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Philip Schmode

PS
Alumnus

Well-defined conjugated polyelectrolytes for bioelectronics.

Publications in the Thelakkat group

[1] Krauss, G., Meichsner, F., Hochgesang, A., Mohanraj, J., Salehi, S., Schmode, P. & Thelakkat, M. Polydiketopyrrolopyrroles Carrying Ethylene Glycol Substituents as Efficient Mixed Ion-Electron Conductors for Biocompatible Organic Electrochemical Transistors. Advanced Functional Materials, 31(20):2010048, 2021.
[2] Dolynchuk, O., Schmode, P., Fischer, M., Thelakkat, M. & Thurn-Albrecht, T. Elucidating the Effect of Interfacial Interactions on Crystal Orientations in Thin Films of Polythiophenes. Macromolecules, 54(12):5429-5439, 2021.
[3] Schmode, P., Hochgesang, A., Goel, M., Meichsner, F., Mohanraj, J., Fried, M. & Thelakkat, M. A Solution-Processable Pristine PEDOT Exhibiting Excellent Conductivity, Charge Carrier Mobility, and Thermal Stability in the Doped State. Macromolecular Chemistry and Physics, n/a(n/a):2100123, 2021.
[4] Schmode, P., Savva, A., Kahl, R., Ohayon, D., Meichsner, F., Dolynchuk, O., Thurn-Albrecht, T., Inal, S. & Thelakkat, M. The Key Role of Side Chain Linkage in Structure Formation and Mixed Conduction of Ethylene Glycol Substituted Polythiophenes. ACS Appl. Mater. Interfaces, 12(11):13029-13039, American Chemical Society, 2020.
[5] Schmode, P., Schötz, K., Dolynchuk, O., Panzer, F., Köhler, A., Thurn-Albrecht, T. & Thelakkat, M. Influence of ω-Bromo Substitution on Structure and Optoelectronic Properties of Homopolymers and Gradient Copolymers of 3-Hexylthiophene. Macromolecules, 53(7):2474-2484, American Chemical Society, 2020.
[6] Schmode, P., Ohayon, D., Reichstein, P.M., Savva, A., Inal, S. & Thelakkat, M. High-Performance Organic Electrochemical Transistors Based on Conjugated Polyelectrolyte Copolymers. Chem. Mater., 31(14):5286-5295, American Chemical Society, 2019.