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Pyrazolium- and 1,2-Cyclopentadiene-Based Ligands as σ-Donors: a Theoretical Study of Electronic Structure and Bonding

机译:基于吡唑鎓和1,2-环戊二烯的配体作为σ-供体:电子结构和键合的理论研究

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摘要

A high-level theoretical investigation of 1,2-cyclopentadiene (4) was performed using density functional theory and wave function methods. The results reveal that, in contrast to earlier assumptions, the ground state of this ephemeral “allene” is carbene-like with a small diradical component. Furthermore, the electronic structure and chemistry of 4 are found to parallel that of 1,2,4,6-cycloheptatetraene: both molecules possess a low-lying excited singlet state with a closed-shell carbenic structure, enabling rich coordination chemistry. Energy decomposition analyses conducted for currently unknown metal complexes of 4 as well as those involving stable carbenes based on the pyrazolium framework (aka “bent allenes” or remote N-heterocyclic carbenes) indicate that all investigated ligands form particularly strong metal–carbon bonds. Most notably, without exocyclic π-type substituents, 4 and pyrazolin-4-ylidenes are the strongest donor ligands examined, in large part because of the energy and shape of their highest occupied molecular orbital. As a whole, the current work opens a new chapter in the chemistry of 1,2-cyclopentadiene, which is hoped to spark renewed interest among experimentalists. In addition, results from the conducted bonding analyses underline that more emphasis should be placed on purely carbocyclic carbenes as unprecedented σ-donor strengths can be realized through this route.
机译:使用密度泛函理论和波动函数方法对1,2-环戊二烯(4)进行了高级理论研究。结果表明,与先前的假设相反,该短暂的“艾伦”的基态是类似卡宾的,带有少量的双自由基。此外,发现4的电子结构和化学性质与1,2,4,6-环庚酸酯的电子结构和化学性质平行:两种分子均具有低位的激发单线态和闭壳的羧基结构,从而实现了丰富的配位化学。对目前未知的4种金属配合物以及涉及基于吡唑框架的稳定碳烯(也称为“弯曲的烯”或较远的N杂环碳烯)进行的能量分解分析表明,所有研究的配体均形成特别牢固的金属-碳键。最值得注意的是,在没有环外π型取代基的情况下,4和吡唑啉-4-吡咯是最强的供体配体,这在很大程度上是因为它们的最高占据分子轨道的能量和形状。总的来说,当前的工作为1,2-环戊二烯的化学开辟了新的篇章,希望引起实验学家们的新兴趣。此外,进行的键合分析的结果强调,应更加重视纯碳环碳烯,因为通过这种途径可以实现空前的σ供体强度。

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