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most citedDensity and speed of sound of (iodobenzene + n-alkane) liquid mixtures at = (288.15 to 308.15) K. Application of the Prigogine-Flory-Patterson model

9 citations · 15 across the 5 of their papers we have counts for

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physics.chem-ph2026

Excess molar enthalpies of (iodobenzene, or 1-iodonaphthalene + n-alkane) liquid mixtures at T = 298.15 K and p = 93 kPa

Fernando Hevia, Luis Felipe Sanz, Juan Antonio González +2

Excess molar enthalpies () for iodobenzene, or 1-iodonaphthalene + heptane, + decane, + dodecane, or + tetradecane mixtures at 298.15 K and 93 kPa have bee…

physics.chem-ph2025★ 1 cited

Volumetric and viscosity data of 1-iodonaphthalene + n-alkanes mixture at (288.15-308.15) K

Luis Felipe Sanz Juan Antonio González, Fernando Hevia, Daniel Lozano-Martín +4

Density and viscosity measurements have been performed for the systems 1-iodonaphthalene + heptane, or + decane, or + dodecane, or + tetradecane over the temperature range (288.15-…

physics.chem-ph2025

Liquid-liquid equilibria of systems containing 2-methoxyphenol or 2-ethoxyphenol and n-alkanes

Cristina Alonso Tristán, João Victor Alves-Laurentino, Fatemeh Pazoki +3

Liquid-liquid equilibria phase diagrams have been determined for the systems: 2-methoxyphenol + n-decane, or + n-dodecane, or + n-tetradecane or + n-hexadecane and for 2-ethoxyphen…

physics.chem-ph2024★ 5 cited

Orientational and steric effects in linear alkanoates + N-Alkane mixtures

Juan Antonio González, Fernando Hevia, Luis Felipe Sanz +3

The CH(CH)COO(CH)CH + n-alkane mixtures have been investigated on the basis of an experimental database containing effective dipole moments of esters, and e…

physics.chem-ph2024★ 9 cited

Density and speed of sound of (iodobenzene + n-alkane) liquid mixtures at = (288.15 to 308.15) K. Application of the Prigogine-Flory-Patterson model

Fernando Hevia, Daniel Lozano-Martín, Juan Antonio González +3

(Iodobenzene + n-alkane) liquid mixtures have been studied experimentally, in terms of densities and speeds of sound at a pressure = 0.1 MPa and in the temperature range =…