J
Juergen Eckert
Researcher at University of Leoben
Publications - 41
Citations - 1291
Juergen Eckert is an academic researcher from University of Leoben. The author has contributed to research in topics: Graphene & Alloy. The author has an hindex of 16, co-authored 41 publications receiving 1050 citations. Previous affiliations of Juergen Eckert include Leibniz Association & Austrian Academy of Sciences.
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Journal ArticleDOI
Free-Standing Single-Atom-Thick Iron Membranes Suspended in Graphene Pores
Jiong Zhao,Qingming Deng,Alicja Bachmatiuk,Alicja Bachmatiuk,Gorantla Sandeep,Alexey A. Popov,Juergen Eckert,Juergen Eckert,Mark H. Rümmeli +8 more
TL;DR: A free-standing crystalline single-atom-thick layer of iron (Fe) is shown using in situ low-voltage aberration-corrected transmission electron microscopy and supporting image simulations to pave the way for new 2D structures to be formed in graphene membranes.
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Effect of Powder Particle Shape on the Properties of In Situ Ti–TiB Composite Materials Produced by Selective Laser Melting
Hooyar Attar,Konda Gokuldoss Prashanth,Lai-Chang Zhang,Mariana Calin,I.V. Okulov,Sergio Scudino,Chao Yang,Juergen Eckert +7 more
TL;DR: In this paper, a starting powder mixture influenced by milling time and its effect on the particle morphology (especially the shape) and, consequently, density and compression properties of in situ Ti-TiB composite materials produced by selective laser melting (SLM) technology was studied.
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Self-Terminating Confinement Approach for Large-Area Uniform Monolayer Graphene Directly over Si/SiOx by Chemical Vapor Deposition
Jinbo Pang,Rafael G. Mendes,Pawel S. Wrobel,Michal D. Wlodarski,Huy Q. Ta,Liang Zhao,Lars Giebeler,Barbara Trzebicka,Thomas Gemming,Lei Fu,Zhongfan Liu,Juergen Eckert,Juergen Eckert,Alicja Bachmatiuk,Mark H. Rümmeli +14 more
TL;DR: This CVD approach is easily scalable and will make graphene formation directly on Si wafers competitive against that from metal substrates, which suffer from transfer.
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Hybrid nanostructured aluminum alloy with super-high strength
Zhi Wang,Rui T. Qu,Sergio Scudino,Bao A. Sun,Konda Gokuldoss Prashanth,Dmitri V. Louzguine-Luzgin,Ming W. Chen,Zhe F. Zhang,Juergen Eckert,Juergen Eckert +9 more
TL;DR: Wang et al. as mentioned in this paper reported a bulk hybrid nanostructured Al alloy with high strength at both room temperature and elevated temperatures, and attributed the strengthening mechanism to the composite effect of the high-strength nanocrystalline fcc-Al and nano-sized intermetallics as well as to the confinement effect between these nano phases.
Journal ArticleDOI
CVD growth of 1D and 2D sp 2 carbon nanomaterials
Jinbo Pang,Alicja Bachmatiuk,Imad Ibrahim,Lei Fu,Daniela Plachá,Grazyna Simha Martynkova,Barbara Trzebicka,Thomas Gemming,Juergen Eckert,Mark H. Rümmeli,Mark H. Rümmeli +10 more
TL;DR: In this paper, the authors review the CVD fabrication of graphene and carbon nanotubes and compare the performance of thermal CVD and plasma-enhanced CVD, including coverage of kinetics, thermodynamics, catalyst choice and other aspects of growth as well as post production treatments.