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Theoretical and Experimental Study of the Excess Thermodynamic Properties of Highly Nonideal Liquid Mixtures of Butanol Isomers plus DBE
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Number of Authors: 92021 (English)In: Journal of Physical Chemistry B, ISSN 1520-6106, E-ISSN 1520-5207, Vol. 125, no 2, p. 587-600Article in journal (Refereed) Published
Abstract [en]

Binary alcohol + ether liquid mixtures are of significant importance as potential biofuels or additives for internal combustion engines and attract considerable fundamental interest as model systems containing one strongly H-bonded self-associating component (alcohol) and one that is unable to do so (ether), but that can interact strongly as a H-bond acceptor. In this context, the excess thermodynamic properties of these mixtures, specifically the excess molar enthalpies and volumes (H-E and V-E), have been extensively measured. Butanol isomer + di-n-butyl ether (DBE) mixtures received significant attention because of interesting differences in their V-E, changing from negative (1- and isobutanol) to positive (2- and tert-butanol) with increasing alkyl group branching. With the aim of shedding light on the differences in alcohol self-association and cross-species H-bonding, considered responsible for the observed differences, we studied representative 1- and 2-butanol + DBE mixtures by molecular dynamics simulations and experimental excess property measurements. The simulations reveal marked differences in the self-association of the two isomers and, while supporting the existing interpretations of the H-E and V-E in a general sense, our results suggest, for the first time, that subtle changes in H-bonded topologies may contribute significantly to the anomalous volumetric properties of these mixtures.

Place, publisher, year, edition, pages
2021. Vol. 125, no 2, p. 587-600
Keywords [en]
Mixtures, Alcohols, Liquids, Cluster chemistry, Molecules
National Category
Chemical Sciences
Identifiers
URN: urn:nbn:se:su:diva-192785DOI: 10.1021/acs.jpcb.0c10076ISI: 000613197600012PubMedID: 33428423OAI: oai:DiVA.org:su-192785DiVA, id: diva2:1549018
Available from: 2021-05-04 Created: 2021-05-04 Last updated: 2022-03-23Bibliographically approved

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Marincola, Flaminia CesareLaaksonen, Aatto

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Marincola, Flaminia CesareLaaksonen, Aatto
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Department of Materials and Environmental Chemistry (MMK)
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