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On the Density and Intermolecular Interaction in the Eutectic System Thymol–L-Menthol. / Misikov, G; Petrov, A; Toikka, A.

In: Glass Physics and Chemistry, Vol. 51, No. 6, 12.2025, p. 713-720.

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@article{ca40bfa062204b9585c9e54b65030f6e,
title = "On the Density and Intermolecular Interaction in the Eutectic System Thymol–L-Menthol",
abstract = "The results of experimental determination of the density of the eutectic system thymol–L-mentholare presented. The dependence of density on composition and temperature in the liquid-phase region, as wellas molecular dynamics modeling in a wide range of concentrations, is examined. On this basis, the behavioralcharacteristics of this system, the nature of deviations from ideality, and the possibilities of realizing metastablestates are discussed.",
author = "G Misikov and A Petrov and A Toikka",
year = "2025",
month = dec,
doi = "10.1134/S1087659625601200",
language = "English",
volume = "51",
pages = "713--720",
journal = "Glass Physics and Chemistry",
issn = "1087-6596",
publisher = "МАИК {"}Наука/Интерпериодика{"}",
number = "6",

}

RIS

TY - JOUR

T1 - On the Density and Intermolecular Interaction in the Eutectic System Thymol–L-Menthol

AU - Misikov, G

AU - Petrov, A

AU - Toikka, A

PY - 2025/12

Y1 - 2025/12

N2 - The results of experimental determination of the density of the eutectic system thymol–L-mentholare presented. The dependence of density on composition and temperature in the liquid-phase region, as wellas molecular dynamics modeling in a wide range of concentrations, is examined. On this basis, the behavioralcharacteristics of this system, the nature of deviations from ideality, and the possibilities of realizing metastablestates are discussed.

AB - The results of experimental determination of the density of the eutectic system thymol–L-mentholare presented. The dependence of density on composition and temperature in the liquid-phase region, as wellas molecular dynamics modeling in a wide range of concentrations, is examined. On this basis, the behavioralcharacteristics of this system, the nature of deviations from ideality, and the possibilities of realizing metastablestates are discussed.

U2 - 10.1134/S1087659625601200

DO - 10.1134/S1087659625601200

M3 - Article

VL - 51

SP - 713

EP - 720

JO - Glass Physics and Chemistry

JF - Glass Physics and Chemistry

SN - 1087-6596

IS - 6

ER -

ID: 148769657