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  • (-) Empa Laboratories ≠ 304 Mechanical Systems Engineering
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Determining effective crack lengths from electrical measurements in polymer-supported thin films
Glushko, O., Putz, B., & Cordill, M. J. (2020). Determining effective crack lengths from electrical measurements in polymer-supported thin films. Thin Solid Films, 699, 137906 (7 pp.). https://doi.org/10.1016/j.tsf.2020.137906
Draw-spun, photonically annealed Ag fibers as alternative electrodes for flexible CIGS solar cells
Liu, Y., Zeder, S., Lin, S., Carron, R., Grossmann, G., Bolat, S., … Romanyuk, Y. E. (2019). Draw-spun, photonically annealed Ag fibers as alternative electrodes for flexible CIGS solar cells. Science and Technology of Advanced Materials, 20(1), 26-34. https://doi.org/10.1080/14686996.2018.1552480
<I>In situ</I> electron microscopy mechanical testing of silicon nanowires using electrostatically actuated tensile stages
Zhang, D., Breguet, J. M., Clavel, R., Sivakov, V., Christiansen, S., & Michler, J. (2010). In situ electron microscopy mechanical testing of silicon nanowires using electrostatically actuated tensile stages. Journal of Microelectromechanical Systems, 19(3), 663-674. https://doi.org/10.1109/JMEMS.2010.2044746
A nano-tensile testing system for studying nanostructures inside an electron microscope: design, characterization and application
Zhang, D. (2010). A nano-tensile testing system for studying nanostructures inside an electron microscope: design, characterization and application [Doctoral dissertation, EPF Lausanne]. https://doi.org/10.5075/epfl-thesis-4605
Development and characterisation of functionalised e-spun bio-fibres for tissue engineering
Liu, X. (2009). Development and characterisation of functionalised e-spun bio-fibres for tissue engineering [Master thesis].