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Professor DEREK IRVINE's Outputs (2)

Enhanced ‘in situ’ catalysis via microwave selective heating: catalytic chain transfer polymerisation (2014)
Journal Article
Adlington, K., McSweeney, R., Dimitrakis, G., Kingman, S. W., Robinson, J. P., & Irvine, D. J. (2014). Enhanced ‘in situ’ catalysis via microwave selective heating: catalytic chain transfer polymerisation. RSC Advances, 4(31), 16172-16180. https://doi.org/10.1039/c4ra00907j

An extremely facile, single stage, ‘in-situ’, Catalytic Chain Transfer Polymerisation (CCTP) process has been identified, where the optimal polymerisation process was shown to depend upon a combination of catalyst characteristics (i.e. solubility, se... Read More about Enhanced ‘in situ’ catalysis via microwave selective heating: catalytic chain transfer polymerisation.

Continuous and direct 'in situ' reaction monitoring of chemical reactions via dielectric property measurement: Controlled polymerisation (2014)
Journal Article
Lester, E., Kamaruddin, M. J., Nguyen, N. T., Robinson, J., El harfi, J., Irvine, D., Binner, E. R., DIMITRAKIS, G., & Kingman, S. W. (2014). Continuous and direct 'in situ' reaction monitoring of chemical reactions via dielectric property measurement: Controlled polymerisation. RSC Advances, 4(11), 5709-5717. https://doi.org/10.1039/c3ra46941g