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Colour tuning of blue electroluminescence using bipolar carbazole-oxadiazole molecules in single-active-layer organic light emitting devices (OLEDs) (2012)
Journal Article
Linton, K., Fisher, A., Pearson, C., Fox, M., Pålsson, L., Bryce, M., & Petty, M. (2012). Colour tuning of blue electroluminescence using bipolar carbazole-oxadiazole molecules in single-active-layer organic light emitting devices (OLEDs). Journal of materials chemistry, 22(23), 11816-11825. https://doi.org/10.1039/c2jm31825c

Dinuclear iridium(III) complexes of cyclometalated fluorenylpyridine ligands as phosphorescent dopants for efficient solution-processed OLEDs (2012)
Journal Article
M'hamedi, A., Batsanov, A. S., Fox, M. A., Bryce, M. R., Abdullah, K., Al-Attar, H. A., & Monkman, A. P. (2012). Dinuclear iridium(III) complexes of cyclometalated fluorenylpyridine ligands as phosphorescent dopants for efficient solution-processed OLEDs. Journal of materials chemistry, 22(27), 13529-13540. https://doi.org/10.1039/c2jm31143g

Degradable emulsion-templated scaffolds for tissue engineering from thiol– ene photopolymerisation (2012)
Journal Article
Caldwell, S., Johnson, D., Didsbury, M., Murray, B., Wu, J., Przyborski, S., & Cameron, N. (2012). Degradable emulsion-templated scaffolds for tissue engineering from thiol– ene photopolymerisation. Soft Matter, 8(40), 10344-10351. https://doi.org/10.1039/c2sm26250a

Emulsion templating has been used to prepare highly porous polyHIPE materials by thiol–ene photoinitiated network formation. Commercially available multifunctional thiols and acrylates were formulated into water-in-oil high internal phase emulsions (... Read More about Degradable emulsion-templated scaffolds for tissue engineering from thiol– ene photopolymerisation.

Electroless deposition of multi-functional zinc oxide surfaces displaying photoconductive, superhydrophobic, photowetting, and antibacterial properties (2012)
Journal Article
Wood, T., Hurst, G., Schofield, W., Thompson, R., Oswald, G., Evans, J., …Badyal, J. (2012). Electroless deposition of multi-functional zinc oxide surfaces displaying photoconductive, superhydrophobic, photowetting, and antibacterial properties. Journal of materials chemistry, 22(9), 3859-3867. https://doi.org/10.1039/c2jm14260k