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噻吨的能态研究和相图。

Energetic studies and phase diagram of thioxanthene.

机构信息

Centro de Investigacao em Quimica, Departamento de Quimica, Faculdade de Ciencias, Universidade do Porto, Rua do Campo Alegre, 687, P-4169-007 Porto, Portugal.

出版信息

J Phys Chem A. 2009 Nov 19;113(46):12988-94. doi: 10.1021/jp906413y.

DOI:10.1021/jp906413y
PMID:19821598
Abstract

The molecular stability of thioxanthene, a key species from which very important compounds with industrial relevance are derived, has been studied by a combination of several experimental techniques and computational approaches. The standard (p degrees = 0.1 MPa) molar enthalpy of formation of crystalline thioxanthene (117.4 +/- 4.1 kJ x mol(-1)) was determined from the experimental standard molar energy of combustion, in oxygen, measured by rotating-bomb combustion calorimetry at T = 298.15 K. The enthalpy of sublimation was determined by a direct method, using the vacuum drop microcalorimetric technique, and also by an indirect method, using a static apparatus, where the vapor pressures at different temperatures were measured. The latter technique was used for both crystalline and undercooled liquid samples, and the phase diagram of thioxanthene near the triple point was obtained (triple point coordinates T = 402.71 K and p = 144.7 Pa). From the two methods, a mean value for the standard (p degrees = 0.1 MPa) molar enthalpy of sublimation, at T = 298.15 K (101.3 +/- 0.8 kJ x mol(-1)), was derived. From the latter value and from the enthalpy of formation of the solid, the standard (p degrees = 0.1 MPa) enthalpy of formation of gaseous thioxanthene was calculated as 218.7 +/- 4.2 kJ x mol(-1). Standard ab initio molecular orbital calculations were performed using the G3(MP2)//B3LYP composite procedure and several homodesmotic reactions in order to derive the standard molar enthalpy of formation of thioxanthene. The ab initio results are in excellent agreement with the experimental data.

摘要

噻吨是一种重要的工业相关化合物的关键物种,其分子稳定性已经通过多种实验技术和计算方法的结合进行了研究。通过在 298.15 K 下使用旋转弹燃烧量热计测量在氧气中的实验标准摩尔燃烧焓,确定了结晶噻吨(117.4 ± 4.1 kJ x mol(-1))的标准(p 度= 0.1 MPa)摩尔生成焓。升华焓通过直接法(使用真空滴微量热计技术)和间接法(使用静态装置,在不同温度下测量蒸气压)确定。后一种技术用于结晶和过冷液体样品,并且获得了噻吨在三相点附近的相图(三相点坐标 T = 402.71 K 和 p = 144.7 Pa)。从这两种方法中,得出了在 T = 298.15 K 时标准(p 度= 0.1 MPa)摩尔升华焓的平均值(101.3 ± 0.8 kJ x mol(-1))。从后一个值和固体的生成焓,计算了气态噻吨的标准(p 度= 0.1 MPa)生成焓为 218.7 ± 4.2 kJ x mol(-1)。使用 G3(MP2)//B3LYP 复合程序和几个同系物反应进行了标准从头算分子轨道计算,以推导噻吨的标准摩尔生成焓。从头算结果与实验数据非常吻合。

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