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PreviewIssue DateTitleAuthor(s)
2017β-Cyclodextrin- and adamantyl-substituted poly(acrylate) self-assembling aqueous networks designed for controlled complexation and release of small moleculesYan, L.; Pham, D.; Clements, P.; Lincoln, S.; Wang, J.; Guo, X.; Easton, C.
2010Tunable polymeric hydrogels assembled by competitive complexation between cyclodextrin dimers and adamantyl substituted poly(acrylate)sGuo, X.; Wang, J.; Li, L.; Chen, Q.; Zheng, L.; Pham, D.; Lincoln, S.; May, B.; Prud'homme, R.; Easton, C.
2013Diamide linked γ-cyclodextrin dimers as molecular-scale delivery systems for the medicinal pigment curcumin to prostate cancer cellsHarada, T.; Giorgio, L.; Harris, T.; Pham, D.; Ngo, H.; Need, E.; Coventry, B.; Lincoln, S.; Easton, C.; Buchanan, G.; Kee, T.
2009Dimerisation and complexation of 6-(4'-t-butylphenylamino)naphthalene-2-sulphonate by β-cyclodextrin and linked β-cyclodextrin dimersPham, D.; Clements, P.; Easton, C.; Papageorgiou, J.; Lincoln, S.; May, B.
2011Aggregation of hydrophobic substituents of poly(acrylate)s and their competitive complexation by β- and γ-cyclodextrins and their linked dimers in aqueous solutionWang, J.; Li, L.; Guo, X.; Zheng, L.; Pham, D.; Lincoln, S.; Ngo, H.; Clements, P.; May, B.; Prud'homme, R.; Easton, C.
2010Synthesis of C6A-to-C6A and C3A-to-C3A diamide linked γ-cyclodextrin dimersPham, D.; Ngo, H.; Lincoln, S.; May, B.; Easton, C.
2008¹H NMR studies of enantioselective host–guest complexation by modified β-cyclodextrins and their europium(III) complexesPham, D.; Clements, P.; Easton, C.; Lincoln, S.
2010Supramolecular Chemistry of Pyronines B and Y, β-Cyclodextrin and Linked β-Cyclodextrin DimersNgo, H.; Clements, P.; Easton, C.; Pham, D.; Lincoln, S.
2013Host–guest chemistry of linked β-cyclodextrin trimers and adamantyl substituted poly(acrylate)s in aqueous solutionNguyen, T.; Pham, D.; Lincoln, S.; Wang, J.; Guo, X.; Easton, C.; Prud'homme, R.