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Hybrid hierarchical nanolattices with porous platinum coating
Almog, E., Sharma, A., Qi, Y., Zimmerman, J., & Rabkin, E. (2022). Hybrid hierarchical nanolattices with porous platinum coating. Acta Materialia, 225, 117552 (10 pp.). https://doi.org/10.1016/j.actamat.2021.117552
Abnormal grain growth in ultrafine grained Ni under high-cycle loading
Barrios, A., Zhang, Y., Maeder, X., Castelluccio, G., Pierron, O., & Zhu, T. (2022). Abnormal grain growth in ultrafine grained Ni under high-cycle loading. Scripta Materialia, 209, 114372 (6 pp.). https://doi.org/10.1016/j.scriptamat.2021.114372
Phase and microstructure control of electrodeposited Manganese Oxide with enhanced optical properties
Cestaro, R., Schweizer, P., Philippe, L., Maeder, X., & Serrà, A. (2022). Phase and microstructure control of electrodeposited Manganese Oxide with enhanced optical properties. Applied Surface Science, 580, 152289 (10 pp.). https://doi.org/10.1016/j.apsusc.2021.152289
Mid-infrared-perturbed molecular vibrational signatures in plasmonic nanocavities
Chikkaraddy, R., Xomalis, A., Jakob, L. A., & Baumberg, J. J. (2022). Mid-infrared-perturbed molecular vibrational signatures in plasmonic nanocavities. Light: Science & Applications, 11, 19 (9 pp.). https://doi.org/10.1038/s41377-022-00709-8
Film thickness and architecture effects in biaxially strained polymer supported Al/Mo bilayers
Cordill, M. J., Kreiml, P., Putz, B., Trost, C. O. W., Lassnig, A., Mitterer, C., … Renault, P. O. (2022). Film thickness and architecture effects in biaxially strained polymer supported Al/Mo bilayers. Materials Today Communications, 31, 103455 (11 pp.). https://doi.org/10.1016/j.mtcomm.2022.103455
Influence of interlayers on the interfacial behavior of Ag films on polymer substrates
Cordill, M. J., Paulitsch, M., Katsarelis, C., Putz, B., Lassnig, A., & Kennedy, M. S. (2022). Influence of interlayers on the interfacial behavior of Ag films on polymer substrates. Thin Solid Films, 742, 139051 (8 pp.). https://doi.org/10.1016/j.tsf.2021.139051
Thermally stable nanotwins: new heights for Cu mechanics
Edwards, T. E. J., Rohbeck, N., Huszár, E., Thomas, K., Putz, B., Polyakov, M. N., … Michler, J. (2022). Thermally stable nanotwins: new heights for Cu mechanics. Presented at the Gordon research conference on structural nanomaterials. Les Diablerets, Switzerland.
From pulsed-DCMS and HiPIMS to microwave plasma-assisted sputtering: their influence on the properties of diamond-like carbon films
Hain, C., Brown, D., Welsh, A., Wieczerzak, K., Weiss, R., Michler, J., … Nelis, T. (2022). From pulsed-DCMS and HiPIMS to microwave plasma-assisted sputtering: their influence on the properties of diamond-like carbon films. Surface and Coatings Technology, 432, 127928 (12 pp.). https://doi.org/10.1016/j.surfcoat.2021.127928
Thermal stability and mechanical deformation mechanisms in thin films - design and synthesis of architectured model nanocomposites and nanolaminates
Huszár, E., Pethö, L., Putz, B., Edwards, T., Guerra, C., & Michler, J. (2022). Thermal stability and mechanical deformation mechanisms in thin films - design and synthesis of architectured model nanocomposites and nanolaminates. Presented at the Gordon research conference on structural nanomaterials. Les Diablerets, Switzerland.
Micropillar compression of single crystal tungsten carbide, part 1: temperature and orientation dependence of deformation behaviour
Jones, H., Tong, V., Ramachandramoorthy, R., Mingard, K., Michler, J., & Gee, M. (2022). Micropillar compression of single crystal tungsten carbide, part 1: temperature and orientation dependence of deformation behaviour. International Journal of Refractory Metals and Hard Materials, 102, 105729 (12 pp.). https://doi.org/10.1016/j.ijrmhm.2021.105729
In-situ diffraction based observations of slip near phase boundaries in titanium through micropillar compression
Jun, T. S., Bhowmik, A., Maeder, X., Sernicola, G., Giovannini, T., Dolbnya, I., … Britton, B. (2022). In-situ diffraction based observations of slip near phase boundaries in titanium through micropillar compression. Materials Characterization, 184, 111695 (8 pp.). https://doi.org/10.1016/j.matchar.2021.111695
Vacuum versus ambient pressure inert gas thermogravimetry: a study of silver carboxylates
Jurczyk, J., Glessi, C., Madajska, K., Berger, L., Nyrud, J. I. K., Szymańska, I., … Utke, I. (2022). Vacuum versus ambient pressure inert gas thermogravimetry: a study of silver carboxylates. Journal of Thermal Analysis and Calorimetry, 147, 2187-2195. https://doi.org/10.1007/s10973-021-10616-6
A novel approach for nondestructive depth-resolved analysis of residual stress and grain interaction in the near-surface zone applied to an austenitic stainless steel sample subjected to mechanical polishing
Marciszko-Wiąckowska, M., Oponowicz, A., Baczmański, A., Braham, C., Wątroba, M., Wróbel, M., … Genzel, C. (2022). A novel approach for nondestructive depth-resolved analysis of residual stress and grain interaction in the near-surface zone applied to an austenitic stainless steel sample subjected to mechanical polishing. Measurement, 194, 111016 (21 pp.). https://doi.org/10.1016/j.measurement.2022.111016
Combinatorial study of phase composition, microstructure and mechanical behavior of Co-Cr-Fe-Ni nanocrystalline film processed by multiple-beam-sputtering physical vapor deposition
Nagy, P., Rohbeck, N., Widmer, R. N., Lábár, J. L., Gubicza, J., Hegedűs, Z., … Pethö, L. (2022). Combinatorial study of phase composition, microstructure and mechanical behavior of Co-Cr-Fe-Ni nanocrystalline film processed by multiple-beam-sputtering physical vapor deposition. Materials, 15(6), 2319 (20 pp.). https://doi.org/10.3390/ma15062319
Liquid metal infiltration of silicon based alloys into porous carbonaceous materials. Part II: experimental verification of modelling approaches by infiltration of Si-Zr alloy into idealized microchannels
Naikade, M., Hain, C., Kastelik, K., Brönnimann, R., Bianchi, G., Ortona, A., … Weber, L. (2022). Liquid metal infiltration of silicon based alloys into porous carbonaceous materials. Part II: experimental verification of modelling approaches by infiltration of Si-Zr alloy into idealized microchannels. Journal of the European Ceramic Society, 42(5), 1984-1994. https://doi.org/10.1016/j.jeurceramsoc.2022.01.004
Real-time in situ parallel detection of elements and molecules with TOFMS during ALD for chemical quality control of thin films
Priebe, A., Dousse, B., Tzou, C. Y., Papadopoulos, G., Utke, I., Bensaoula, A., … Guerra-Nuñez, C. (2022). Real-time in situ parallel detection of elements and molecules with TOFMS during ALD for chemical quality control of thin films. Journal of Physical Chemistry C, 126(4), 1901-1912. https://doi.org/10.1021/acs.jpcc.1c09544
Deformation of particle-strengthened metal-oxide nanolaminates on polymer
Putz, B., Sharma, A., Edwards, T., Többens, D., & Michler, J. (2022). Deformation of particle-strengthened metal-oxide nanolaminates on polymer. Presented at the Gordon research conference on structural nanomaterials. Les Diablerets, Switzerland.
Anomalous high strain rate compressive behavior of additively manufactured copper micropillars
Ramachandramoorthy, R., Kalácska, S., Poras, G., Schwiedrzik, J., Edwards, T. E. J., Maeder, X., … Michler, J. (2022). Anomalous high strain rate compressive behavior of additively manufactured copper micropillars. Applied Materials Today, 27, 101415 (11 pp.). https://doi.org/10.1016/j.apmt.2022.101415
Zener pinning effect of Tungsten nanoparticles on the grain growth and solid-state dewetting of Gold thin films
Sharma, A., Schweizer, P., Kalácska, S., della Ventura, N. M., Rabkin, E., Michler, J., & Maeder, X. (2022). Zener pinning effect of Tungsten nanoparticles on the grain growth and solid-state dewetting of Gold thin films. Presented at the Gordon research conference on structural nanomaterials. Les Diablerets, Switzerland.
Atomic layer deposition on porous substrates: from general formulation to fibrous substrates and scaling laws
Szmyt, W., Guerra-Nuñez, C., Huber, L., Dransfeld, C., & Utke, I. (2022). Atomic layer deposition on porous substrates: from general formulation to fibrous substrates and scaling laws. Chemistry of Materials, 34(1), 203-216. https://doi.org/10.1021/acs.chemmater.1c03164
 

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