Ramos Fernando, Flores Henoc, Hernández-Pérez Julio M, Sandoval-Lira Jacinto, Camarillo E Adriana
Facultad de Ciencias Químicas de la Benemérita Universidad Autónoma de Puebla 14 sur y Av. San Claudio, C.P. 72570, Puebla Pue, México.
J Phys Chem A. 2018 Jan 11;122(1):239-248. doi: 10.1021/acs.jpca.7b08838. Epub 2017 Dec 26.
The intramolecular hydrogen bond of the N-H···S type has been investigated sparingly by thermochemical and computational methods. In order to study this interaction, the standard molar enthalpies of formation in gaseous phase of diphenyl disulfide, 2,2'-diaminodiphenyl disulfide and 4,4'-diaminodiphenyl disulfide at T = 298.15 K were determined by experimental thermochemical methods and computational calculations. The experimental enthalpies of formation in gas-phase were obtained from enthalpies of formation in crystalline phase and enthalpies of sublimation. Enthalpies of formation in crystalline phase were obtained using rotatory bomb combustion calorimetry. By thermogravimetry, enthalpies of vaporization were obtained, and by combining them with enthalpies of fusion, the enthalpies of sublimation were calculated. The Gaussian-4 procedure and the atomization method were applied to obtain enthalpies of formation in gas-phase of the compounds under study. Theoretical and experimental values are in good agreement. Through natural bond orbital (NBO) analysis and a topological analysis of the electronic density, the intramolecular hydrogen bridge (N-H···S) in the 2,2'-diaminodiphenyl disulfide was confirmed. Finally, an enthalpic difference of 11.8 kJ·mol between the 2,2'-diaminodiphenyl disulfide and 4,4'-diaminodiphenyl disulfide was found, which is attributed to the intramolecular N-H···S interaction.
N-H···S型分子内氢键仅通过热化学和计算方法进行了少量研究。为了研究这种相互作用,采用实验热化学方法和计算方法测定了二苯基二硫醚、2,2'-二氨基二苯基二硫醚和4,4'-二氨基二苯基二硫醚在T = 298.15 K时气相中的标准摩尔生成焓。气相中的实验生成焓由晶相中的生成焓和升华焓获得。晶相中的生成焓通过旋转弹燃烧量热法获得。通过热重分析法获得汽化焓,并将其与熔化焓相结合,计算出升华焓。应用高斯-4程序和原子化方法获得所研究化合物气相中的生成焓。理论值和实验值吻合良好。通过自然键轨道(NBO)分析和电子密度拓扑分析,证实了2,2'-二氨基二苯基二硫醚中的分子内氢桥(N-H···S)。最后,发现2,2'-二氨基二苯基二硫醚和4,4'-二氨基二苯基二硫醚之间的焓差为11.8 kJ·mol,这归因于分子内N-H···S相互作用。