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首页> 外文期刊>ACS Omega >Utilizing the Azaazulene Scaffolds in the Design of New Organic Superbases
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Utilizing the Azaazulene Scaffolds in the Design of New Organic Superbases

机译:在新的有机超级碱设计中利用氮杂氮烯骨架。

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摘要

New neutral organic superbases with 1-azaazulene(s) as a molecular backbone are computationally designed, employing two basic substituents: dimethylaminocyclopropen-imines (CPI) and dimethylaminocyclopropeniminophosphazenes (CPI-P). Their proton affinities, gas basicities, and pKa values in acetonitrile are obtained using density functional theory. Azaazulenes substituted with CPI have a computed PA in the gas phase ranging between 272.9 and 306.8 kcal mol–1, with pKa values in acetonitrile between 28.8 and 36 units. The substitution with the CPI-P group resulted in even stronger superbases, with a PA from 296.5 to 335.2 kcal mol–1 and corresponding pKa values from 33.9 to 50 units. This exceptionally strong thermodynamic basicity is accompanied by very high kinetic basicity as well; contrary to typical proton sponges, the release of a proton from the conjugate superbase does not demand high activation energy. Because synthetic routes for both substituents and azaazulenes are already known, newly designed superbases represent suitable targets for synthesis and application.
机译:通过使用两个基本取代基:二甲基氨基环丙烯亚胺(CPI)和二甲基氨基环丙烯基氨基磷腈(CPI-P),通过计算设计了以1-氮杂氮烯为分子骨架的新型中性有机超碱。使用密度泛函理论获得其在乙腈中的质子亲和力,气体碱性和pKa值。用CPI取代的氮杂azazulenes在气相中的计算出的PA在272.9至306.8 kcal mol-1之间,乙腈中的pKa值在28.8至36单位之间。 CPI-P组的取代产生了更强的超碱,PA从296.5到335.2 kcal mol-1,相应的pKa值从33.9到50单位。这种异常强大的热力学基础性也伴随着很高的动力学基础性。与典型的质子海绵相反,质子从共轭超碱中释放不需要高活化能。由于取代基和氮杂azazulenes的合成途径是已知的,因此新设计的超碱基代表了适合合成和应用的靶标。

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