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  • (-) Empa Laboratories = 499 Center for X-ray Analytics
  • (-) Publication Year = 2014 - 2018
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Gold nanoparticle distribution in advanced in vitro and ex vivo human placental barrier models
Aengenheister, L., Dietrich, D., Sadeghpour, A., Manser, P., Diener, L., Wichser, A., … Buerki-Thurnherr, T. (2018). Gold nanoparticle distribution in advanced in vitro and ex vivo human placental barrier models. Journal of Nanobiotechnology, 16(1), 79 (16 pp.). https://doi.org/10.1186/s12951-018-0406-6
<em>In situ</em> XRD experiments on the growth of expanded austenite using different process gases
Balogh-Michels, Z., Faeht, A., Kleiner, S., Margraf, P., Dommann, A., & Neels, A. (2018). In situ XRD experiments on the growth of expanded austenite using different process gases. Defect and Diffusion Forum, 383, 142-146. https://doi.org/10.4028/www.scientific.net/DDF.383.142
Phase-and-amplitude recovery from a single phase-contrast image using partially spatially coherent x-ray radiation
Beltran, M. A., Paganin, D. M., & Pelliccia, D. (2018). Phase-and-amplitude recovery from a single phase-contrast image using partially spatially coherent x-ray radiation. Journal of Optics, 20(5), 055605 (5 pp.). https://doi.org/10.1088/2040-8986/aabbdd
Biofilms in 3D porous media: delineating the influence of the pore network geometry, flow and mass transfer on biofilm development
Carrel, M., Morales, V. L., Beltran, M. A., Derlon, N., Kaufmann, R., Morgenroth, E., & Holzner, M. (2018). Biofilms in 3D porous media: delineating the influence of the pore network geometry, flow and mass transfer on biofilm development. Water Research, 134, 280-291. https://doi.org/10.1016/j.watres.2018.01.059
Increasing photovoltaic performance of an organic cationic chromophore by anion exchange
Gesevičius, D., Neels, A., Jenatsch, S., Hack, E., Viani, L., Athanasopoulos, S., … Heier, J. (2018). Increasing photovoltaic performance of an organic cationic chromophore by anion exchange. Advanced Science, 5(2), 1700496 (9 pp.). https://doi.org/10.1002/advs.201700496
Superweak coordinating anion as superstrong enhancer of cyanine organic semiconductor properties
Gesevičius, D., Neels, A., Yakunin, S., Hack, E., Kovalenko, M. V., Nüesch, F., & Heier, J. (2018). Superweak coordinating anion as superstrong enhancer of cyanine organic semiconductor properties. ChemPhysChem, 19(24), 3356-3363. https://doi.org/10.1002/cphc.201800863
Intracellular ROS induction by Ag<span/>@ZnO core-shell nanoparticles: frontiers of permanent optically active holes in breast cancer theranostic
Ghaemi, B., Shaabani, E., Najafi-Taher, R., Jafari Nodooshan, S., Sadeghpour, A., Kharrazi, S., & Amani, A. (2018). Intracellular ROS induction by Ag@ZnO core-shell nanoparticles: frontiers of permanent optically active holes in breast cancer theranostic. ACS Applied Materials and Interfaces, 10(29), 24370-24381. https://doi.org/10.1021/acsami.8b03822
Fabrication of a ball end nose micro milling tool by tangential laser ablation
Hajri, M., Pfaff, J., Büttner, H., Voegtlin, M., Kaufmann, R., & Wegener, K. (2018). Fabrication of a ball end nose micro milling tool by tangential laser ablation. In L. Monostori, G. Stepan, & D. Bachrathy (Eds.), Procedia CIRP: Vol. 77. 8th CIRP conference on high performance cutting (HPC 2018) (pp. 654-657). https://doi.org/10.1016/j.procir.2018.08.184
Creating a reference database of cargo inspection X-ray images using high energy radiographs of cargo mock-ups
Kolokytha, S., Flisch, A., Lüthi, T., Plamondon, M., Visser, W., Schwaninger, A., … Slegt, M. (2018). Creating a reference database of cargo inspection X-ray images using high energy radiographs of cargo mock-ups. Multimedia Tools and Applications, 77(8), 9379-9391. https://doi.org/10.1007/s11042-017-4937-x
Prediction of crack induced failure phenomena in rolling operations
Komischke, T., Hora, P., Domani, G., Plamondon, M., & Kaufmann, R. (2018). Prediction of crack induced failure phenomena in rolling operations. In Kichiro Mori, Y. Abe, & T. Maeno (Eds.), Procedia manufacturing: Vol. 15. Proceedings of the 17th international conference on metal forming 2018 (pp. 176-184). https://doi.org/10.1016/j.promfg.2018.07.192
Digital breast tomosynthesis: systems, characterization and simulation
Konstantinidis, A., Kolokytha, S., & Hadjipanteli, A. (2018). Digital breast tomosynthesis: systems, characterization and simulation. In M. Abreu de Souza, H. R. Gamba, & H. Pedrini (Eds.), Multi-modality imaging. Applications and computational techniques (pp. 159-189). https://doi.org/10.1007/978-3-319-98974-7_7
Improvement of a compact fast neutron generator for imaging applications
Kromer, H., Adams, R., Soubelet, B., Zboray, R., & Prasser, H. M. (2018). Improvement of a compact fast neutron generator for imaging applications. In 2018 IEEE Nuclear Science Symposium and Medical Imaging Conference, NSS/MIC 2018 - Proceedings. 2018 IEEE nuclear science symposium and medical imaging conference (NSS/MIC). Conference Proceedings (p. 8824470 (3 pp.). https://doi.org/10.1109/NSSMIC.2018.8824470
Global small-angle X-ray scattering data analysis of triacylglycerols in the <i>α</i>-phase (part II)
Ladd Parada, M., Sadeghpour, A., Vieira, J., Povey, M., & Rappolt, M. (2018). Global small-angle X-ray scattering data analysis of triacylglycerols in the α-phase (part II). Journal of Physical Chemistry B, 122(45), 10330-10336. https://doi.org/10.1021/acs.jpcb.8b06708
Cyanine platelet single crystals: growth, crystal structure and optical spectra
Leclaire, N. A., Li, M., Véron, A. C., Neels, A., Heier, J., Reimers, J. R., & Nüesch, F. A. (2018). Cyanine platelet single crystals: growth, crystal structure and optical spectra. Physical Chemistry Chemical Physics, 20(46), 29166-29173. https://doi.org/10.1039/C8CP06034G
Lattice tilt and strain mapped by X-ray scanning nanodiffraction in compositionally graded SiGe/Si microcrystals
Meduňa, M., Isa, F., Jung, A., Marzegalli, A., Albani, M., Isella, G., … von Känel, H. (2018). Lattice tilt and strain mapped by X-ray scanning nanodiffraction in compositionally graded SiGe/Si microcrystals. Journal of Applied Crystallography, 51(2), 368-385. https://doi.org/10.1107/S1600576718001450
Differentiation of dental restorative materials combining energy-dispersive X-ray fluorescence spectroscopy and post-mortem CT
Merriam, T., Kaufmann, R., Ebert, L., Figi, R., Erni, R., Pauer, R., & Sieberth, T. (2018). Differentiation of dental restorative materials combining energy-dispersive X-ray fluorescence spectroscopy and post-mortem CT. Forensic Science, Medicine, and Pathology, 14(2), 163-173. https://doi.org/10.1007/s12024-018-9979-5
Correlating diameter, mechanical and structural properties of poly (<small>L</small>-lactide) fibres from needleless electrospinning
Morel, A., Domaschke, S., Urundolil Kumaran, V., Alexeev, D., Sadeghpour, A., Ramakrishna, S. N., … Fortunato, G. (2018). Correlating diameter, mechanical and structural properties of poly (L-lactide) fibres from needleless electrospinning. Acta Biomaterialia, 81, 169-183. https://doi.org/10.1016/j.actbio.2018.09.055
Use of photon scattering interactions in diagnosis and treatment of disease
Moss, R., Guiterrez, A., Amin, A., Crews, C., Speller, R., Iacoviello, F., … Kolokytha, S. (2018). Use of photon scattering interactions in diagnosis and treatment of disease. In M. Abreu de Souza, H. R. Gamba, & H. Pedrini (Eds.), Multi-modality imaging. Applications and computational techniques (pp. 135-158). https://doi.org/10.1007/978-3-319-98974-7_6
Epitaxial thin films as a model system for Li-Ion conductivity in Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub>
Pagani, F., Stilp, E., Pfenninger, R., Reyes, E. C., Remhof, A., Balogh-Michels, Z., … Battaglia, C. (2018). Epitaxial thin films as a model system for Li-Ion conductivity in Li4Ti5O12. ACS Applied Materials and Interfaces, 10(51), 44494-44500. https://doi.org/10.1021/acsami.8b16519
Nodal-line dynamics via exact polynomial solutions for coherent waves traversing aberrated imaging systems
Paganin, D. M., Beltran, M. A., & Petersen, T. C. (2018). Nodal-line dynamics via exact polynomial solutions for coherent waves traversing aberrated imaging systems. Optics Letters, 43(5), 975-978. https://doi.org/10.1364/OL.43.000975
 

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