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Dive into the research topics where Levin Dieterle is active.

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Featured researches published by Levin Dieterle.


Ultramicroscopy | 2011

Optimized Ar(+)-ion milling procedure for TEM cross-section sample preparation.

Levin Dieterle; Benjamin Butz; Erich Müller

High-quality samples are indispensable for every reliable transmission electron microscopy (TEM) investigation. In order to predict optimized parameters for the final Ar(+)-ion milling preparation step, topographical changes of symmetrical cross-section samples by the sputtering process were modeled by two-dimensional Monte-Carlo simulations. Due to its well-known sputtering yield of Ar(+)-ions and its easiness in mechanical preparation Si was used as model system. The simulations are based on a modified parameterized description of the sputtering yield of Ar(+)-ions on Si summarized from literature. The formation of a wedge-shaped profile, as commonly observed during double-sector ion milling of cross-section samples, was reproduced by the simulations, independent of the sputtering angle. Moreover, the preparation of wide, plane parallel sample areas by alternating single-sector ion milling is predicted by the simulations. These findings were validated by a systematic ion-milling study (single-sector vs. double-sector milling at various sputtering angles) using Si cross-section samples as well as two other material-science examples. The presented systematic single-sector ion-milling procedure is applicable for most Ar(+)-ion mills, which allow simultaneous milling from both sides of a TEM sample (top and bottom) in an azimuthally restricted sector perpendicular to the central epoxy line of that cross-sectional TEM sample. The procedure is based on the alternating milling of the two halves of the TEM sample instead of double-sector milling of the whole sample. Furthermore, various other practical aspects are issued like the dependency of the topographical quality of the final sample on parameters like epoxy thickness and incident angle.


Journal of Power Sources | 2011

Nanoscaled La0.6Sr0.4CoO3−δ as intermediate temperature solid oxide fuel cell cathode: Microstructure and electrochemical performance

Jan Hayd; Levin Dieterle; Uwe Guntow; D. Gerthsen; Ellen Ivers-Tiffée


Advanced Energy Materials | 2011

Microstructure of Nanoscaled La0.6Sr0.4CoO3-δ Cathodes for Intermediate-Temperature Solid Oxide Fuel Cells

Levin Dieterle; Pascal Bockstaller; D. Gerthsen; Jan Hayd; Ellen Ivers-Tiffée; Uwe Guntow


Journal of Materials Science | 2008

Structural and chemical properties of nanocrystalline La0.5Sr0.5CoO3−δ layers on yttria-stabilized zirconia analyzed by transmission electron microscopy

Levin Dieterle; David Bach; Reinhard Schneider; Heike Störmer; D. Gerthsen; U. Guntow; Ellen Ivers-Tiffée; André Weber; Christoph Peters; Harumi Yokokawa


Solid State Ionics | 2012

Decomposition pathway of cubic Ba0.5Sr0.5Co0.8Fe0.2O3 − δ between 700 °C and 1000 °C analyzed by electron microscopic techniques

Philipp Müller; Heike Störmer; Levin Dieterle; Christian Niedrig; Ellen Ivers-Tiffée; D. Gerthsen


Chemistry of Materials | 2013

Secondary Phase Formation in Ba0.5Sr0.5Co0.8Fe0.2O3–d Studied by Electron Microscopy

Philipp Müller; Heike Störmer; Matthias Meffert; Levin Dieterle; Christian Niedrig; Stefan F. Wagner; Ellen Ivers-Tiffée; D. Gerthsen


Physical Review B | 2011

I2basal plane stacking fault in GaN: Origin of the 3.32 eV luminescence band

Ingo Tischer; Martin Feneberg; M. Schirra; Hady Yacoub; R. Sauer; Klaus Thonke; Thomas Wunderer; F. Scholz; Levin Dieterle; Erich A. Müller; D. Gerthsen


Physica Status Solidi B-basic Solid State Physics | 2011

Stacking fault‐related luminescence features in semi‐polar GaN

Ingo Tischer; Martin Feneberg; M. Schirra; Hady Yacoub; R. Sauer; Klaus Thonke; Thomas Wunderer; F. Scholz; Levin Dieterle; Erich Müller; D. Gerthsen


Meeting Abstracts | 2010

Ba0.5Sr0.5Co0.8Fe0.2O3-δ for Oxygen Separation Membranes

Philipp Müller; Levin Dieterle; Erich Müller; Heike Störmer; D. Gerthsen; Christian Niedrig; Simon Taufall; Stefan F. Wagner; Ellen Ivers-Tiffée


Advanced Energy Materials | 2011

Solid Oxide Fuel Cells: Microstructure of Nanoscaled La0.6Sr0.4CoO3‐δ Cathodes for Intermediate‐Temperature Solid Oxide Fuel Cells (Adv. Energy Mater. 2/2011)

Levin Dieterle; Pascal Bockstaller; D. Gerthsen; Jan Hayd; Ellen Ivers-Tiffée; Uwe Guntow

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D. Gerthsen

Karlsruhe Institute of Technology

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Ellen Ivers-Tiffée

Karlsruhe Institute of Technology

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Heike Störmer

Karlsruhe Institute of Technology

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Jan Hayd

Karlsruhe Institute of Technology

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Erich Müller

Karlsruhe Institute of Technology

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Christian Niedrig

Karlsruhe Institute of Technology

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