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Investigations into the formation of [4]cavitand-derived hosts that encapsulate multiple guest molecules

Posted on:2004-08-13Degree:Ph.DType:Thesis
University:The University of British Columbia (Canada)Candidate:Makeiff, Darren AFull Text:PDF
GTID:2461390011959921Subject:Chemistry
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The main goals of the thesis work is to investigate the formation and applications of a class of host-guest molecules known as carceplexes and hemicarceplexes. Carceplexes are large, globe-shaped molecules that permanently entrap smaller guest molecules within their inner confines. Hemicarceplexes are similar to carceplexes, but differ in that hemicarceplexes possess larger pores though which guest egress is possible with sufficient heating.; Template effects in the formation carceplexes/hemicarceplexes were examined. One study involves investigations into the role of single-molecule guests as templates in the formation of the “two-bowl” hemicarceplex 25•guest. A second study investigates the role of single and multiple-molecule guests as templates in the formation of a larger “three-bowl” carceplex 56•guests. Complexation of various guests that were determined to be suitable templates to transition state models were also examined to help elucidate the driving forces in the formation of 56 •guests. Restricted conformational and orientational mobility of several incarcerated guests, as well as the reversible of compexation of water to 56•guests are described.*; The application of carceplex 56•guests in the generation and stabilization of the simple enol, acetophenone enol (139), as a guest in 56 was also studied. Enol 139 was successfully generated and is remarkably stable as an incarcerated guest in the absence of water, even at temperatures. Ketonization of the entrapped enol is facilitated by water, and the observed rate of reaction is significantly slower than for the free enol 139 in solution. The mechanism of ketonization of the entrapped enol 139 is also reported.*; A new “six-bowl” carceplex, which entraps seven DMSO guest molecules (149•(DMSO)7) was also synthesized and characterized. Dynamic behavior for both the host shell and its entrapped DMSO guests was observed in organic solutions by 1H NMR spectroscopy.*; *Please refer to dissertation for diagrams.
Keywords/Search Tags:Guest, Formation, Molecules, DMSO, Bold
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