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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. Advanced Science, 9(34), 2203544 (10 pp.). https://doi.org/10.1002/advs.202203544
Direct co-deposition of mono-sized nanoparticles during sputtering
Polyakov, M. N., Schoeppner, R. L., Pethö, L., Edwards, T. E. J., Thomas, K., Könnyű, B., … Michler, J. (2020). Direct co-deposition of mono-sized nanoparticles during sputtering. Scripta Materialia, 186, 387-391. https://doi.org/10.1016/j.scriptamat.2020.05.032
Increasing the thermal stability of thin films by incorporating co-sputtered nanoparticles
Pethö, L., Polyakov, M., Schoeppner, R., Thomas, K., Könnyü, B., Maeder, X., & Michler, J. (2018). Increasing the thermal stability of thin films by incorporating co-sputtered nanoparticles. Presented at the 16th international conference on plasma surface engineering. Garmisch-Partenkirchen, Germany.