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Stainless steel-like FeCrNi nanostructures <em>via</em> electrodeposition into AAO templates using a mixed-solvent Cr(III)-based electrolyte
Bertero, E., Manzano, C. V., Bürki, G., & Philippe, L. (2020). Stainless steel-like FeCrNi nanostructures via electrodeposition into AAO templates using a mixed-solvent Cr(III)-based electrolyte. Materials and Design, 190, 108559 (7 pp.). https://doi.org/10.1016/j.matdes.2020.108559
Hydrothermal and mechanical stresses degrade fiber-matrix interfacial bond strength in dental fiber-reinforced composites
Bouillaguet, S., Schütt, A., Alander, P., Schwaller, P., Buerki, G., Michler, J., … Krejci, I. (2006). Hydrothermal and mechanical stresses degrade fiber-matrix interfacial bond strength in dental fiber-reinforced composites. Journal of Biomedical Materials Research. Part B Applied Biomaterials, 76B(1), 98-105. https://doi.org/10.1002/jbm.b.30349
Fragmentation test of oxide thin films deposited by atomic layer deposition
Chawla, V., Schär, T., Wehrs, J., Frey, D., Bürki, G., Böll, A., … Chaaya, A. A. (2014). Fragmentation test of oxide thin films deposited by atomic layer deposition. Presented at the BalticALD 2014. Helsinki, Finnland.
In situ indentation testing of elastomers
Deuschle, J. K., Buerki, G., Deuschle, H. M., Enders, S., Michler, J., & Arzt, E. (2008). In situ indentation testing of elastomers. Acta Materialia, 56(16), 4390-4401. https://doi.org/10.1016/j.actamat.2008.05.003
Pulse electrodeposition of adherent nickel coatings onto anodized aluminium surfaces
Frantz, C., Vichery, C., Zechner, J., Frey, D., Bürki, G., Cebeci, H., … Philippe, L. (2015). Pulse electrodeposition of adherent nickel coatings onto anodized aluminium surfaces. Applied Surface Science, 330, 39-47. https://doi.org/10.1016/j.apsusc.2014.12.091
Deformation mechanisms of silicon during nanoscratching
Gassilloud, R., Ballif, C., Gasser, P., Buerki, G., & Michler, J. (2005). Deformation mechanisms of silicon during nanoscratching. Physica Status Solidi A: Applications and Materials, 202(15), 2858-2869. https://doi.org/10.1002/pssa.200521259
Interfacial characterisation of MMCs and CMCs using a SEM-Pushout technique
Janczak, J., Bürki, G., & Rohr, L. (1997). Interfacial characterisation of MMCs and CMCs using a SEM-Pushout technique. M. Fuentes, J. M. Martínez-Esnaola, & A. M. Daniel (Eds.), Key engineering materials: Vol. 127-131. (pp. 623-630). Presented at the First international conference on ceramic and metal matrix composites, CMMC 96. https://doi.org/10.4028/www.scientific.net/KEM.127-131.623
The use of a push-out technique for the determination of interfacial properties of metal-matrix-composites
Janczak, J., Stackpole, R., Bürki, G., & Rohr, L. (1996). The use of a push-out technique for the determination of interfacial properties of metal-matrix-composites. In U. Meier & M. A. Erath (Eds.), Success of materials by combination. Proceedings of the 17th international SAMPE Europe conference (pp. 417-426). SAMPE Europe.
Colour control of metal-anodic aluminium oxide-Al nanostructures by morphological parameters of self-ordered anodic aluminium oxide films
Manzano, C. V., Pethö, L., Bürki, G., Michler, J., & Philippe, L. (2017). Colour control of metal-anodic aluminium oxide-Al nanostructures by morphological parameters of self-ordered anodic aluminium oxide films. Presented at the Anodize it! 2017 Conference. Toulouse, France.
A set of empirical equations describing the observed colours of metal-anodic aluminium oxide-Al nanostructures
Manzano, C. V., Schwiedrzik, J. J., Bürki, G., Pethö, L., Michler, J., & Philippe, L. (2020). A set of empirical equations describing the observed colours of metal-anodic aluminium oxide-Al nanostructures. Beilstein Journal of Nanotechnology, 11, 798-806. https://doi.org/10.3762/bjnano.11.64
Determining the diffusion mechanism for high aspect ratio ZnO nanowires electrodeposited into anodic aluminum oxide
Manzano, C. V., Bürki, G., Pethö, L., Michler, J., & Philippe, L. (2017). Determining the diffusion mechanism for high aspect ratio ZnO nanowires electrodeposited into anodic aluminum oxide. Journal of Materials Chemistry C, 5(7), 1706-1713. https://doi.org/10.1039/C6TC04921D
High aspect-ratio nanocrystalline CuNi T-structures and micro-gears: synthesis, numerical modeling and characterization
Manzano, C. V., Schürch, P., Pethö, L., Bürki, G., Michler, J., & Philippe, L. (2019). High aspect-ratio nanocrystalline CuNi T-structures and micro-gears: synthesis, numerical modeling and characterization. Journal of the Electrochemical Society, 166(10), E310-E316. https://doi.org/10.1149/2.0961910jes
Controlling the color and effective refractive index of metal-anodic aluminum oxide (AAO)-Al nanostructures: morphology of AAO
Manzano, C. V., Ramos, D., Pethö, L., Bürki, G., Michler, J., & Philippe, L. (2018). Controlling the color and effective refractive index of metal-anodic aluminum oxide (AAO)-Al nanostructures: morphology of AAO. Journal of Physical Chemistry C, 122(1), 957-963. https://doi.org/10.1021/acs.jpcc.7b11131
Towards fracture mechanics of thermally sprayed metallic coatings using indentation technique for edge chipping on a micron scale
Margadant, N., Bürki, G., & Siegmann, S. (2002). Towards fracture mechanics of thermally sprayed metallic coatings using indentation technique for edge chipping on a micron scale. In E. Lugscheider (Ed.), ITSC proceedings. Conference proceedings ITSC 2002 (pp. 610-616). https://doi.org/10.31399/asm.cp.itsc2002p0610
A comparison of microtensile and microcompression methods for studying plastic properties of nanocrystalline electrodeposited nickel at different length scales
Philippe, L., Schwaller, P., Bürki, G., & Michler, J. (2008). A comparison of microtensile and microcompression methods for studying plastic properties of nanocrystalline electrodeposited nickel at different length scales. Journal of Materials Research, 23(5), 1383-1388. https://doi.org/10.1557/jmr.2008.0162
The matrix effect in TOF-SIMS analysis of two-element inorganic thin films
Priebe, A., Xie, T., Bürki, G., Pethö, L., & Johann, M. (2020). The matrix effect in TOF-SIMS analysis of two-element inorganic thin films. Journal of Analytical Atomic Spectrometry, 35(6), 1156 (11 pp.). https://doi.org/10.1039/C9JA00428A
Electrophoretic deposition of zirconia-Bioglass<SUP>®</SUP> composite coatings for biomedical implants
Radice, S., Kern, P., Bürki, G., Michler, J., & Textor, M. (2007). Electrophoretic deposition of zirconia-Bioglass® composite coatings for biomedical implants. Journal of Biomedical Materials Research. Part A, 82(2), 436-444. https://doi.org/10.1002/jbm.a.31162
Deformation of the compound middle lamella in spruce latewood by micro-pillar compression of double cell walls
Raghavan, R., Adusumalli, R. B., Buerki, G., Hansen, S., Zimmermann, T., & Michler, J. (2012). Deformation of the compound middle lamella in spruce latewood by micro-pillar compression of double cell walls. Journal of Materials Science, 47(16), 6125-6130. https://doi.org/10.1007/s10853-012-6531-y
On the development of an in-situ SEM-nanoindentation system
Rzepiejewska-Malyska, K., Major, R. C., Cyrankowski, E., Buerki, G., Asif, S. A. S., & Michler, J. (2007). On the development of an in-situ SEM-nanoindentation system. Presented at the Workshop on in-situ methods in nanomechanics. San Francisco, USA.
In situ mechanical observations during nanoindentation inside a high-resolution scanning electron microscope
Rzepiejewska-Malyska, K. A., Buerki, G., Michler, J., Major, R. C., Cyrankowski, E., Asif, S. A. S., & Warren, O. L. (2008). In situ mechanical observations during nanoindentation inside a high-resolution scanning electron microscope. Journal of Materials Research, 23(7), 1973-1979. https://doi.org/10.1557/JMR.2008.0240