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Ductile compressive behavior of biomedical alloys
Affolter, C., Thorwarth, G., Arabi-Hashemi, A., Müller, U., & Weisse, B. (2020). Ductile compressive behavior of biomedical alloys. Metals, 10(1), 60 (11 pp.). https://doi.org/10.3390/met10010060
Activation matters: hysteresis effects during electrochemical looping of colloidal Ag nanowire catalysts
Hu, H., Liu, M., Kong, Y., Mysuru, N., Sun, C., Gálvez-Vázquez, M. de J., … Broekmann, P. (2020). Activation matters: hysteresis effects during electrochemical looping of colloidal Ag nanowire catalysts. ACS Catalysis, 10(15), 8503-8514. https://doi.org/10.1021/acscatal.0c02026
Shape deformation in ion beam irradiated colloidal monolayers: an AFM investigation
Lotito, V., Karlušić, M., Jakšić, M., Tomić Luketić, K., Müller, U., Zambelli, T., & Fazinić, S. (2020). Shape deformation in ion beam irradiated colloidal monolayers: an AFM investigation. Nanomaterials, 10(3), 453 (17 pp.). https://doi.org/10.3390/nano10030453
Hierarchical porous wood cellulose scaffold with atomically dispersed Pt catalysts for low-temperature ethylene decomposition
Guo, H., Warnicke, P., Griffa, M., Müller, U., Chen, Z., Schaeublin, R., … Luković, M. (2019). Hierarchical porous wood cellulose scaffold with atomically dispersed Pt catalysts for low-temperature ethylene decomposition. ACS Nano, 13(12), 14337-14347. https://doi.org/10.1021/acsnano.9b07801
Photonic curing: activation and stabilization of metal membrane catalysts (MMCs) for the electrochemical reduction of CO<sub>2</sub>
Hou, Y., Bolat, S., Bornet, A., Romanyuk, Y. E., Guo, H., Moreno-García, P., … Broekmann, P. (2019). Photonic curing: activation and stabilization of metal membrane catalysts (MMCs) for the electrochemical reduction of CO2. ACS Catalysis, 9(10), 9518-9529. https://doi.org/10.1021/acscatal.9b03664
Doping of thiolate protected gold clusters through reaction with metal surfaces
Kazan, R., Müller, U., & Bürgi, T. (2019). Doping of thiolate protected gold clusters through reaction with metal surfaces. Nanoscale, 11(6), 2938-2945. https://doi.org/10.1039/c8nr09214a
Aluminum chloride-graphite batteries with flexible current collectors prepared from earth-abundant elements
Wang, S., Kravchyk, K. V., Filippin, A. N., Müller, U., Tiwari, A. N., Buecheler, S., … Kovalenko, M. V. (2018). Aluminum chloride-graphite batteries with flexible current collectors prepared from earth-abundant elements. Advanced Science, 5(4), 1700712 (6 pp.). https://doi.org/10.1002/advs.201700712
Highly electrochemically stable morphology of mesoscale Co<sub>3</sub>O<sub>4</sub> flowerlike oriented aggregate (FLOA) for electrocatalytic water splitting
Bora, D. K., Müller, U., Constable, E. C., & Braun, A. (2017). Highly electrochemically stable morphology of mesoscale Co3O4 flowerlike oriented aggregate (FLOA) for electrocatalytic water splitting. Journal of the Electrochemical Society, 164(7), H526-H536. https://doi.org/10.1149/2.1451707jes
Effects of gamma irradiations on reactive pulsed laser deposited vanadium dioxide thin films
Madiba, I. G., Émond, N., Chaker, M., Thema, F. T., Tadadjeu, S. I., Muller, U., … Maaza, M. (2017). Effects of gamma irradiations on reactive pulsed laser deposited vanadium dioxide thin films. Applied Surface Science, 411, 271-278. https://doi.org/10.1016/j.apsusc.2017.03.131
Thermoelectric properties of dense Sb-doped SnO<sub>2</sub> ceramics
Rubenis, K., Populoh, S., Thiel, P., Yoon, S., Müller, U., & Locs, J. (2017). Thermoelectric properties of dense Sb-doped SnO2 ceramics. Journal of Alloys and Compounds, 692, 515-521. https://doi.org/10.1016/j.jallcom.2016.09.062
Pd subnano-clusters on TiO<SUB>2</SUB> for solar-light removal of NO
Fujiwara, K., Müller, U., & Pratsinis, S. E. (2016). Pd subnano-clusters on TiO2 for solar-light removal of NO. ACS Catalysis, 6(3), 1887-1893. https://doi.org/10.1021/acscatal.5b02685
On the mechanism of hydrophilicity of graphene
Hong, G., Han, Y., Schutzius, T. M., Wang, Y., Pan, Y., Hu, M., … Poulikakos, D. (2016). On the mechanism of hydrophilicity of graphene. Nano Letters, 16(7), 4447-4453. https://doi.org/10.1021/acs.nanolett.6b01594
Silicon etch with chromium ions generated by a filtered or non-filtered cathodic arc discharge
Scopece, D., Döbeli, M., Passerone, D., Maeder, X., Neels, A., Widrig, B., … Ramm, J. (2016). Silicon etch with chromium ions generated by a filtered or non-filtered cathodic arc discharge. Science and Technology of Advanced Materials, 17(1), 20-28. https://doi.org/10.1080/14686996.2016.1140308
Compressive testing of ductile high-strength alloys
Affolter, C., Müller, U., Leinenbach, C., & Weisse, B. (2015). Compressive testing of ductile high-strength alloys. Journal of Testing and Evaluation, 43(6), 1554-1562. https://doi.org/10.1520/JTE20140301
Comparative investigation of different silane surface functionalizations of fullerene-like WS&lt;sub&gt;2&lt;/sub&gt;
Haba, D., Griesser, T., Müller, U., & Brunner, A. J. (2015). Comparative investigation of different silane surface functionalizations of fullerene-like WS2. Journal of Materials Science, 50(15), 5125-5135. https://doi.org/10.1007/s10853-015-9039-4
Magnetron sputter deposited tantalum and tantalum nitride thin films: an analysis of phase, hardness and composition
Bernoulli, D., Müller, U., Schwarzenberger, M., Hauert, R., & Spolenak, R. (2013). Magnetron sputter deposited tantalum and tantalum nitride thin films: an analysis of phase, hardness and composition. Thin Solid Films, 548, 157-161. https://doi.org/10.1016/j.tsf.2013.09.055
Hematite–NiO/α-Ni(OH)<SUB>2</SUB> heterostructure photoanode with high electrocatalytic current density and charge storage capacity
Bora, D. K., Braun, A., Erni, R., Müller, U., Döbeli, M., & Constable, E. C. (2013). Hematite–NiO/α-Ni(OH)2 heterostructure photoanode with high electrocatalytic current density and charge storage capacity. Physical Chemistry Chemical Physics, 15(30), 12648-12659. https://doi.org/10.1039/c3cp52179f
Coatings for biomedical applications
Hauert, R., Falub, C. V., Thorwarth, G., Müller, U., & Voisard, C. (2013). Coatings for biomedical applications. In Q. J. Wang & Y. W. Chung (Eds.), Vol. 1. Encyclopedia of tribology (pp. 390-396). https://doi.org/10.1007/978-0-387-92897-5_715
Analysis of the in-vivo failure of the adhesive interlayer for a DLC coated articulating metatarsophalangeal joint
Hauert, R., Thorwarth, G., Müller, U., Stiefel, M., Falub, C. V., Thorwarth, K., & Joyce, T. J. (2012). Analysis of the in-vivo failure of the adhesive interlayer for a DLC coated articulating metatarsophalangeal joint. Diamond and Related Materials, 25, 34-39. https://doi.org/10.1016/j.diamond.2012.02.001
In vitro studies of the adhesion of diamond-like carbon thin films on CoCrMo biomedical implant alloy
Falub, C. V., Müller, U., Thorwarth, G., Parlinska-Wojtan, M., Voisard, C., & Hauert, R. (2011). In vitro studies of the adhesion of diamond-like carbon thin films on CoCrMo biomedical implant alloy. Acta Materialia, 59(11), 4678-4689. https://doi.org/10.1016/j.actamat.2011.04.014
 

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