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Autor:
Harald Untenecker, Susann Gunst, Nadine Tchamba Yimga, John T. M. Kennis, Ivo H. M. van Stokkum, Achidi Frick, Simon C. Boehme, Peer Kirsch, Elizabeth von Hauff
Publikováno v:
Advanced Electronic Materials, 7(8):2100186, 1-13. Wiley
Advanced Electronic Materials, 7 (8)
Boehme, S C, Tchamba Yimga, N, Frick, A, Gunst, S, Untenecker, H, Kennis, J T M, van Stokkum, I H M, Kirsch, P & von Hauff, E 2021, ' Correlating Ultrafast Dynamics, Liquid Crystalline Phases, and Ambipolar Transport in Fluorinated Benzothiadiazole Dyes ', Advanced Electronic Materials, vol. 7, no. 8, 2100186, pp. 1-13 . https://doi.org/10.1002/aelm.202100186
Advanced Electronic Materials, 7 (8)
Boehme, S C, Tchamba Yimga, N, Frick, A, Gunst, S, Untenecker, H, Kennis, J T M, van Stokkum, I H M, Kirsch, P & von Hauff, E 2021, ' Correlating Ultrafast Dynamics, Liquid Crystalline Phases, and Ambipolar Transport in Fluorinated Benzothiadiazole Dyes ', Advanced Electronic Materials, vol. 7, no. 8, 2100186, pp. 1-13 . https://doi.org/10.1002/aelm.202100186
A key challenge in the field of organic electronics is predicting how chemical structure at the molecular scale determines nature and dynamics of excited states, as well as the macroscopic optoelectronic properties in thin film. Here, the donor–acc