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Protonation of 5-methylhydantoin and its thio derivatives in the gas phase: A theoretical study

机译:5-甲基乙内酰脲及其硫衍生物在气相中的质子化:理论研究

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The gas phase proton affinities of 5-methylhydantoin and its thio derivatives were theoretically studied through the use of high-level density functional theory calculations. The structure of all possible tautomers and their conformers were optimized at the B3LYP/6-311+(d,p) level of theory. Final energies were obtained at the B3LYP/6-311+(2df,2p) level. The imidazolidone derivatives 5-methyl-2,4-dioxo imidazolidine, 5-methyl-2-oxo-4-thio imidazolidine, 5-methyl-2-thio-4-oxo imidazolidine, and 5-methyl-2,4-dithio imidazolidine possess moderately strong proton affinities. Protonation at sulfur would be larger than protonation at oxygen. The most stable protonated forms of 2O4O and 2S4O have the proton attached to the heteroatom in position 2, whereas protonation of 2O4S and 2S4S preferentially takes place at position 4. The barriers for proton migration between the different tautomers are rather large. The energy decomposition analysis analysis of the O-H~+ and S-H ~+ interactions suggests that the bonding interactions come mainly from the covalent bond formation. The contribution of the Coulomb attraction is rather small.
机译:通过使用高级密度泛函理论计算,从理论上研究了5-甲基乙内酰脲及其硫代衍生物的气相质子亲和力。在B3LYP / 6-311 +(d,p)的理论水平上优化了所有可能的互变异构体的结构及其构象异构体。最终能量在B3LYP / 6-311 +(2df,2p)水平获得。咪唑啉酮衍生物5-甲基-2,4-二氧代咪唑烷,5-甲基-2-氧代-4-硫代咪唑烷,5-甲基-2-硫代-4-氧代咪唑烷和5-甲基-2,4-二硫代咪唑烷咪唑烷具有中等强度的质子亲和力。硫的质子化将大于氧气的质子化。最稳定的2O4O和2S4O质子化形式的质子连接到2位杂原子,而2O4S和2S4S的质子化优先发生在4位。不同互变异构体之间质子迁移的障碍相当大。对O-H〜+和S-H〜+相互作用的能量分解分析表明,键相互作用主要来自共价键的形成。库仑引力的贡献很小。

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