首页> 外文期刊>Journal of molecular modeling >Quantum chemical investigation of the intra- and intermolecular proton transfer reactions and hydrogen bonding interactions in 4-amino-5-(2- hydroxyphenyl)-2H-1,2,4-triazole-3(4H)-thione
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Quantum chemical investigation of the intra- and intermolecular proton transfer reactions and hydrogen bonding interactions in 4-amino-5-(2- hydroxyphenyl)-2H-1,2,4-triazole-3(4H)-thione

机译:4-氨基-5-(2-羟苯基)-2H-1,2,4-三唑-3(4H)-硫酮内和分子间质子转移反应和氢键相互作用的量子化学研究

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The intramolecular thione-thiol tautomerism and intermolecular double proton transfer reaction of the hydrogen-bonded thione and thiol dimers in the title triazole compound were studied at the B3LYP level of theory using 6-311++G(d,p) basis function. The influence of the solvent on the single and double proton transfer reactions was examined in three solvents (chloroform, methanol and water) using the polarizable continuum model (PCM) approximation. The computational results show that the thione tautomer is the most stable isomer with a very high tautomeric energy barrier both in the gas phase and in solution phase, indicating a quite disfavored process. The solvent effect is found to be sizable with increasing polarity. In the double proton transfer reaction, the thione dimer is found to be more stable than thiol dimer both in the gas phase and in solution phase. The energetic and thermodynamic parameters of the double proton transfer process show that the double proton exchange from thione dimer to thiol dimer is thermodynamically unfavored. However, the exchange from thiol dimer to thione dimer for the gas phase and water phase seems to be feasible with a low barrier height and with a negative value in enthalpy and free energy changes. In addition, the hydrogen bonding interactions were analyzed in the gas phase regarding their geometries and energies. It is found that all complex formations are enthalpically favored, and the stability of the H-bonds comes in the order of S1 - H2···N2 > N2 - H2···S1 > N3 - H3B···O1. Finally, non-linear optical properties were carried out at the same calculation level in the gas phase. [Figure not available: see fulltext.]
机译:使用6-311 ++ G(d,p)基函数在理论的B3LYP水平下研究了标题三唑化合物中氢键联的硫酮和硫醇二聚体的分子内硫酮-硫醇互变异构和分子间双质子转移反应。使用可极化连续体模型(PCM)近似,在三种溶剂(氯仿,甲醇和水)中检查了溶剂对单质子传递和双质子传递反应的影响。计算结果表明,硫酮互变异构体是最稳定的异构体,在气相和溶液相中均具有非常高的互变异构能垒,表明该工艺非常不利。发现随着极性的增加,溶剂作用相当大。在双质子转移反应中,发现硫酮二聚体在气相和溶液相中都比硫醇二聚体更稳定。双质子转移过程的能量和热力学参数表明,从硫酮二聚体到硫醇二聚体的双质子交换在热力学上是不利的。然而,在低阻挡层高度和焓和自由能变化为负值的情况下,从硫醇二聚体到硫酮二聚体的气相和水相交换似乎是可行的。另外,在气相中分析了氢键相互作用的几何形状和能量。发现所有复杂的形成都在焓上受到青睐,并且氢键的稳定性依次为S1-H2···N2> N2-H2···S1> N3-H3B··O1。最后,在气相中以相同的计算水平进行非线性光学性质。 [图不可用:请参见全文。]

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