Zeitschriftenaufsätze ab 2018

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Mohamed, Sodky Hamed; Zhao, Huaping; Romanus, Henry; El-Hossary, Fayez M.; Abo EL-Kassem, M.; Awad, Madeha A.; Rabia, Mohamed; Lei, Yong
Optical, water splitting and wettability of titanium nitride/titanium oxynitride bilayer films for hydrogen generation and solar cells applications. - In: Materials science in semiconductor processing, ISSN 1873-4081, Bd. 105 (2020), 104704, insges. 7 S.

https://doi.org/10.1016/j.mssp.2019.104704
Hofbauer, Peter J.; Raether, Friedrich; Rädlein, Edda
Finite element modeling of reactive liquid silicon infiltration. - In: Journal of the European Ceramic Society, ISSN 1873-619X, Bd. 40 (2020), 2, S. 251-258

https://doi.org/10.1016/j.jeurceramsoc.2019.09.041
Behúl, Miroslav; Vojs, Marian; Marton, Marián; Michniak, Pavol; Mikolášek, Miroslav; Kurniawan, Mario; Honig, Hauke; Zyabkin, Dmitry; Oliva Ramírez, Manuel; Spieß, Lothar; Flock, Dominik; Bund, Andreas; Papula, Martin; Redhammer, Robert
Nanostructured boron doped diamond enhancing the photoelectrochemical performance of TiO2/BDD heterojunction anodes. - In: Vacuum, ISSN 0042-207X, Volume 171 (2020), 109006, Seite 1-5
Im Titel ist "2" tiefgestellt

https://doi.org/10.1016/j.vacuum.2019.109006
Yuan, Ning; Zhao, Huaping; Zheng, Chunfang; Zheng, Xianzheng; Fu, Qun; Wu, Minghong; Lei, Yong
An efficient nanopatterning strategy for controllably fabricating ultra-small gaps as a highly sensitive surface-enhanced Raman scattering platform. - In: Nanotechnology, ISSN 1361-6528, Bd. 31 (2020), 4, 045301, S. 1-8

https://doi.org/10.1088/1361-6528/ab49ac
Gon¸calves Junior, Luis Antonio; Theska, René; Lepikson, Herman A.; Ribeiro Junior, Armando Sá; Linß, Sebastian; Gräser, Philipp
Theoretical and experimental investigation of performance characteristics and design aspects of cross-spring pivots. - In: International journal of solids and structures, Bd. 185/186 (2020), S. 240-256

Cross-spring pivots have been widely employed over the last decades in a broad variety of precision engineering applications due to the high motion repeatability achieved thanks to the absence of stick slip and clearance. In this paper, the non-linear effect of the anticlastic curvature of the leaf-springs is considered for the accurate analytical modeling of the elasto-kinematic behavior of cross-spring pivots. Finite element analyses (FEA), based on a non-linear thin-shell model, are carried out in order to compare them with the analytical results for the main performance parameters of this type of device, i.e. center-shift, rotational stiffness and stress in the leaf-springs. Furthermore, an experimental setup is built to assess the applicability limits of both models. Finally, remarkable performance aspects of cross-spring pivots are discussed aiming for design improvements.



https://doi.org/10.1016/j.ijsolstr.2019.08.023
Böttcher, René; Ispas, Adriana; Bund, Andreas
Anodic dissolution of aluminum and anodic passivation in [EMIm]Cl-based ionic liquids. - In: Electrochemistry communications, ISSN 1873-1902, Bd. 115 (2020), 106720, S. 1-6

https://doi.org/10.1016/j.elecom.2020.106720
Monastyrov, Mykola; Prikhna, Tatiana; Halbedel, Bernd; Kochetov, Gennadiy; Marquis, Fernand D.S.; Mamalis, Athanasios G.; Prysiazhna, Olena
Electroerosion dispersion, sorption and coagulation for complex water purification: electroerosion waste recycling and manufacturing of metal, oxide and alloy nanopowders. - In: Nanotechnology perceptions, ISSN 2235-2074, Bd. 15 (2019), 1, S. 48-57

The application of EEDSC - electroerosion dispersion, sorption and coagulation (using in situ dispersion in plasma of aluminium or iron) - allowed efficient water purification from heavy metal ions and radioactive alkali ions (of Fe, Cr, Cu, Mo, Zn, Co, Ni, Cd, Mn, As, Sn, Pb, Al, Ba, Co, Cs and Sr) as well as from organic contamination. Intensive ozonization should be applied because of intensive foam formation as a result of complex electrohydrodynamic effects during removal of the "heavy" organic contaminants (such as from liquid waste from landfills) during EEDSC. The method of electroerosion dispersion is very effective for the production of nano and submicron powders (5 nm-3 [my]m) of metals, oxides, nitrides and carbides as well as for recycling of any conductive materials such as cemented carbides, alloys of heavy metals, metallic waste products etc. The iron oxide polyvalent magnetic nanoparticles produced by electroerosion dispersion attract considerable interest in many fields of research and application. They have high potential for applications in the field of biomedical sciences (diagnostics and therapy), ferrofluids, catalysis, coloured pigments, high-density magnetic recording, printer toners, Li-ion batteries, wastewater treatment and absorption of electromagnetic waves.



Than, Joel C. M.; Noor, Norliza M.; Saba, Luca; Rijal, Omar M.; Kassim, Rosminah M.; Yunus, Ashari; Ng, Chuen Rue; Suri, Jasjit S.
Automatic lung segmentation and interobserver variability analysis. - In: Lung imaging and CADx, (2019), S. 243-274

Kurniawan, Mario;
Galvanische Herstellung freistehender poröser Kupferschichten. - In: ZVO-Report, (2019), 5, S. 56

Dennstädt, Florian;
Optimierung der galvanischen Abscheidung von funktionellen Nickelschichten. - In: ZVO-Report, (2019), 2, S. 46