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Dynamic and complexation study of hydroxy amide derivatives with some amine salts by 400 MHz 1H-NMR

2017
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Advisor: Doç. Dr. Mehmet Zafer Köylü

Abstract (EN)

In this study, T_1 and T_2 relaxation times of some β-hydroxy amide derivatives was measured at room temperature (25 0C) by 400 MHz 1H-NMR spectrometer. The motion of molecules was invastigated by finding τ_c correlation time from the rate of ( R_1)⁄(R_2= )((1⁄T_1 ))⁄(2(1⁄T_2 )). Besides, using 1H-NMR method, binding constant (K_a) and Gibbs free energy changes (∆G0) was determined by the complexation studies of β-hydroxy amide derivatives with some amine salts. T_1 times of Ar-OH, Amide-NH and Alcohol-OH groups in β-hydroxy amide 1 appears greater than the T_1 times of Ar-OH, Amide -NH and Alcohol groups in β-hydroxy amide 2 and 3. This result shows that - interactions as well as non-covalent intramolecular interactions in ligand 2 and 3 which carry more bulky groups. In the complexation studies, it was seen that although β-chiral hydroxy amide derivatives have non-covalent interactions (-, hydrogen bond, cation-, etc.) with D-, L-Tryptophan and D-, L-Phenylalanine Methyl ester salts, these interactions among the relevant ammonium salts are not strong enough to create a good enantioselectivity. τ_c values of all molecules are found in ns range. This indicates that τ_c correlation time which modulates the motion is based on dipolar interactions. Keywords: β-hydroxy amide, T_1, T_2, molecular dynamic, complexation, binding constant and correlation time.

Author

Dr. Mehmet Güven

How to Cite

Mehmet Güven (Doctorate thesis). Dynamic and complexation study of hydroxy amide derivatives with some amine salts by 400 MHz 1H-NMR, 2017, Dicle University.

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