Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Stefan M. Schupp"'
Publikováno v:
Small Science, Vol 2, Iss 8, Pp n/a-n/a (2022)
Colloidal crystals are arguably one of the most promising candidates when it comes to the fabrication of nanostructured metamaterials. Especially mesocrystals show exciting new properties that emerge from their inherent directional oriented assembly.
Externí odkaz:
https://doaj.org/article/41497099296d4663b20793956a17c62e
Autor:
Rajorshi Das, Michael Linseis, Stefan M. Schupp, Franciska S. Gogesch, Lukas Schmidt-Mende, Rainer F. Winter
Publikováno v:
RSC Advances. 13:3652-3660
Three binary charge-transfer (CT) compounds resulting from the donor 2,2′ : 6′,2′′ : 6′′,6-trioxotriphenylamine (TOTA) and the acceptors F4TCNQ and F4BQ and of a pyrene-annulated azaacene (PAA) with the acceptor F4TCNQ are reported. The i
Publikováno v:
The Journal of Physical Chemistry C. 125:20343-20350
Autor:
Stefanie Gärtner, Angelina Graf, Carla Triunfo, Davide Laurenzi, Stefan M. Schupp, Gabriele Maoloni, Giuseppe Falini, Helmut Cölfen
Publikováno v:
International Journal of Molecular Sciences; Volume 23; Issue 13; Pages: 7256
Biomaterials such as seashells are intriguing due to their remarkable properties, including their hierarchical structure from the nanometer to the micro- or even macroscopic scale. Transfer- ring this nanostructure to generate nanostructured polymers
The synthesis of dinuclear ruthenium alkenyl complexes with {Ru(CO)(Pi Pr3 )2 (L)} entities (L=Cl- in complexes Ru2 -3 and Ru2 -7; L=acetylacetonate (acac- ) in complexes Ru2 -4 and Ru2 -8) and with π-conjugated 2,7-divinylphenanthrenediyl (Ru2 -3,
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::3f0e84552f681c5d7f8bf0afbb2dfdf1
Publikováno v:
Chemistry (Weinheim an der Bergstrasse, Germany). 28(23)
The synthesis of dinuclear ruthenium alkenyl complexes with {Ru(CO)(P
Autor:
Stefan M. Schupp, Lukas Schmidt-Mende, Carola Ebenhoch, Christina Scheu, Matthias Hagner, Thomas Gänsler, Anna Frank
Publikováno v:
APL Materials, Vol 9, Iss 7, Pp 071105-071105-6 (2021)
APL Materials
APL Materials
Single nanowires and networks are considered as promising candidates for miniaturized memristive devices for brain-inspired systems. Moreover, single crystalline nanostructures are useful model systems to gain a deeper understanding in the involved s