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过渡金属催化硫氧化反应中的周期性趋势和分子内重排效应

Periodic Trends and Fluxionality Effects on Transition Metal Catalyzed Sulfoxidation.

作者信息

Garay-Ruiz Diego, Zonta Cristiano, Lovat Silvia, Sanz Azcona Fátima, González-Fabra Joan, Bo Carles, Licini Giulia

机构信息

Institute of Chemical Research of Catalonia (ICIQ), Barcelona Institute of Science & Technology (BIST), Av. Països Catalans, 16, 43007 Tarragona, Spain.

Dipartimento di Scienze Chimiche, Università degli Studi di Padova, via Marzolo 1, 35131 Padova, Italy.

出版信息

ACS Omega. 2024 Sep 5;9(37):38798-38808. doi: 10.1021/acsomega.4c04831. eCollection 2024 Sep 17.

Abstract

Despite the extended interest in d metal complexes as catalysts for peroxide activation and eventual oxygen transfer processes, there are still gaps in the understanding of how they proceed at the microscopic level. Herein, we have considered sulfide oxidation with cumyl hydroperoxide as a test system, performing the reaction with a series of eight different aminotriphenolate d metal complexes: Ti(IV), Zr(IV), Hf(IV), V(V), Nb(V), Ta(V), Mo(VI), and W(VI). The reactivity and selectivity of the catalytic systems, as well as the effect of a strong Lewis base (dimethylhexyl--oxide), have been determined experimentally, correlating kinetic values with Sanderson electronegativity values. Theoretical calculations of the catalytic cycles have been performed to have a clearer description of the role of the reactive peroxo species. Combining experimental results and DFT predictions, we propose suitable mechanisms for all eight metal aminotriphenolates, rationalizing the expected periodic trends, while also unveiling the unique reaction pathways available to highly flexible vanadium complexes.

摘要

尽管人们对d金属配合物作为过氧化物活化及最终氧转移过程的催化剂有着广泛的兴趣,但在微观层面上对其反应过程的理解仍存在差距。在此,我们以过氧化异丙苯氧化硫化物作为测试体系,用一系列八种不同的氨基三酚盐d金属配合物:Ti(IV)、Zr(IV)、Hf(IV)、V(V)、Nb(V)、Ta(V)、Mo(VI)和W(VI)进行反应。通过实验确定了催化体系的反应活性和选择性,以及强路易斯碱(二甲基己基醚)的影响,并将动力学值与桑德森电负性值相关联。对催化循环进行了理论计算,以便更清楚地描述活性过氧物种的作用。结合实验结果和密度泛函理论预测,我们为所有八种金属氨基三酚盐提出了合适的反应机理,解释了预期的周期性趋势,同时也揭示了高度灵活的钒配合物所具有的独特反应途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18a3/11411679/0c76eaa8d75a/ao4c04831_0001.jpg

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