TY - JOUR A1 - Constantinescu, B. A1 - Bugoi, R. A1 - Cojocaru, V. A1 - Radtke, Martin A1 - Calligaro, T. A1 - Salomon, J. A1 - Pichon, L. A1 - Röhrs, S. A1 - Ceccato, D. A1 - Oberländer-Târnoveanu, E. T1 - Micro-SR-XRF and micro-PIXE studies for archaeological gold identification - The case of Carpathian (Transylvanian) gold and of Dacian bracelets N2 - Trace-elements are more significant for provenancing archaeological metallic artifacts than the main components. For gold, the most promising elements are platinum group elements (PGE), Sn, Te, Sb, Hg and Pb. Several small fragments of natural Transylvanian gold – placer and primary – were studied by using micro-PIXE technique at the Legnaro National Laboratory AN2000 microbeam facility, Italy and at the AGLAE accelerator, C2RMF, Paris, France and by using micro synchrotron radiation X-ray fluorescence (micro-SR-XRF) at BESSY synchrotron, Berlin, Germany. The goal of the study was to identify the trace-elements, especially Sn, Sb and Te. A spectacular application to five Dacian gold bracelets authentication is presented (Sn and Sb traces). KW - Micro-PIXE KW - Micro-SR-XRF KW - Gold KW - Dacian bracelets KW - Transylvania PY - 2008 DO - https://doi.org/10.1016/j.nimb.2008.03.054 SN - 0168-583X SN - 1872-9584 VL - 266 IS - 10 SP - 2325 EP - 2328 PB - Elsevier CY - Amsterdam AN - OPUS4-17736 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Jegel, O. A1 - Pfitzner, F. A1 - Gazanis, A. A1 - Oberländer, J. A1 - Pütz, E. A1 - Lange, M. A1 - von der Au, Marcus A1 - Meermann, Björn A1 - Mailänder, V. A1 - Klasen, A. A1 - Heermann, R. A1 - Tremel, W. T1 - Transparent polycarbonate coated with CeO2 nanozymes repel Pseudomonas aeruginosa PA14 biofilms N2 - Highly transparent CeO2/polycarbonate surfaces were fabricated that prevent adhesion, proliferation, and the spread of bacteria. CeO2 nanoparticles with diameters of 10–15 nm and lengths of 100–200 nm for this application were prepared by oxidizing aqueous dispersions of Ce(OH)3 with H2O2 in the presence of nitrilotriacetic acid (NTA) as the capping agent. The surface-functionalized water-dispersible CeO2 nanorods showed high catalytic activity in the halogenation reactions, which makes them highly efficient functional mimics of haloperoxidases. These enzymes are used in nature to prevent the formation of biofilms through the halogenation of signaling compounds that interfere with bacterial cell–cell communication (“quorum sensing”). Bacteria-repellent CeO2/polycarbonate plates were prepared by dip-coating plasma-treated polycarbonate plates in aqueous CeO2 particle dispersions. The quasi-enzymatic activity of the CeO2 coating was demonstrated using phenol red enzyme assays. The monolayer coating of CeO2 nanorods (1.6 µg cm−2) and the bacteria repellent properties were demonstrated by atomic force microscopy, biofilm assays, and fluorescence measurements. The engineered polymer surfaces have the ability to repel biofilms as green antimicrobials on plastics, where H2O2 is present in humid environments such as automotive parts, greenhouses, or plastic containers for rainwater. KW - CeO2 KW - Nanorods KW - Nanomaterial PY - 2022 DO - https://doi.org/10.1039/D1NR03320D VL - 14 IS - 1 SP - 86 EP - 98 PB - Royal Society of Chemistry AN - OPUS4-55271 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Constantinescu, B. A1 - Bugoi, R. A1 - Cojocaru, V. A1 - Radtke, Martin A1 - Calligaro, T. A1 - Salomon, J. A1 - Pichon, L. A1 - Röhrs, S. A1 - Ceccato, D. A1 - Oberländer-Târnoveanu, E. A1 - Ionescu, C. A1 - Pop, D. T1 - Dacian bracelets and Transylvanian gold: ancient history and modern analyses KW - SRXRF KW - Gold KW - Archaeometrie KW - Authentication KW - Provenance KW - XRF KW - Micro-PIXE KW - Micro SR-XRF KW - Or KW - Authentification KW - FX PY - 2009 SN - 0399-1237 VL - 33 SP - 221 EP - 225 PB - Groupe CY - Rennes AN - OPUS4-23172 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -