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Highly conductive single-molecule wires with controlled orientation by coordination of metalloporphyrins
Aragonès, A. C., Darwish, N., Saletra, W. J., Pérez-García, L., Sanz, F., Puigmartí-Luis, J., … Díez-Pérez, I. (2014). Highly conductive single-molecule wires with controlled orientation by coordination of metalloporphyrins. Nano Letters, 14(8), 4751-4756. https://doi.org/10.1021/nl501884g
The effect of molecular weight on the material properties of biosynthesized poly(4-hydroxybutyrate)
Boesel, L. F., Le Meur, S., Thöny-Meyer, L., & Ren, Q. (2014). The effect of molecular weight on the material properties of biosynthesized poly(4-hydroxybutyrate). International Journal of Biological Macromolecules, 71, 124-130. https://doi.org/10.1016/j.ijbiomac.2014.04.015
The effect of a helmet on cognitive performance is, at worst, marginal: a controlled laboratory study
Bogerd, C. P., Walker, I., Brühwiler, P. A., & Rossi, R. M. (2014). The effect of a helmet on cognitive performance is, at worst, marginal: a controlled laboratory study. Applied Ergonomics, 45(3), 671-676. https://doi.org/10.1016/j.apergo.2013.09.009
Environmentally controlled emulsion electrospinning
Camerlo, A., Vebert-Nardin, C., Rossi, R. M., & Bühlmann, A. M. (2014). Environmentally controlled emulsion electrospinning. In The fiber society spring 2014 technical conference. Fibers for progress (p. (2 pp.). The Fiber Society.
Environmentally controlled emulsion electrospinning for the encapsulation of temperature-sensitive compounds
Camerlo, A., Bühlmann-Popa, A. M., Vebert-Nardin, C., Rossi, R. M., & Fortunato, G. (2014). Environmentally controlled emulsion electrospinning for the encapsulation of temperature-sensitive compounds. Journal of Materials Science, 49(23), 8154-8162. https://doi.org/10.1007/s10853-014-8524-5
Microscopic contact area and friction between medical textiles and skin
Derler, S., Rotaru, G. M., Ke, W., El Issawi-Frischknecht, L., Kellenberger, P., Scheel-Sailer, A., & Rossi, R. M. (2014). Microscopic contact area and friction between medical textiles and skin. Journal of the Mechanical Behavior of Biomedical Materials, 38, 114-125. https://doi.org/10.1016/j.jmbbm.2014.06.014
Molecular weight driven structure formation of PEG based e-spun polymer blend fibers
Fortunato, G., Guex, A. G., Popa, A. M., Rossi, R. M., & Hufenus, R. (2014). Molecular weight driven structure formation of PEG based e-spun polymer blend fibers. Polymer, 55(14), 3139-3148. https://doi.org/10.1016/j.polymer.2014.04.053
Preparation of lignin nanoparticles by chemical modification
Gilca, I. A., Ghitescu, R. E., Puitel, A. C., & Popa, V. I. (2014). Preparation of lignin nanoparticles by chemical modification. Iranian Polymer Journal, 23(5), 355-363. https://doi.org/10.1007/s13726-014-0232-0
Covalent immobilisation of VEGF on plasma-coated electrospun scaffolds for tissue engineering applications
Guex, A. G., Hegemann, D., Giraud, M. N., Tevaearai, H. T., Popa, A. M., Rossi, R. M., & Fortunato, G. (2014). Covalent immobilisation of VEGF on plasma-coated electrospun scaffolds for tissue engineering applications. Colloids and Surfaces B: Biointerfaces, 123, 724-733. https://doi.org/10.1016/j.colsurfb.2014.10.016
Fasern zur Regeneration von Muskelgewebe
Guex, G. A., Fortunato, G., & Rossi, R. (2014). Fasern zur Regeneration von Muskelgewebe. Technical Textiles, 57(1), 24-25.
Fibers for muscle tissue regeneration
Guex, A. G., Fortunato, G., & Rossi, R. M. (2014). Fibers for muscle tissue regeneration. Technical Textiles, 57(2), E50-E51.
Plasma-functionalized electrospun matrix for biograft development and cardiac function stabilization
Guex, A. G., Frobert, A., Valentin, J., Fortunato, G., Hegemann, D., Cook, S., … Giraud, M. N. (2014). Plasma-functionalized electrospun matrix for biograft development and cardiac function stabilization. Acta Biomaterialia, 10(7), 2996-3006. https://doi.org/10.1016/j.actbio.2014.01.006
Möglichkeiten, Grenzen und Chancen für das Laserdurchstrahlschweissen
Haag, A. (2014). Möglichkeiten, Grenzen und Chancen für das Laserdurchstrahlschweissen. Textilplus, 2(7-8), 37-40.
Considering the degradation effects of amino-functional plasma polymer coatings for biomedical application
Hegemann, D., Hanselmann, B., Guimond, S., Fortunato, G., Giraud, M. N., & Guex, A. G. (2014). Considering the degradation effects of amino-functional plasma polymer coatings for biomedical application. Surface and Coatings Technology, 255, 90-95. https://doi.org/10.1016/j.surfcoat.2014.01.054
Relationship between the friction and microscopic contact behavior of a medical compression stocking at different strains
Ke, W., Rotaru, G. M., Hu, J. Y., Ding, X., Rossi, R. M., & Derler, S. (2014). Relationship between the friction and microscopic contact behavior of a medical compression stocking at different strains. Tribology Letters, 56(3), 457-470. https://doi.org/10.1007/s11249-014-0422-0
An optical fibre-based sensor for respiratory monitoring
Krehel, M., Schmid, M., Rossi, R. M., Boesel, L. F., Bona, G. L., & Scherer, L. J. (2014). An optical fibre-based sensor for respiratory monitoring. Sensors, 14(7), 13088-13101. https://doi.org/10.3390/s140713088
Development of a luminous textile for reflective pulse oximetry measurements
Krehel, M., Wolf, M., Boesel, L. F., Rossi, R. M., Bona, G. L., & Scherer, L. J. (2014). Development of a luminous textile for reflective pulse oximetry measurements. Biomedical Optics Express, 5(8), 2537-2547. https://doi.org/10.1364/BOE.5.002537
Laserschweißmaschine zum Endlosschweißen textiler Laminate
Lehmeier, F. K., Weder, M., Camenzind, M., & Haag, A. (2014). Laserschweißmaschine zum Endlosschweißen textiler Laminate. Technical Textiles, 57(2), 80-82.
Effects of calendering and milling processes on clothing comfort properties of suit fabrics
Mert, E., Oǧlakcioǧlu, N., Bal, Ş., & Marmarali, A. (2014). Effects of calendering and milling processes on clothing comfort properties of suit fabrics. Tekstil ve Konfeksiyon, 24(2), 212-218.
HPLC and Ultra HPLC: Basic Concepts
Meyer, V. R. (2014). HPLC and Ultra HPLC: Basic Concepts. In R. A. Meyers (Ed.), Encyclopedia of analytical chemistry (pp. 1-20). https://doi.org/10.1002/9780470027318.a9908