H
Herwig Peterlik
Researcher at University of Vienna
Publications - 213
Citations - 6794
Herwig Peterlik is an academic researcher from University of Vienna. The author has contributed to research in topics: Small-angle X-ray scattering & Nanoparticle. The author has an hindex of 39, co-authored 209 publications receiving 5994 citations. Previous affiliations of Herwig Peterlik include Max F. Perutz Laboratories & University of Natural Resources and Life Sciences, Vienna.
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A reconsideration of the relationship between the crystallite size La of carbons determined by X-ray diffraction and Raman spectroscopy
TL;DR: In this article, X-ray diffraction and Raman spectroscopy data were used to evaluate carbon materials produced by pyrolyzing wood at temperatures from 400 to 2400°C and various types of commercial carbon fibers.
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From brittle to ductile fracture of bone
TL;DR: It is found that the fracture energy changes by two orders of magnitude depending on the collagen orientation, and the angle between collagen and crack propagation direction is decisive in switching between different toughening mechanisms.
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Confined linear carbon chains as a route to bulk carbyne.
Lei Shi,Philip Rohringer,Kazu Suenaga,Yoshiko Niimi,Jani Kotakoski,Jannik C. Meyer,Herwig Peterlik,Marius Wanko,S. Cahangirov,S. Cahangirov,Angel Rubio,Angel Rubio,Zachary J. Lapin,Lukas Novotny,Paola Ayala,Paola Ayala,Thomas Pichler +16 more
TL;DR: The results establish a route for the bulk production of exceptionally long and stable chains composed of more than 6,000 carbon atoms, representing an elegant forerunner towards the final goal of carbyne's bulk production.
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Chairside CAD/CAM materials. Part 1: Measurement of elastic constants and microstructural characterization.
Renan Belli,Michael Wendler,Michael Wendler,Dominique de Ligny,Maria Rita Cicconi,Anselm Petschelt,Herwig Peterlik,Ulrich Lohbauer +7 more
TL;DR: Different methodologies are compared for the measurement of elastic constants and microstructural characterization of CAD/CAM restorative materials, showing to be complementary tools in the characterization of their crystal phases.
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Determination of SWCNT diameters from the Raman response of the radial breathing mode
Hans Kuzmany,W. Plank,Martin Hulman,Ch. Kramberger,Alexander Grüneis,T. Pichler,Herwig Peterlik,Hiromichi Kataura,Y. Achiba +8 more
TL;DR: In this article, a detailed analysis of the radial breathing mode Raman response and compared to results obtained from an evaluation of optical spectra and X-ray diffraction pattern is presented.