Eugen Hollmann
Forschungszentrum Jülich
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Featured researches published by Eugen Hollmann.
Journal of Materials Chemistry C | 2015
Iñigo Bretos; Martina Falter; Michael Bäcker; Eugen Hollmann; R. Wördenweber; Leopoldo Molina-Luna; Gustaaf Van Tendeloo; O. Eibl
Superconducting YBa2Cu3O7−δ (YBCO) films with artificial BaZrO3 (BZO) nanodots were prepared using a chemical solution deposition method involving hybrid solutions composed of trifluoroacetate-based YBCO precursors and reverse micelle stabilized BZO nanoparticle dispersions. Microemulsion-mediated synthesis was used to obtain nano-sized (∼12 nm) and mono-dispersed BZO nanoparticles that preserve their features once introduced into the YBCO solution, as revealed by dynamic light scattering. Phase pure, epitaxial YBCO films with randomly oriented BZO nanodots distributed over their whole microstructure were grown from the hybrid solutions on (100) LaAlO3 substrates. The morphology of the YBCO–BZO nanocomposite films was strongly influenced by the amount of nanoparticles incorporated into the system, with contents ranging from 5 to 40 mol%. Scanning electron microscopy showed a high density of isolated second-phase defects consisting of BZO nanodots in the nanocomposite film with 10 mol% of BZO. Furthermore, a direct observation and quantitative analysis of lattice defects in the form of interfacial edge dislocations directly induced by the BZO nanodots was evidenced by transmission electron microscopy. The superconducting properties (77 K) of the YBCO films improved considerably by the presence of such nanodots, which seem to enhance the morphology of the sample and therefore the intergranular critical properties. The incorporation of preformed second-phase defects (here, BZO) during the growth of the superconducting phase is the main innovation of this novel approach for the all-solution based low-cost fabrication of long-length coated conductors.
Superconductor Science and Technology | 2003
R. Wördenweber; Eugen Hollmann; Michael Poltiasev; Heinz-Werner Neumüller
This paper addresses the development of a technically relevant sputter-deposition process for YBa2Cu3O7−δ films. First, the simulation of the particle transport from target to substrate indicates that only at a reduced pressure of p ≈ 1–10 Pa can a sufficiently large deposition rate and homogeneous stoichiometric distribution of the particles during large-area deposition be expected. The results of the simulations are generally confirmed by deposition experiments on CeO2 buffered sapphire and LaAlO3 substrates using a magnetron sputtering system suitable for large-area deposition. However, it is shown that in addition to the effect of scattering during particle transport, the conditions at the substrate lead to a selective growth of Y–Ba–Cu–O phases that, among others, strongly affect the growth rate. For example, the growth rate is more than three times larger for optimized parameters compared to the same set of parameters but at 100 K lower substrate temperature. Stoichiometrical and structural perfect films can be grown at low pressure (p < 10 Pa). However, the superconducting transition temperature of these films is reduced. The Tc reduction seems to be correlated with the c-axis length of YBa2Cu3O7−δ. Two possible explanations for the increased c-axis length and the correlated reduced transition temperature are discussed, i.e. reduced oxygen content and strong cation site disorder due to the heavy particle bombardment.
Physica C-superconductivity and Its Applications | 2010
Francesco Laviano; Gianluca Ghigo; Enrica Mezzetti; Eugen Hollmann; R. Wördenweber
Workshop on Oxide Electronics 22 | 2015
R. Wördenweber; J. Schubert; Yang Dai; J. Schwarzkopf; D. Braun; biya cai; Eugen Hollmann
Vortex2015 | 2015
R. Wördenweber; R. Kutzner; Eugen Hollmann
VORTEX IX - conference in school format | 2015
R. Wördenweber; Werner Hürttlen; R. Kutzner; Eugen Hollmann
International School of Oxide Electronics | 2015
biya cai; R. Wördenweber; M. Schmidbauer; Eugen Hollmann; J. Schwarzkopf; D. Braun
International School of Oxide Electronics | 2015
Yang Dai; J. Schubert; R. Wördenweber; Eugen Hollmann
DPG-Frühjahrstagung | 2015
Alexandr Markov; R. Wördenweber; Eugen Hollmann
DPG-Frühjahrstagung | 2015
biya cai; R. Wördenweber; J. Schwarzkopft; M. Schmidbauer; Eugen Hollmann