Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Kim C. Dümbgen"'
Publikováno v:
Chemistry of Materials. 33:6885-6896
Publikováno v:
Proceedings of the nanoGe Fall Meeting 2021.
Autor:
Jari Leemans, Kim C. Dümbgen, Ivan Infante, Qiang Zhao, Christophe Detavernier, Zeger Hens, Matthias Minjauw, André Vantomme
Publikováno v:
Journal of the American Chemical Society
Colloidal quantum dots (QDs) made from In-based III-V semiconductors are emerging as a printable infrared material. However, the formulation of infrared inks and the formation of electrically conductive QD coatings is hampered by a limited understand
Autor:
Andrew J. deMello, Ioannis Lignos, Kim C. Dümbgen, Richard M. Maceiczyk, Maksym V. Kovalenko, Loredana Protesescu
Publikováno v:
Chemistry of Materials. 29:8433-8439
Formamidinium lead bromide and iodide (FAPbX3, X = Br, I) in the form of colloidal nanocrystals (NCs) exhibit outstanding photoluminescence properties in the green and infrared regions of the electromagnetic spectrum, characterized by narrow emission
Autor:
Marco Taddei, Nicola Casati, Marco Ranocchiari, Kim C. Dümbgen, Daniel Antti Steitz, Jeroen A. van Bokhoven
Publikováno v:
CrystEngComm. 19:3206-3214
Large scale synthesis of metal–organic frameworks (MOFs) is of high interest, due to their potential for industrial applications. The capacity to synthesize large amounts of MOFs should be combined with the ability to control their properties. Unde
Autor:
Martin Hegner, Kim C. Dümbgen, Rohit Mishra, Sinéad Winters, Nina C. Berner, Claudia Backes, Andreas Hirsch, Georg S. Duesberg
Publikováno v:
Chemical communications (Cambridge, England). 51(94)
An efficient, high-throughput method for the formation of densely packed molecular films on graphene is reported. The films exhibit high stability and remain intact during a subsequent derivatisation reaction, offering a versatile route for the non-c
Autor:
Claudia Backes, Sinéad Winters, Andreas Hirsch, Sebastian Mackowski, Chanyoung Yim, Attilio A. Cafolla, Nina C. Berner, Georg S. Duesberg, Kim C. Dümbgen, Izabela Kaminska
The non-covalent functionalisation of graphene is an attractive strategy to alter the surface chemistry of graphene without damaging its superior electrical and mechanical properties. Using the facile method of aqueous-phase functionalisation on larg
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::5bbe6f9e01ec1eca147efe4d0a4a2b4f
https://opus4.kobv.de/opus4-fau/files/8473/Berner_understanding.pdf
https://opus4.kobv.de/opus4-fau/files/8473/Berner_understanding.pdf