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Hierarchically structured polydimethylsiloxane films for ultra-soft neural interfaces
Osmani, B., Schift, H., Vogelsang, K., Guzman, R., Kristiansen, P. M., Crockett, R., … Müller, B. (2020). Hierarchically structured polydimethylsiloxane films for ultra-soft neural interfaces. Micro and Nano Engineering, 7, 100051 (5 pp.). https://doi.org/10.1016/j.mne.2020.100051
Conformal bacterial cellulose coatings as lubricious surfaces
Rühs, P. A., Malollari, K. G., Binelli, M. R., Crockett, R., Balkenende, D. W. R., Studart, A. R., & Messersmith, P. B. (2020). Conformal bacterial cellulose coatings as lubricious surfaces. ACS Nano, 14(4), 3885-3895. https://doi.org/10.1021/acsnano.9b09956
Monosaccharides: a ToF-SIMS reference spectra database. I. Negative polarity
Bernard, L., Crockett, R., & Kawecki, M. (2019). Monosaccharides: a ToF-SIMS reference spectra database. I. Negative polarity. Surface Science Spectra, 26(2), 025001 (23 pp.). https://doi.org/10.1116/1.5125102
Monosaccharides:a ToF-SIMS reference spectra database. II. Positive polarity
Bernard, L., Crockett, R., & Kawecki, M. (2019). Monosaccharides:a ToF-SIMS reference spectra database. II. Positive polarity. Surface Science Spectra, 26(2), 025002 (23 pp.). https://doi.org/10.1116/1.5125103
Understanding the microstructural evolution and mechanical properties of transparent Al-O-N and Al-Si-O-N films
Fischer, M., Trant, M., Thorwarth, K., Crockett, R., Patscheider, J., & Hug, H. J. (2019). Understanding the microstructural evolution and mechanical properties of transparent Al-O-N and Al-Si-O-N films. Science and Technology of Advanced Materials, 20(1), 1031-1042. https://doi.org/10.1080/14686996.2019.1666425
Combined experimental and simulation studies of cross-linked polymer brushes under shear
Singh, M. K., Kang, C., Ilg, P., Crockett, R., Kröger, M., & Spencer, N. D. (2018). Combined experimental and simulation studies of cross-linked polymer brushes under shear. Macromolecules, 51(24), 10174-10183. https://doi.org/10.1021/acs.macromol.8b01363
Unexpected equilibrium ionic distribution in cyanine/C<SUB>60</SUB> heterojunctions
Jenatsch, S., Groenewold, J., Döbeli, M., Hany, R., Crockett, R., Lübben, J., … Heier, J. (2017). Unexpected equilibrium ionic distribution in cyanine/C60 heterojunctions. Advanced Materials Interfaces, 4(5), 1600891 (8 pp.). https://doi.org/10.1002/admi.201600891
The influence of surface grafting on the growth rate of polymer chains
Kang, C., Crockett, R., & Spencer, N. D. (2016). The influence of surface grafting on the growth rate of polymer chains. Polymer Chemistry, 7(2), 302-309. https://doi.org/10.1039/C5PY01521A
Photochemical transformations in fullerene and molybdenum oxide affect the stability of bilayer organic solar cells
Zhang, H., Borgschulte, A., Castro, F. A., Crockett, R., Gerecke, A. C., Deniz, O., … Hany, R. (2015). Photochemical transformations in fullerene and molybdenum oxide affect the stability of bilayer organic solar cells. Advanced Energy Materials, 5(2), 1400734 (9 pp.). https://doi.org/10.1002/aenm.201400734
Impact of chain morphology on the lubricity of surface-grafted polysaccharides
Goren, T., Spencer, N. D., & Crockett, R. (2014). Impact of chain morphology on the lubricity of surface-grafted polysaccharides. RSC Advances, 4(41), 21497-21503. https://doi.org/10.1039/c4ra01087f
Molecular-weight determination of polymer brushes generated by SI-ATRP on flat surfaces
Kang, C., Crockett, R. M., & Spencer, N. D. (2014). Molecular-weight determination of polymer brushes generated by SI-ATRP on flat surfaces. Macromolecules, 47(1), 269-275. https://doi.org/10.1021/ma401951w
Sugars communicate through water: oriented glycans induce water structuring
Espinosa-Marzal, R. M., Fontani, G., Reusch, F. B., Roba, M., Spencer, N. D., & Crockett, R. (2013). Sugars communicate through water: oriented glycans induce water structuring. Biophysical Journal, 104(12), 2686-2694. https://doi.org/10.1016/j.bpj.2013.05.017
Adsorption and friction behavior of amphiphilic polymers on hydrophobic surfaces
Fontani, G., Gaspari, R., Spencer, N. D., Passerone, D., & Crockett, R. (2013). Adsorption and friction behavior of amphiphilic polymers on hydrophobic surfaces. Langmuir, 29(15), 4760-4771. https://doi.org/10.1021/la400263r
Influence of solutes on hydration and lubricity of dextran brushes
Goren, T., Crockett, R., & Spencer, N. D. (2012). Influence of solutes on hydration and lubricity of dextran brushes. Chimia, 66(4), 192-195. https://doi.org/10.2533/chimia.2012.192
Load-induced transitions in the lubricity of adsorbed poly(&lt;sub&gt;L&lt;/sub&gt;-lysine)-&lt;em&gt;g&lt;/em&gt;-dextran as a function of polysaccharide chain density
Rosenberg, K. J., Goren, T., Crockett, R., & Spencer, N. D. (2011). Load-induced transitions in the lubricity of adsorbed poly(L-lysine)-g-dextran as a function of polysaccharide chain density. ACS Applied Materials and Interfaces, 3(8), 3020-3025. https://doi.org/10.1021/am200521m
Latex on glass: an appropriate model for cartilage-lubrication studies?
Roba, M., Bruhin, C., Ebneter, U., Ehrbar, R., Crockett, R., & Spencer, N. D. (2010). Latex on glass: an appropriate model for cartilage-lubrication studies? Tribology Letters, 38(3), 267-273. https://doi.org/10.1007/s11249-010-9603-7
Boundary lubrication in natural articular joints
Crockett, R. (2009). Boundary lubrication in natural articular joints. Tribology Letters, 35(2), 77-84. https://doi.org/10.1007/s11249-009-9430-x
Friction, lubrication, and polymer transfer between UHMWPE and CoCrMo hip-implant materials: a fluorescence microscopy study
Crockett, R., Roba, M., Naka, M., Gasser, B., Delfosse, D., Frauchiger, V., & Spencer, N. D. (2009). Friction, lubrication, and polymer transfer between UHMWPE and CoCrMo hip-implant materials: a fluorescence microscopy study. Journal of Biomedical Materials Research. Part A, 89(4), 1011-1018. https://doi.org/10.1002/jbm.a.32036
Characterisation of amyloid nanostructures in the natural adhesive of unicellular subaerial algae
Mostaert, A. S., Giordani, C., Crockett, R., Karsten, U., Schumann, R., & Jarvis, S. P. (2009). Characterisation of amyloid nanostructures in the natural adhesive of unicellular subaerial algae. Journal of Adhesion, 85(8), 465-483. https://doi.org/10.1080/00218460902996366
Mechanically functional amyloid fibrils in the adhesive of a marine invertebrate as revealed by Raman spectroscopy and atomic force microscopy
Mostaert, A. S., Crockett, R., Kearn, G., Cherny, I., Gazit, E., Serpell, L. C., & Jarvis, S. P. (2009). Mechanically functional amyloid fibrils in the adhesive of a marine invertebrate as revealed by Raman spectroscopy and atomic force microscopy. Archives of Histology and Cytology, 72(4-5), 199-207. https://doi.org/10.1679/aohc.72.199