1 H NMR‐based method for the determination of complexation equilibrium parameters and chemical shifts in a hydrogen‐bonded system with dynamic composition
A photoswitchable self‐complementary hydrogen bond system with an azoheteroaromatic backbone is presented. The trans ‐isomer ( T ) is the most stable form designed to dimerize through 6 hydrogen bond interactions. The dimerization constant ( K T · T ) and the dimer structure in the solid state have...
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Veröffentlicht in: | Journal of physical organic chemistry 2018-05, Vol.31 (5) |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
Online-Zugang: | Volltext |
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Zusammenfassung: | A photoswitchable self‐complementary hydrogen bond system with an azoheteroaromatic backbone is presented. The
trans
‐isomer (
T
) is the most stable form designed to dimerize through 6 hydrogen bond interactions. The dimerization constant (
K
T
·
T
) and the dimer structure in the solid state have been obtained by conventional methods. When the
cis
‐isomer (
C
) is generated through photoisomerization, the dynamics of the complex structures in solution change. The less stable
cis
‐isomer can engage in dimerization, and a
trans
‐
cis
complex may form with remaining
trans
‐isomer (whose concentration increases as
cis
‐
trans
thermal reversion takes place). A mathematical approach to calculate the
trans
‐
cis
complexation constant (
K
T
·
C
) along with an estimation of the
cis
‐isomer dimerization constant (
K
C
·
C
) from phenyl analogues allows a description of the species distribution in solution to be generated. |
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ISSN: | 0894-3230 1099-1395 |
DOI: | 10.1002/poc.3805 |