T
Torsten Fritz
Researcher at University of Jena
Publications - 167
Citations - 6875
Torsten Fritz is an academic researcher from University of Jena. The author has contributed to research in topics: Scanning tunneling microscope & Monolayer. The author has an hindex of 38, co-authored 152 publications receiving 6329 citations. Previous affiliations of Torsten Fritz include University of Hong Kong & Max Planck Society.
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Flexible 2D Crystals of Polycyclic Aromatics Stabilized by Static Distortion Waves
Matthias Meissner,Falko Sojka,Lars Matthes,Friedhelm Bechstedt,Xinliang Feng,Klaus Müllen,Stefan C. B. Mannsfeld,Roman Forker,Torsten Fritz,Torsten Fritz +9 more
TL;DR: It is shown that, due to the flexibility in the adsorbate layer, molecule–substrate energy is gained by straining the intermolecular bonds and that the resulting total energy is minimal for the observed domain orientation, constituting the orientational epitaxy.
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Erratum: “Controlled doping of phthalocyanine layers by cosublimation with acceptor molecules: A systematic seebeck and conductivity study” [Appl. Phys. Lett. 73, 3202 (1998)]
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Fully Atomistic Understanding of the Electronic and Optical Properties of a Prototypical Doped Charge-Transfer Interface
Anu Baby,Anu Baby,Marco Gruenewald,Christian Zwick,Felix Otto,Roman Forker,Gerben van Straaten,Markus Franke,Benjamin Stadtmüller,Christian Kumpf,G Brivio,Guido Fratesi,Torsten Fritz,Egbert Zojer +13 more
TL;DR: The present comprehensive study provides access to a fully characterized reference system for a well-defined metal–organic interface in the presence of dopant atoms, which can serve as an ideal benchmark for future research and applications.
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Supramolecular engineering at functionalized surfaces
Wolfgang Knoll,L. Angermaier,G. Batz,Torsten Fritz,S. Fujisawa,Taiji Furuno,H. J. Guder,Masahiko Hara,Martha Liley,Katsumi Niki,J. Spinke +10 more
TL;DR: In this article, Batz, Liley, Niki, L. Knolle, and L. W.W. Liley presented their work on the use of a multiscale model for the verification of the properties of polymers.
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Commensurism at electronically weakly interacting phthalocyanine/PTCDA heterointerfaces
Marco Gruenewald,C. Sauer,Julia Peuker,Matthias Meissner,Falko Sojka,Achim Schöll,F. Reinert,Roman Forker,Torsten Fritz +8 more
TL;DR: In this article, the adsorption of metal-phthalocyanines (MePc, Me = Sn or Cu) on 3,4,9,10-perylene-tetracarboxylic-dianhydride (PTCDA) in the form of stacked monolayers (ML) on Ag(111) was investigated.