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An Electrochemical Study by using Conductivity Measurement for Two Oximes at Different Temperatures supported with DFT Analysis
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The structure of oximes was proved by using available physical methods included (Infrared, Ultraviolet spectra and melting points). The aim of this study was to evaluate the ionization constant by conductivity method at different temperatures. The thermodynamic parameters namely (ΔG, ΔH, ΔS) of ionization reaction of these oximes as determined and discussed in details. The antibacterial activity of these oximes was tested against some bacteria. Optimized structure, boundary molecular orbitals (HOMO and LUMO) and global reactivity descriptors were analyzed by DFT calculations.
World Researchers Associations
Title: An Electrochemical Study by using Conductivity Measurement for Two Oximes at Different Temperatures supported with DFT Analysis
Description:
The structure of oximes was proved by using available physical methods included (Infrared, Ultraviolet spectra and melting points).
The aim of this study was to evaluate the ionization constant by conductivity method at different temperatures.
The thermodynamic parameters namely (ΔG, ΔH, ΔS) of ionization reaction of these oximes as determined and discussed in details.
The antibacterial activity of these oximes was tested against some bacteria.
Optimized structure, boundary molecular orbitals (HOMO and LUMO) and global reactivity descriptors were analyzed by DFT calculations.
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Correction: Surowiak, A.K.; Lochyński, S.; Strub, D.J. Unsubstituted Oximes as Potential Therapeutic Agents. Symmetry 2020, 12, 575
Correction: Surowiak, A.K.; Lochyński, S.; Strub, D.J. Unsubstituted Oximes as Potential Therapeutic Agents. Symmetry 2020, 12, 575
Oximes, which are highly bioactive molecules, have versatile uses in the medical sector and have been indicated to possess biological activity. Certain oximes exist in nature in pl...
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