, M. Transparent Metal Network with Low Haze and High Figure of Merit applied to Front and Back Electrodes in Semitransparent ITO-free Polymer Solar Cells. Energy Technology, 3(6):638-645, WILEY-VCH Verlag, 2015.
[13] Mueller, C.J., Singh, C.R., Fried, M., Huettner, S. & Thelakkat, M. High Bulk Electron Mobility Diketopyrrolopyrrole Copolymers with Perfluorothiophene. Advanced Functional Materials, 25(18):2725-2736, 2015.
[14] Singh, C. Phase Separation in the Melt and Confined Crystallization as the Key to Well-Ordered Microphase Separated Donor–Acceptor Block Copolymers. Macromolecules, 46:4403-4410, 2013.