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Supramolecular complexes of oxoporph...
~
Březina, Václav.
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Supramolecular complexes of oxoporphyrinogens with organic molecules
Record Type:
Electronic resources : Monograph/item
Title/Author:
Supramolecular complexes of oxoporphyrinogens with organic molecules/ by Václav Březina.
Author:
Březina, Václav.
Published:
Cham :Springer Nature Switzerland : : 2024.,
Description:
xv, 214 p. :ill., digital ;24 cm.
Notes:
"Doctoral thesis accepted by Charles University, Prague, Czech Republic."
[NT 15003449]:
Introduction -- Quantitative description ofsupramolecular binding -- Nuclear magnetic resonancespectroscopy -- UV/vis spectroscopy -- Singular value decomposition -- Chromic and binding propertiesof OxP derivatives -- Dynamic processes and chemicalexchange in OxP derivatives -- Conclusion.
Contained By:
Springer Nature eBook
Subject:
Supramolecular chemistry. -
Online resource:
https://doi.org/10.1007/978-3-031-68646-7
ISBN:
9783031686467
Supramolecular complexes of oxoporphyrinogens with organic molecules
Březina, Václav.
Supramolecular complexes of oxoporphyrinogens with organic molecules
[electronic resource] /by Václav Březina. - Cham :Springer Nature Switzerland :2024. - xv, 214 p. :ill., digital ;24 cm. - Springer theses,2190-5061. - Springer theses..
"Doctoral thesis accepted by Charles University, Prague, Czech Republic."
Introduction -- Quantitative description ofsupramolecular binding -- Nuclear magnetic resonancespectroscopy -- UV/vis spectroscopy -- Singular value decomposition -- Chromic and binding propertiesof OxP derivatives -- Dynamic processes and chemicalexchange in OxP derivatives -- Conclusion.
Macrocyclic oxoporphyrinogen molecules combine the ability to form strong supramolecular complexes with organic compounds and the ability to absorb light. These properties allow high-sensitivity colorimetric detection of acids in solution in the presence of oxoporphyrinogen. Moreover, protonated oxoporphyrinogens show various molecular dynamic processes on the millisecond timescale. This book offers deep analyses of colorimetric, binding and kinetic properties of oxoporphyrinogen-acid complexes. A detailed introduction is given for: theory of supramolecular binding and chemical kinetics; NMR spectroscopy with emphasis on multi-state chemical exchange including derivation of analytical spectral lineshapes; UV/vis spectroscopy and analysis of UV/vis spectra, using singular value decomposition (SVD). Implementation of the derived models in Mathematica is also provided. The experimental part addresses SVD analysis of UV/vis spectra illuminating the effect of protonation on various oxoporphyrinogen derivatives and explaining the colorimetric response. Furthermore, analysis of chemical exchange lineshapes offers insight into the dynamic processes present in protonated oxoporphyrinogens. The various models and techniques described in this book are widely applicable for other systems.
ISBN: 9783031686467
Standard No.: 10.1007/978-3-031-68646-7doiSubjects--Topical Terms:
604614
Supramolecular chemistry.
LC Class. No.: QD878
Dewey Class. No.: 547.1226
Supramolecular complexes of oxoporphyrinogens with organic molecules
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Introduction -- Quantitative description ofsupramolecular binding -- Nuclear magnetic resonancespectroscopy -- UV/vis spectroscopy -- Singular value decomposition -- Chromic and binding propertiesof OxP derivatives -- Dynamic processes and chemicalexchange in OxP derivatives -- Conclusion.
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Macrocyclic oxoporphyrinogen molecules combine the ability to form strong supramolecular complexes with organic compounds and the ability to absorb light. These properties allow high-sensitivity colorimetric detection of acids in solution in the presence of oxoporphyrinogen. Moreover, protonated oxoporphyrinogens show various molecular dynamic processes on the millisecond timescale. This book offers deep analyses of colorimetric, binding and kinetic properties of oxoporphyrinogen-acid complexes. A detailed introduction is given for: theory of supramolecular binding and chemical kinetics; NMR spectroscopy with emphasis on multi-state chemical exchange including derivation of analytical spectral lineshapes; UV/vis spectroscopy and analysis of UV/vis spectra, using singular value decomposition (SVD). Implementation of the derived models in Mathematica is also provided. The experimental part addresses SVD analysis of UV/vis spectra illuminating the effect of protonation on various oxoporphyrinogen derivatives and explaining the colorimetric response. Furthermore, analysis of chemical exchange lineshapes offers insight into the dynamic processes present in protonated oxoporphyrinogens. The various models and techniques described in this book are widely applicable for other systems.
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