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含硫氨基酸的实验和计算热化学研究:L-半胱氨酸、L-胱氨酸和 L-半胱氨酸衍生的自由基。S-S、S-H 和 C-S 键离解焓。

Experimental and computational thermochemical study of sulfur-containing amino acids: L-cysteine, L-cystine, and L-cysteine-derived radicals. S-S, S-H, and C-S bond dissociation enthalpies.

机构信息

Instituto de Química Física Rocasolano, CSIC, Serrano 119, 28006 Madrid, Spain.

出版信息

J Phys Chem B. 2010 Aug 19;114(32):10530-40. doi: 10.1021/jp1025637.

DOI:10.1021/jp1025637
PMID:20734495
Abstract

This paper reports an experimental and theoretical study of the standard (p(degrees) = 0.1 MPa) molar enthalpies of formation at T = 298.15 K of the sulfur-containing amino acids l-cysteine [CAS 52-90-4] and l-cystine [CAS 56-89-3]. The standard (p(degrees) = 0.1 MPa) molar enthalpies of formation of crystalline l-cysteine and l-cystine were calculated from the standard molar energies of combustion, in oxygen, to yield CO2(g) and H2SO4.115H2O, measured by rotating-bomb combustion calorimetry at T = 298.15 K. The vapor pressures of l-cysteine were measured as function of temperature by the Knudsen effusion mass-loss technique. The standard molar enthalpy of sublimation, at T = 298.15 K, was derived from the Clausius-Clapeyron equation. The experimental values were used to calculate the standard (p(degrees) = 0.1 MPa) enthalpy of formation of l-cysteine in the gaseous phase, DeltafH(degrees)m(g) = -382.6 +/- 1.8 kJ x mol-1. Due to the low vapor pressures of l-cystine and since this compound decomposes at the temperature range required for a possible sublimation, it was not possible to determine its enthalpy of sublimation. Standard ab initio molecular orbital calculations at the G3(MP2)//B3LYP and/or G3 levels were performed. Enthalpies of formation, using atomization and isodesmic reactions, were calculated and compared with experimental data. A value of -755 +/- 10 kJ x mol-1 was estimated for the enthalpy of formation of cystine. Detailed inspections of the molecular and electronic structures of the compounds studied were carried out. Finally, bond dissociation enthalpies (BDE) of S-H, S-S, and C-S bonds, and enthalpies of formation of l-cysteine-derived radicals, were also computed.

摘要

本文报道了在 298.15 K 下测定含硫氨基酸 l-半胱氨酸[CAS 52-90-4]和 l-胱氨酸[CAS 56-89-3]标准(p(degrees) = 0.1 MPa)摩尔生成焓的实验和理论研究。通过在 298.15 K 下使用旋转弹燃烧量热法测量在氧气中燃烧的标准摩尔能量,计算出结晶 l-半胱氨酸和 l-胱氨酸的标准(p(degrees) = 0.1 MPa)摩尔生成焓,以生成 CO2(g) 和 H2SO4.115H2O。通过克努森扩散质量损失技术测量 l-半胱氨酸的蒸气压作为温度的函数。从克劳修斯-克拉佩龙方程得出 298.15 K 时的标准摩尔升华焓。实验值用于计算气相中 l-半胱氨酸的标准(p(degrees) = 0.1 MPa)生成焓,DeltafH(degrees)m(g) = -382.6 +/- 1.8 kJ x mol-1。由于 l-胱氨酸的蒸气压较低,并且由于该化合物在可能升华的温度范围内分解,因此无法确定其升华焓。在 G3(MP2)//B3LYP 和/或 G3 水平上进行了标准从头算分子轨道计算。使用原子化和等电子反应计算生成焓,并与实验数据进行比较。估计胱氨酸的生成焓为-755 +/- 10 kJ x mol-1。对所研究化合物的分子和电子结构进行了详细检查。最后,还计算了 S-H、S-S 和 C-S 键的键离解焓(BDE)以及 l-半胱氨酸衍生自由基的生成焓。

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