酮中羰基位置对其汽化焓和饱和蒸气压的影响

IF 3 3区 工程技术 Q2 CHEMISTRY, ANALYTICAL
Aizat A. Samatov, Kirill S. Konyashin, Boris N. Solomonov, Ruslan N. Nagrimanov
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引用次数: 0

摘要

有关结构-性质关系的信息可用于合成具有所需性质的化合物,分析分子间相互作用在各种物理化学过程中的作用以及从杂质中分离合成产物。本文研究了羰基位置对酮类化合物饱和蒸汽压和汽化焓的影响。用蒸腾法测定了异构癸酮、十一酮和异佛酮的饱和蒸气压。用溶液量热法、蒸腾法和相关气相色谱法测定了同分异构体酮的蒸发焓。在1 kJ mol−1范围内,计算结果基本一致。结果表明,与3-、4-、5-、6-烷酮相比,2-烷酮具有更高的汽化焓和更低的蒸汽压,这可以解释为2-烷酮分子间的相互作用比其他异构体更强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Influence of the position of carbonyl group in ketones on their enthalpies of vaporization and saturated vapour pressures

Influence of the position of carbonyl group in ketones on their enthalpies of vaporization and saturated vapour pressures

Information about the structure-property relationship can be useful for the synthesis of compounds with desired properties, analysis of the role of intermolecular interactions in various physicochemical processes and separation of the synthesis product from impurities. In the present work, the influence of the position of the carbonyl group on the saturated vapour pressure and enthalpy of vaporization of ketones was studied. The saturated vapour pressures of isomeric decanones, undecanones and isophorone were measured by the transpiration method. The enthalpies of vaporization of isomeric ketones were determined using various methods: solution calorimetry, transpiration and correlation gas chromatography. The obtained values agree with each other within 1 kJ mol−1. It was shown that 2-alkanones have higher enthalpies of vaporization and lower vapour pressures than 3-, 4-, 5-, 6-alkanones, which can be explained by the stronger intermolecular interactions existing between the molecules of 2-alkanones compared to others isomers.

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来源期刊
CiteScore
8.50
自引率
9.10%
发文量
577
审稿时长
3.8 months
期刊介绍: Journal of Thermal Analysis and Calorimetry is a fully peer reviewed journal publishing high quality papers covering all aspects of thermal analysis, calorimetry, and experimental thermodynamics. The journal publishes regular and special issues in twelve issues every year. The following types of papers are published: Original Research Papers, Short Communications, Reviews, Modern Instruments, Events and Book reviews. The subjects covered are: thermogravimetry, derivative thermogravimetry, differential thermal analysis, thermodilatometry, differential scanning calorimetry of all types, non-scanning calorimetry of all types, thermometry, evolved gas analysis, thermomechanical analysis, emanation thermal analysis, thermal conductivity, multiple techniques, and miscellaneous thermal methods (including the combination of the thermal method with various instrumental techniques), theory and instrumentation for thermal analysis and calorimetry.
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