Centro de Investigação em Química, Departamento de Química e Bioquímica, Faculdade de Ciências da Universidade do Porto, Porto, Portugal.
J Phys Chem B. 2011 May 26;115(20):6616-22. doi: 10.1021/jp2011149. Epub 2011 May 4.
This paper reports an experimental and computational study on the energetics of 1,2,3-benzotriazin-4(3H)-one. The standard (p° = 0.1 MPa) molar enthalpy of formation of solid 1,2,3-benzotriazin-4(3H)-one, at T = 298.15 K, was derived from its standard massic energy of combustion measured by static bomb combustion calorimetry in oxygen. The Calvet high-temperature vacuum sublimation technique was used to measure the respective standard molar enthalpy of sublimation at T = 298.15 K. From these two experimentally determined thermodynamic parameters, we have calculated the standard molar enthalpy of formation of 1,2,3-benzotriazin-4(3H)-one in the gas phase at T = 298.15 K, (200.9 ± 3.8) kJ·mol(-1). Interrelations between structure and energy for 1,2,3-benzotriazin-4(3H)-one, the tautomer 1,2,3-benzotriazin-4(1H)-one, and the enol tautomer 1,2,3-benzotriazin-4-ol were discussed based on density functional theory (DFT) calculations with the B3LYP hybrid functional and the 6-311++G(d,p) basis set. The gas-phase enthalpy of formation of 1,2,3-benzotriazin-4(3H)-one was estimated from quantum chemical calculations using the G3(MP2)//B3LYP composite method. Nucleus-independent chemical shifts (NICS) were also calculated with the purpose of analyzing the aromaticity of the benzenic and heterocyclic rings of the title molecule and others related tautomerically to it.
本文报道了 1,2,3-苯并三嗪-4(3H)-酮的实验和计算研究。通过静态弹燃烧量热法在氧气中测量其固态标准摩尔燃烧焓,推导出了 298.15 K 时固态 1,2,3-苯并三嗪-4(3H)-酮的标准摩尔生成焓(标准压力 p°=0.1 MPa)。采用 Calvet 高温真空升华技术测量了 298.15 K 时各自的标准摩尔升华焓。从这两个实验确定的热力学参数中,我们计算了 298.15 K 时气相中 1,2,3-苯并三嗪-4(3H)-酮的标准摩尔生成焓,为(200.9 ± 3.8)kJ·mol(-1)。基于密度泛函理论(DFT)计算,用 B3LYP 杂化函数和 6-311++G(d,p)基组,讨论了 1,2,3-苯并三嗪-4(3H)-酮、互变异构体 1,2,3-苯并三嗪-4(1H)-酮和烯醇互变异构体 1,2,3-苯并三嗪-4-醇的结构与能量的关系。使用 G3(MP2)//B3LYP 复合方法,从量子化学计算中估算了 1,2,3-苯并三嗪-4(3H)-酮的气相生成焓。还计算了核独立化学位移(NICS),目的是分析标题分子及其与之相关的互变异构体的苯环和杂环的芳香性。