首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Theoretical studies of the [2+4] Diels-Alder cycloaddition reactions of alkene analogues of the group 13 elements with toluene
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Theoretical studies of the [2+4] Diels-Alder cycloaddition reactions of alkene analogues of the group 13 elements with toluene

机译:第13组元素的烯烃类似物与甲苯的[2 + 4] Diels-Alder环加成反应的理论研究

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The potential energy surfaces for the cycloaddition reactions of formally double-bonded molecules containing group 13 elements have been studied using density functional theory (B3LYP/LANL2DZ). Five group 13 alkene analogues, ArXXAr, where X = B, Al, Ga, In, and Tl, have been chosen as model reactants in this work. Our present theoretical work predicts that the smaller the singlet-triplet splitting in ArXXAr, the lower the activation barrier and, in turn, the more rapid are its [4 + 2] cycloaddition reactions. Moreover, the theoretical investigations suggest that the relative dimeric reactivity decreases in the order B > Al > Ga > In > Tl. That is, the heavier the group 13 atom (X), the more stable is its dimetallene toward chemical reactions. In consequence, our results predict that the dimetallenes containing heavier group 13 elements (in particular, X = Ga, In, and Tl) should be stable and should be readily synthesized and isolated at room temperature. This is in good agreement with available experimental observations. Besides this, the singlet-triplet energy splitting of a dimetallene, as described in the configuration mixing model attributed to the work of Pross and Shaik, can be used as a diagnostic tool to predict its reactivity. The results obtained allow a number of predictions to be made.
机译:已使用密度泛函理论(B3LYP / LANL2DZ)研究了含13号元素的形式上双键分子的环加成反应的势能面。在这项工作中,选择了五个13类烯烃类似物ArXXAr,其中X = B,Al,Ga,In和Tl作为模型反应物。我们目前的理论工作预测,ArXXAr中的单重态-三重态分裂越小,活化势垒越低,进而,其[4 + 2]环加成反应越快。此外,理论研究表明相对二聚体反应性以B> Al> Ga> In> Tl的顺序降低。即,第13族原子(X)越重,其双金属原子对化学反应越稳定。结果,我们的结果预测,含有较重的13族元素(特别是X = Ga,In和Tl)的双金属透镜应该是稳定的,并且应该易于在室温下合成和分离。这与现有的实验观察非常吻合。除此之外,双金属的单重态-三重态能量分裂(如归因于Pross和Shaik的配置混合模型中所述)可以用作预测其反应性的诊断工具。获得的结果使得可以做出许多预测。

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