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PreviewIssue DateTitleAuthor(s)
1995Complexes of fluorinated amino acid derivatives and hexakis (2,3,6-tri-O-methyl a-cyclodextrin) in aqueous solution. A 19F nuclear magnetic resonance studyBrown, S.; Easton, C.; Lincoln, S.
2004Molecular reactors and machines - Applications, potential, and limitationsEaston, C.; Lincoln, S.; Barr, L.; Onagi, H.
1998Inclusion Complexes of the CyclodextrinsLincoln, S.; Easton, C.
2000Binary and ternary metallo-b-cyclodextrins of 6A-[Bis(carboxylatomethyl)amino}-6A-deoxy-b-cyclodextrinSandow, M.; May, B.; Easton, C.; Lincoln, S.
2004Intra- and intermolecular complexation in C(6) monoazacoronand substituted cyclodextrinsLock, J.; May, B.; Clements, P.; Lincoln, S.; Easton, C.
2001A preparative and solution study of a modified β-cyclodextrin and its europium(III) complex, and their interactions with racemic amino acid anionsKean, S.; Easton, C.; Lincoln, S.; Parker, D.
2000Metallo-b-cyclodextrins of 6A-(2-(2-(2-aminoethylamino)-ethylamino)ethylamino)-6A-deoxy-b-cyclodextrin and 6A-deoxy-6A-(1,4,7,10-tetraazacyclododecan-1-yl)-b-cyclodextrin: Their formation and complexation of (R)- and (S)-tryptophan and tryptophanate in aqueous solutionKean, S.; Easton, C.; Lincoln, S.
2003Diazacoronand linked β-cyclodextrin dimer complexes of Brilliant Yellow tetraanion and their sodium(I) analoguesWest, L.; Wyness, O.; May, B.; Clements, P.; Lincoln, S.; Easton, C.
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.
2015A cyclodextrin-based photoresponsive molecular gate that functions independently of either solvent or potentially competitive guestsLoh, K.; Smith, N.; Onagi, H.; Lincoln, S.; Easton, C.