ITC and NMR spectroscopy binding studies of meso- octamethyl-calix[4]pyrrole and its derivatives

This dissertation reports on the recent discovery that calix[4]pyrrole not only functions as an anion receptor, but also has the ability to act as an ion pair receptor. It was discovered that in the solid state large diffuse cations, such as Cs+ and imidazolium, will occupy the electron-rich cone-l...

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Main Author: Gross, Dustin Eugene
Format: Others
Language:English
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/2152/ETD-UT-2009-05-42
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spelling ndltd-UTEXAS-oai-repositories.lib.utexas.edu-2152-ETD-UT-2009-05-422015-09-20T16:53:15ZITC and NMR spectroscopy binding studies of meso- octamethyl-calix[4]pyrrole and its derivativesGross, Dustin EugeneSupramolecular ChemistryAnion BindingIsothermal Titration CalorimetryThis dissertation reports on the recent discovery that calix[4]pyrrole not only functions as an anion receptor, but also has the ability to act as an ion pair receptor. It was discovered that in the solid state large diffuse cations, such as Cs+ and imidazolium, will occupy the electron-rich cone-like cavity that is formed upon anion binding to the NH region of the calix[4]pyrrole core. Also discussed are efforts devoted to improving the anion binding ability of calixpyrroles and fine-tuning their inherent selectivity. This has been probed through a variety of structural modifications. One of the most attractive of the modification strategies currently being explored involves expansion of the central binding cavity by using higher order β-fluorinated calix[n]pyrroles; n = 5, 6, and 8. An advantage of β-fluorinated calix[4]pyrrole is that it shows enhanced anion binding affinities toward several anions compared to the parent calix[4]pyrrole. Fluorinated calixpyrroles have also shown an ability to extract anions from aqueous environments into organic media. An alternative strategy has been to attach “straps” resulting in bicyclic systems, which further define the binding cavity achieving higher affinity and anion selectivity. The binding interactions of calixpyrrole and it derivative have been quantified using analytical techniques, such as nuclear magnetic resonance spectroscopy and isothermal titration calorimetry. The results of these latter studies will be discussed herein.text2009-09-03T21:02:34Z2009-09-03T21:02:34Z2009-052009-09-03T21:02:34ZThesisapplication/pdfhttp://hdl.handle.net/2152/ETD-UT-2009-05-42eng
collection NDLTD
language English
format Others
sources NDLTD
topic Supramolecular Chemistry
Anion Binding
Isothermal Titration Calorimetry
spellingShingle Supramolecular Chemistry
Anion Binding
Isothermal Titration Calorimetry
Gross, Dustin Eugene
ITC and NMR spectroscopy binding studies of meso- octamethyl-calix[4]pyrrole and its derivatives
description This dissertation reports on the recent discovery that calix[4]pyrrole not only functions as an anion receptor, but also has the ability to act as an ion pair receptor. It was discovered that in the solid state large diffuse cations, such as Cs+ and imidazolium, will occupy the electron-rich cone-like cavity that is formed upon anion binding to the NH region of the calix[4]pyrrole core. Also discussed are efforts devoted to improving the anion binding ability of calixpyrroles and fine-tuning their inherent selectivity. This has been probed through a variety of structural modifications. One of the most attractive of the modification strategies currently being explored involves expansion of the central binding cavity by using higher order β-fluorinated calix[n]pyrroles; n = 5, 6, and 8. An advantage of β-fluorinated calix[4]pyrrole is that it shows enhanced anion binding affinities toward several anions compared to the parent calix[4]pyrrole. Fluorinated calixpyrroles have also shown an ability to extract anions from aqueous environments into organic media. An alternative strategy has been to attach “straps” resulting in bicyclic systems, which further define the binding cavity achieving higher affinity and anion selectivity. The binding interactions of calixpyrrole and it derivative have been quantified using analytical techniques, such as nuclear magnetic resonance spectroscopy and isothermal titration calorimetry. The results of these latter studies will be discussed herein. === text
author Gross, Dustin Eugene
author_facet Gross, Dustin Eugene
author_sort Gross, Dustin Eugene
title ITC and NMR spectroscopy binding studies of meso- octamethyl-calix[4]pyrrole and its derivatives
title_short ITC and NMR spectroscopy binding studies of meso- octamethyl-calix[4]pyrrole and its derivatives
title_full ITC and NMR spectroscopy binding studies of meso- octamethyl-calix[4]pyrrole and its derivatives
title_fullStr ITC and NMR spectroscopy binding studies of meso- octamethyl-calix[4]pyrrole and its derivatives
title_full_unstemmed ITC and NMR spectroscopy binding studies of meso- octamethyl-calix[4]pyrrole and its derivatives
title_sort itc and nmr spectroscopy binding studies of meso- octamethyl-calix[4]pyrrole and its derivatives
publishDate 2009
url http://hdl.handle.net/2152/ETD-UT-2009-05-42
work_keys_str_mv AT grossdustineugene itcandnmrspectroscopybindingstudiesofmesooctamethylcalix4pyrroleanditsderivatives
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