G. Van Tendeloo
University of Antwerp
863 Papers
9.1K Citations
G. Van Tendeloo is an academic researcher from University of Antwerp. The author has contributed to research in topics: Electron diffraction & Crystal structure. The author has an hindex of 72, co-authored 845 publications. Previous affiliations of G. Van Tendeloo include University of Birmingham & University of Caen Lower Normandy.
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Papers
Defect engineering in oxide heterostructures by enhanced oxygen surface exchange
Mark Huijben,Gertjan Koster,Michelle Kruize,Sander Wenderich,Jo Verbeeck,Sara Bals,E. Slooten,Bo Shi,Hajo Molegraaf,J.E. Kleibeuker,S. Van Aert,J. B. Goedkoop,Alexander Brinkman,D. H. A. Blank,Mark S. Golden,G. Van Tendeloo,Hans Hilgenkamp,Guus Rijnders +17 more
TL;DR: In this article, a strontium copper oxide nano-layer is proposed to suppress impurity scattering at conducting interfaces in oxide LaAlO3-SrTiO3(001) heterostructures, opening the door to high carrier mobility materials.
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Preparation, electrical and thermal properties of new exfoliated graphite-based composites
I.М. Afanasov,V.А. Morozov,Alexey V. Kepman,S.G. Ionov,A. N. Seleznev,G. Van Tendeloo,V. V. Avdeev +6 more
TL;DR: In this article, the percolation threshold of the EG/pitch conducting composites at room temperature was as low as 1.5 wt% and did notdepend on the bulk density of theEGused.
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The direct observation of discommensurations in barium sodium niobate (BSN) and its homologues
TL;DR: In this article, microscopic evidence for the presence of discommensuration walls in incommensurate ferro-electric-ferro-elastic Ba2NaNb5O15 and its homologues was presented.
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BaHfO3 artificial pinning centres in TFA-MOD-derived YBCO and GdBCO thin films
Manuela Erbe,Jens Hänisch,Ruben Hühne,T. Freudenberg,Anke Kirchner,Leopoldo Molina-Luna,Leopoldo Molina-Luna,Christian Damm,G. Van Tendeloo,Stefan Kaskel,Ludwig Schultz,Bernhard Holzapfel,Bernhard Holzapfel +12 more
TL;DR: In this paper, the authors investigated the growth of REBCO thin films containing nanometre-scale BaHfO3 (BHO) particles as pinning centres for magnetic flux lines, with emphasis on the influence of crystallization temperature and substrate on the microstructure and superconductivity.
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Long-period superstructures in Cu3±xPd
D. Broddin,G. Van Tendeloo,J. Van Landuyt,S. Amelinckx,Richard Portier,M. Guymont,A. Loiseau +6 more
TL;DR: In this article, electron microscopy and electron diffraction results on the one-dimensional long period superstructures (1D-LPS) in CU3+xPd are presented.
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