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<em>In situ</em> oxidation studies of Cu thin films: growth kinetics and oxide phase evolution
Unutulmazsoy, Y., Cancellieri, C., Chiodi, M., Siol, S., Lin, L., & Jeurgens, L. P. H. (2020). In situ oxidation studies of Cu thin films: growth kinetics and oxide phase evolution. Journal of Applied Physics, 127(6), 065101 (11 pp.). https://doi.org/10.1063/1.5131516
Direct synthesis of antimicrobial coatings based on tailored bi-elemental nanoparticles
Benetti, G., Cavaliere, E., Canteri, A., Landini, G., Rossolini, G. M., Pallecchi, L., … Gavioli, L. (2017). Direct synthesis of antimicrobial coatings based on tailored bi-elemental nanoparticles. APL Materials, 5(10), 036105 (7 pp.). https://doi.org/10.1063/1.4978772
The effect of thermal treatment on the stress state and evolving microstructure of Cu/W nano-multilayers
Cancellieri, C., Moszner, F., Chiodi, M., Yoon, S., Janczak-Rusch, J., & Jeurgens, L. P. H. (2016). The effect of thermal treatment on the stress state and evolving microstructure of Cu/W nano-multilayers. Journal of Applied Physics, 120(19), 195107 (9 pp.). https://doi.org/10.1063/1.4967992
Massive Ag migration through metal/ceramic nano-multilayers: an interplay between temperature, stress-relaxation and oxygen-enhanced mass transport
Chiodi, M., Cancellieri, C., Moszner, F., Mariusz Andrzejczuk, M., Janczak-Rusch, J., & Jeurgens, L. P. H. (2016). Massive Ag migration through metal/ceramic nano-multilayers: an interplay between temperature, stress-relaxation and oxygen-enhanced mass transport. Journal of Materials Chemistry C, 4(22), 4927-4938. https://doi.org/10.1039/c6tc01098a
Nano-structured Cu/W brazing fillers for advanced joining applications
Moszner, F., Cancellieri, C., Becker, C., Chiodi, M., Janczak-Rusch, J., & Jeurgens, L. P. H. (2016). Nano-structured Cu/W brazing fillers for advanced joining applications. Journal of Materials Science and Engineering B, 6(9-10), 226-230. https://doi.org/10.17265/2161-6221/2016.9-10.003