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首页> 外文期刊>International Journal of Quantum Chemistry >DFT and MP2 study of isomery scheme in Formazan and intermolecular and intramolecular proton transfer between its tautomers
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DFT and MP2 study of isomery scheme in Formazan and intermolecular and intramolecular proton transfer between its tautomers

机译:DFT和MP2研究甲型同分异构方案及其互变异构体之间的分子间和分子内质子转移

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DFT and Moller Plesset (MP2) calculations were applied to study of isomery scheme in formazan. Formazan that can be presented by three tautomers and eight isomers has various applications in dyes, complexes, and biochemistry. The structures of its isomers and related transition states were optimized, and important molecular parameters, IR frequencies, and energetic results were extracted. The relative stabilities of formazan isomers in the gas phase were found to be as 1EZ >1ZZ >1EE >1ZE >2EE > 3 >2EZ >2ZZ >TS1 >TS3 >TS2. Thermodynamic data confirms that tautomer 1 is major tautomer, and all possible tautomerism interconversions have small rates at room temperature. Then, relative stabilities were calculated in different solvents (chloroform, tetrahydrofuran, acetone, and water). The relative stabilities and thermodynamic data in solvents are nearly similar to those in the gas phase, but the rate constants are slightly more than that in the gas phase. Moreover, relative stabilities of formazan isomers and intermolecular proton transfer in presence of one to three molecules of water have been studied. The results showed that activation barriers in water-assisted tautomerisms are in general lower than those in the gas phase, but the relative energies of isomers do not change importantly by water clusters.
机译:DFT和Moller Plesset(MP2)计算被用于研究甲maz的异构方案。可以由三个互变异构体和八个异构体呈现的甲maz在染料,络合物和生物化学中具有多种应用。优化了其异构体的结构和相关的过渡态,并提取了重要的分子参数,红外频率和高能结果。发现气相中甲maz异构体的相对稳定性为1EZ> 1ZZ> 1EE> 1ZE> 2EE> 3> 2EZ> 2ZZ> TS1> TS3> TS2。热力学数据证实互变异构体1是主要的互变异构体,并且所有可能的互变异构互变在室温下的转化率均很小。然后,计算了不同溶剂(氯仿,四氢呋喃,丙酮和水)中的相对稳定性。溶剂中的相对稳定性和热力学数据几乎与气相中的相似,但速率常数略高于气相中的速率常数。此外,已经研究了甲is异构体的相对稳定性和在一到三个水分子存在下的分子间质子转移。结果表明,水辅助互变异构体中的活化能垒通常低于气相中的活化能垒,但异构体的相对能不会因水团簇而发生重要变化。

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