Centro de Investigação em Química, Department of Chemistry and Biochemistry, Faculty of Science, University of Porto, Porto, Portugal.
J Phys Chem B. 2011 Nov 3;115(43):12549-57. doi: 10.1021/jp2068057. Epub 2011 Oct 7.
The present paper reports an experimental calorimetric study of 2-pyrrolecarboxaldehyde and 1-methyl-2-pyrrolecarboxaldehyde, which aims to determine their standard (p° = 0.1 MPa) molar enthalpies of formation, in the gaseous phase, at T = 298.15 K. These values were derived from the standard (p° = 0.1 MPa) molar enthalpies of formation, in the condensed phase, Δ(f)H(m)°(cr,l), at T = 298.15 K, obtained from the standard molar enthalpies of combustion, ΔcHm°, measured by static bomb combustion calorimetry, and from the standard molar enthalpies of phase transition, Δ(cr,l)(g) H(m)° at T = 298.15 K, obtained by high temperature Calvet microcalorimetry. Additionally, the standard enthalpies of formation of these two compounds were estimated by computations based on standard ab initio molecular calculations at the G3(MP2)//B3LYP level. The estimated values are in very good agreement with experimental data, giving us support to estimate the gas-phase enthalpies of formation of the 3-pyrrolecarboxaldehyde and 1-methyl-3-pyrrolecarboxaldehyde that were not studied experimentally. N-H bond dissociation enthalpies, gas-phase acidities and basicities, proton and electron affinities, and adiabatic ionization enthalpies were also calculated. Furthermore, the molecular structure of the four molecules was established and the structural parameters were determined at the B3LYP/6-31G(d) level of theory.
本文报道了 2-吡咯甲醛和 1-甲基-2-吡咯甲醛的实验量热研究,旨在确定它们在气态下、T = 298.15 K 时的标准(p° = 0.1 MPa)摩尔生成焓。这些值是由凝聚相下的标准(p° = 0.1 MPa)摩尔生成焓Δ(f)H(m)°(cr,l),在 T = 298.15 K 时,通过静态弹燃烧量热法测量得到的标准摩尔燃烧焓ΔcHm°,以及通过高温 Calvet 微量热法在 T = 298.15 K 时测量得到的相变标准摩尔焓Δ(cr,l)(g) H(m)°得到的。此外,通过基于标准从头算分子计算在 G3(MP2)//B3LYP 水平上的计算,估算了这两种化合物的标准生成焓。估算值与实验数据非常吻合,为我们估算未进行实验研究的 3-吡咯甲醛和 1-甲基-3-吡咯甲醛的气相生成焓提供了支持。还计算了 N-H 键离解焓、气相酸度和碱度、质子亲和势和电子亲和势以及绝热电离焓。此外,还建立了这四个分子的分子结构,并在 B3LYP/6-31G(d)理论水平上确定了结构参数。