A platinum(II) emitter is able to self-assemble into gelating nanofibers, leading to an unprecedented 90 % photoluminescence quantum yield. Electroluminescent devices processed in solution can be doped with the aforementioned complex. Picture: a) Emission (α) and excitation spectra and photos of the gel, b) REM, and c) TEM images of the nanofibers.
Switching on luminescence by the self-assembly of a platinum(II) complex into gelating nanofibers and electroluminescent films / C.A. Strassert, C.-. Chien, M.D. Galvez Lopez, D. Kourkoulos, D. Hertel, K. Meerholz, L. De Cola. - In: ANGEWANDTE CHEMIE. INTERNATIONAL EDITION. - ISSN 1433-7851. - 50:4(2011), pp. 946-950. [10.1002/anie.201003818]
Switching on luminescence by the self-assembly of a platinum(II) complex into gelating nanofibers and electroluminescent films
L. De Cola
2011
Abstract
A platinum(II) emitter is able to self-assemble into gelating nanofibers, leading to an unprecedented 90 % photoluminescence quantum yield. Electroluminescent devices processed in solution can be doped with the aforementioned complex. Picture: a) Emission (α) and excitation spectra and photos of the gel, b) REM, and c) TEM images of the nanofibers.File | Dimensione | Formato | |
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