J
Jo Verbeeck
Researcher at University of Antwerp
Publications - 256
Citations - 10593
Jo Verbeeck is an academic researcher from University of Antwerp. The author has contributed to research in topics: Electron & Electron energy loss spectroscopy. The author has an hindex of 44, co-authored 232 publications receiving 8893 citations. Previous affiliations of Jo Verbeeck include University of British Columbia & Rega Institute for Medical Research.
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Journal ArticleDOI
Intrinsic Thermal Instability of Methylammonium Lead Trihalide Perovskite
Bert Conings,Jeroen Drijkoningen,Nicolas Gauquelin,Aslihan Babayigit,Jan D'Haen,Lien D'Olieslaeger,Anitha Ethirajan,Jo Verbeeck,Jean Manca,Edoardo Mosconi,Filippo De Angelis,Hans-Gerd Boyen +11 more
TL;DR: In this paper, it was demonstrated that significant decomposition effects already occur during annealing of a methylammonium lead triiode perovskite at 85 °C even in inert atmosphere, thus violating international standards.
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Production and application of electron vortex beams
TL;DR: This technique is a reproducible method of creating vortex electron beams in a conventional electron microscope, and it is demonstrated how they may be used in electron energy-loss spectroscopy to detect the magnetic state of materials and describe their properties.
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Oxidation state and chemical shift investigation in transition metal oxides by EELS
TL;DR: In this article, the transition metal L 2,3 electron energy-loss spectra for a wide range of V-, Mn- and Fe-based oxides were recorded and carefully analyzed for their correlation with the formal oxidation states of transition metal ions.
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Controlled lateral anisotropy in correlated manganite heterostructures by interface-engineered oxygen octahedral coupling
Zhaoliang Liao,Mark Huijben,Zhicheng Zhong,Nicolas Gauquelin,S. Macke,S. Macke,Robert J. Green,Robert J. Green,S. Van Aert,Jo Verbeeck,G. Van Tendeloo,Karsten Held,George A. Sawatzky,Gertjan Koster,Guus Rijnders +14 more
TL;DR: Here, it is demonstrated how to manipulate magnetic and electronic anisotropic properties in manganite heterostructures by engineering the oxygen network on the unit-cell level by atomic-scale design of the oxygen octahedral rotation.
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Electronically coupled complementary interfaces between perovskite band insulators.
Mark Huijben,Guus Rijnders,Dave H.A. Blank,Sara Bals,Sandra Van Aert,Jo Verbeeck,Gustaaf Van Tendeloo,Alexander Brinkman,Hans Hilgenkamp +8 more
TL;DR: In this paper, a critical separation distance of six perovskite oxides was found, corresponding to approximately 23 A˚, below which a decrease of the interface conductivity and carrier density occurs.