2006
DOI: 10.1155/2006/589273
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Stabilization of N‐, N,N‐, N,N′‐methylated and unsubstituted simple amidine salts by multifurcated hydrogen bonds

Abstract: In the light of the usefulness of amidines in medicinal chemistry, this paper considers the effects on biological properties and chemical reactivities of organic molecules affected by intramolecular interactions. The study of chemical shifts has been an important source of information on the electronic structure of amidine salts and their ability to form non-covalent bonds with nucleic acids. The NMR and IR results demonstrate that hydrogen bonds are a force for promoting chemical reactions. The thymine O2 car… Show more

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Cited by 4 publications
(5 citation statements)
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References 33 publications
(48 reference statements)
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“…e hitherto reported data leave no doubt that the strength of these bonds is of fundamental importance for the explanation of the reactivity di erences (intramolecular "noncovalent" catalysis). Multifurcated hydrogen bonds can alter both the stability and the reactivity of thioamides towards zinc ammoniates [4]. ese results are in touch with the previous hydrolysis and cyclization studies [2].…”
Section: Introductionsupporting
confidence: 78%
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“…e hitherto reported data leave no doubt that the strength of these bonds is of fundamental importance for the explanation of the reactivity di erences (intramolecular "noncovalent" catalysis). Multifurcated hydrogen bonds can alter both the stability and the reactivity of thioamides towards zinc ammoniates [4]. ese results are in touch with the previous hydrolysis and cyclization studies [2].…”
Section: Introductionsupporting
confidence: 78%
“…e most important features were opposite to those characteristics of classical H-bonds (red shift [4]). e range of study of blue-shifting H-bonds is here extended to other bonding types.…”
Section: E Amide Linkage Extraordinary Infrared Absorptionsmentioning
confidence: 77%
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