Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/17928
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Type: Journal article
Title: Cyclodextrin molecular reactors
Author: Barr, L.
Dumanski, P.
Easton, C.
Harper, J.
Lee, K.
Lincoln, S.
Meyer, A.
Simpson, J.
Citation: Journal of Inclusion Phenomena and Macrocyclic Chemistry, 2004; 50(1):19-24
Publisher: Kluwer Academic Publ
Issue Date: 2004
ISSN: 1388-3127
0923-0750
Statement of
Responsibility: 
Lorna Barr, Paul G. Dumanski, Christopher J. Easton, Jason B. Harper, Kitty Lee, Stephen F. Lincoln, Adam G. Meyer and Jamie S. Simpson
Abstract: The ability of cyclodextrins to form inclusion complexes with hydrophobic species in aqueous solution makes them well-suited to the development of molecular reactors, to be used as miniature reaction vessels in order to control the outcomes of chemical transformations at the molecular level. In this manner, reaction rates can be increased and products may be obtained that are different to those normally accessible from reactions in free solution. Examples used to illustrate these effects include: the application of cyclodextrins to control the regioselectivity of bromination of aromatic substrates with pyridinium dichlorobromate: the use of a metallocyclodextrin to increase the rate of hydrolysis of a phosphate triester by almost five orders of magnitude; the development of modified cyclodextrins to increase the rates and reverse the regioselectivity of nitrile oxide cycloadditions ; and the use of a cyclodextrin dimer to change the ratio of formation of indigoid dyes by a factor of more than 3500.
Keywords: catalysts
controlled assembly
cyclodextrins
molecular reactors
regioselectivity
self-assembly
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Description: The original publication can be found at www.springerlink.com
DOI: 10.1007/s10847-003-8833-9
Published version: http://dx.doi.org/10.1007/s10847-003-8833-9
Appears in Collections:Aurora harvest 6
Chemistry publications
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