Impact of structure of donors and temperature on 1,2-dimethoxybenzene complexes in non-polar medium by acoustic, spectroscopic and DFT methods

This study summarises the influence of amine donor structure on the physicochemical properties of four ternary liquid mixtures consisting of 1,2-dimethoxybenzene (DMB) as the hydrogen acceptor and n-hexylamine (NHA), cyclohexylamine (CHA), aniline (ANI), and o-toluidine (OT) as hydrogen donors in n-hexane at different temperatures and 101 kPa pressure. Physicochemical parameters of these solutions as a function of equimolar concentrations in the range 0.02–0.2 M of ether and amine showed formation of strong solute–solute complexes between unlike molecules through non-covalent interactions and structural changes in the four systems. The free energy of formation (ΔG), enthalpy changes (ΔH), and entropy changes (ΔS), determined from the stability constants (K) as a function of temperature and compared with complex stability. UV–Vis spectra were characterised using the Benesi–Hildebrand approach and stability constants were deduced. Density Functional Theory (DFT) confirmed non-covalent and Van der Waals interactions between amines and ether in n-hexane. Experimental stability constants (K) correlated with computed interaction energies. Complex stability depends on donor structure and decreases in the order DMB − OT > DMB − ANI > DMB − CHA > DMB − NHA, which is discussed based on structures and types of interactions.

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Publication Details

Journal
Molecular Physics
Published
2026-09-14
DOI
https://doi.org/10.1080/00268976.2026.2729272
Primary Topic
Thermodynamic properties of mixtures
Type
article
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article

Impact of structure of donors and temperature on 1,2-dimethoxybenzene complexes in non-polar medium by acoustic, spectroscopic and DFT methods

M. Mohamed Naseer Ali, R. Kumar, V. Balachandar, V. Karthikeyan et al.
Molecular Physics
Thermodynamic properties of mixtures
article

Impact of structure of donors and temperature on 1,2-dimethoxybenzene complexes in non-polar medium by acoustic, spectroscopic and DFT methods

M. Mohamed Naseer Ali, R. Kumar, V. Balachandar, V. Karthikeyan, Thoota Lalitha Sree, V. Kannappan, N. Mohamed Nasrullah
article en

Abstract

This study summarises the influence of amine donor structure on the physicochemical properties of four ternary liquid mixtures consisting of 1,2-dimethoxybenzene (DMB) as the hydrogen acceptor and n-hexylamine (NHA), cyclohexylamine (CHA), aniline (ANI), and o-toluidine (OT) as hydrogen donors in n-hexane at different temperatures and 101 kPa pressure. Physicochemical parameters of these solutions as a function of equimolar concentrations in the range 0.02–0.2 M of ether and amine showed formation of strong solute–solute complexes between unlike molecules through non-covalent interactions and structural changes in the four systems. The free energy of formation (ΔG), enthalpy changes (ΔH), and entropy changes (ΔS), determined from the stability constants (K) as a function of temperature and compared with complex stability. UV–Vis spectra were characterised using the Benesi–Hildebrand approach and stability constants were deduced. Density Functional Theory (DFT) confirmed non-covalent and Van der Waals interactions between amines and ether in n-hexane. Experimental stability constants (K) correlated with computed interaction energies. Complex stability depends on donor structure and decreases in the order DMB − OT > DMB − ANI > DMB − CHA > DMB − NHA, which is discussed based on structures and types of interactions.

Molecular Physics
University of Madras (IN), Sathyabama Institute of Science and Technology (IN), Saveetha University (IN)
Affordable and clean energy
Openalex Percentile: Top 20%
Thermodynamic properties of mixtures
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Impact of structure of donors and temperature on 1,2-dimethoxybenzene complexes in non-polar medium by acoustic, spectroscopic and DFT methods — M. Mohamed Naseer Ali, R. Kumar, et al. · Molecular Physics (2026) | TGRS Research Map | TGRS