Mogens Hinge
Aarhus University
69 Papers
250 Citations
Mogens Hinge is an academic researcher from Aarhus University. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 12, co-authored 47 publications. Previous affiliations of Mogens Hinge include Aalborg University.
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Papers
Using a Mediating Effect in the Electroreduction of Aryldiazonium Salts To Prepare Conducting Organic Films of High Thickness
TL;DR: In this article, an electrografting procedure for aryldiazonium-salt conducting films is described, which can be formed on glassy carbon, gold, or stainless steel in a controlled manner.
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Nitrophenyl Groups in Diazonium-Generated Multilayered Films: Which are Electrochemically Responsive?
Marcel Ceccato,Lasse Nielsen,Joseph Iruthayaraj,Mogens Hinge,Steen Uttrup Pedersen,Kim Daasbjerg +5 more
TL;DR: Cyclic voltammetric and impedance spectroscopy measurements show that the electron-transfer process at the electrode is facile and independent of film thickness and structure, consistent with the occurrence of self-mediated electron transfers throughout the film with nitrophenyl groups serving as redox stations.
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Tailoring Membrane Nanostructure and Charge Density for High Electrokinetic Energy Conversion Efficiency
Sofie Haldrup,Jacopo Catalano,Mogens Hinge,Grethe Vestergaard Jensen,Jan Skov Pedersen,Anders Bentien +5 more
TL;DR: The high absolute value of the efficiency combined with the determination of the optimal membrane morphology makes membrane-based EKEC devices a step closer to practical applications and high-performance membrane design less empirical.
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On Surface-Initiated Atom Transfer Radical Polymerization Using Diazonium Chemistry To Introduce the Initiator Layer
Joseph Iruthayaraj,Sergey Chernyy,Mie Lillethorup,Marcel Ceccato,Troels Røn,Mogens Hinge,Peter Kingshott,Flemming Besenbacher,Steen Uttrup Pedersen,Kim Daasbjerg +9 more
TL;DR: It is revealed that very thick polymer brushes, on the order of 1 μm, can be obtained at high bromine content of the initiator layer in toluene, and the ability of polymer brushes to reinitiate depends on the initial thickness and the solvent used for generating it.
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Synthesis and photovoltaic properties from inverted geometry cells and roll-to-roll coated large area cells from dithienopyrrole-based donor–acceptor polymers
Wei Yue,Thue Trofod Larsen-Olsen,Xiaolian Hu,Minmin Shi,Hongzheng Chen,Mogens Hinge,Peter Fojan,Frederik C. Krebs,Donghong Yu +8 more
TL;DR: In this article, a series of donor-acceptor low band gap polymers composed of alternating dithienopyrrole or its derivative as donors and phthalimide or thieno[3,4-c]pyrrole-4,6-dione as acceptors are synthesized by Stille coupling polymerization.
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