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三价阳离子减缓电子向大环异双金属配合物的转移。

Trivalent Cations Slow Electron Transfer to Macrocyclic Heterobimetallic Complexes.

作者信息

Karnes Joseph P, Kumar Amit, Hopkins Leseberg Julie A, Day Victor W, Blakemore James D

机构信息

Department of Chemistry, University of Kansas, 1567 Irving Hill Road, Lawrence, Kansas 66045, United States.

出版信息

Inorg Chem. 2024 May 13;63(19):8710-8729. doi: 10.1021/acs.inorgchem.4c00230. Epub 2024 Apr 26.

Abstract

Incorporation of secondary redox-inactive cations into heterobimetallic complexes is an attractive strategy for modulation of metal-centered redox chemistry, but quantification of the consequences of incorporating strongly Lewis acidic trivalent cations has received little attention. Here, a family of seven heterobimetallic complexes that pair a redox-active nickel center with La, Y, Lu, Sr, Ca, K, and Na (in the form of their triflate salts) have been prepared on a heteroditopic ligand platform to understand how chemical behavior varies across the comprehensive series. Structural data from X-ray diffraction analysis demonstrate that the positions adopted by the secondary cations in the crown-ether-like site of the ligand relative to nickel are dependent primarily on the secondary cations' ionic radii and that the triflate counteranions are bound to the cations in all cases. Electrochemical data, in concert with electron paramagnetic resonance studies, show that nickel(II)/nickel(I) redox is modulated by the secondary metals; the heterogeneous electron-transfer rate is diminished for the derivatives incorporating trivalent metals, an effect that is dependent on steric crowding about the nickel metal center and that was quantified here with a topographical free-volume analysis. As related analyses carried out here on previously reported systems bear out similar relationships, we conclude that the placement and identity of both the secondary metal cations and their associated counteranions can afford unique changes in the (electro)chemical behavior of heterobimetallic species.

摘要

将二级氧化还原惰性阳离子引入异双金属配合物是调节以金属为中心的氧化还原化学的一种有吸引力的策略,但对引入强路易斯酸性三价阳离子的后果进行量化却很少受到关注。在此,在一个异双齿配体平台上制备了一系列七种异双金属配合物,它们将具有氧化还原活性的镍中心与镧、钇、镥、锶、钙、钾和钠(以它们的三氟甲磺酸盐形式)配对,以了解整个系列中化学行为是如何变化的。X射线衍射分析的结构数据表明,配体中类似冠醚位点的二级阳离子相对于镍所占据的位置主要取决于二级阳离子的离子半径,并且在所有情况下三氟甲磺酸盐抗衡阴离子都与阳离子结合。电化学数据与电子顺磁共振研究一致表明,镍(II)/镍(I)氧化还原受到二级金属的调节;对于包含三价金属的衍生物,异相电子转移速率降低,这种效应取决于镍金属中心周围的空间拥挤情况,并且在此通过地形自由体积分析进行了量化。由于在此对先前报道的体系进行的相关分析证实了类似的关系,我们得出结论,二级金属阳离子及其相关抗衡阴离子的位置和身份可以使异双金属物种的(电)化学行为发生独特的变化。

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