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Redox Activity and Two-Step Valence Tautomerism in a Family of Dinuclear Cobalt Complexes with a Spiroconjugated Bis(dioxolene) Ligand

机译:螺旋共轭双(二氧戊烯)配体的​​双核钴配合物的氧化还原活性和两步价互变异构。

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摘要

A family of dinuclear cobalt complexes with bridging bis(dioxolene) ligands derived from 3,3,3',3'-tetramethyl-1,1'-spirobis(indane-5,5',6,6'-tetrol) (spiroH_4) and ancillary ligands based on tris(2-pyridylmethyl)amine (tpa) has been synthesized and haracterized. The bis-(dioxolene) bridging ligand is redox-active and accessible in the (spiro~(cat-cat))~(4-), (spiro~(SQ-cat))~(3-) and (spiro~(SQ-SQ))~(2-) forms, (cat = catecholate, SQ = semiquinonate). Variation of the ancillary ligand (Me_ntpa; n = 0-3) by successive methylation of the 6-position of the pyridine rings influences the redox state of the complex, governing the distribution of electrons between the cobalt centers and the bridging ligands. Pure samples of salts of the complexes [Co_2(spiro)(tpa)_2]~(2+) (1), [Co_2(spiro)(Metpa)_2]~(2+) (2), [Co_2(spiro)(Me_2tpa)_2]~(2+) (3), [Co_2(spiro)(Me_3tpa)_2]~(2+) (4), [Co_2(spiro)(tpa)_2]~(3+) (5), and [Co_2(spiro)(tpa)_2]~(4+) (6) have been isolated, and 1, 4, and 6 have been characterized by single crystal X-ray diffraction. Studies in the solid and solution states using multiple techniques reveal temperature invariant redox states for 1, 2, and 4-6 and provide clear evidence for four different charge distributions: 1 and 2 are Co~Ⅲ-(spiro~(cat-cat))-Co~Ⅲ, 4 is Co~Ⅱ-(spiro~(SQ-SQ))-Co~Ⅱ, 5 is Co~Ⅲ-(spiro~(SQ-cat))-Co~Ⅲ, and 6 is Co~Ⅲ-(spiro~(SQ-SQ))-Co~Ⅲ. Of the six complexes, only 3 shows evidence of temperature dependence of the charge distribution, displaying a rare thermally induced two-step valence tautomeric transition from the Co~Ⅲ-(spiro~(cat-cat))-Co~Ⅲ form to Co~Ⅱ-(spiro~(SQ-cat))-Co~Ⅲ and then to Co~Ⅱ-(spiro~(SQ-SQ))-Co~Ⅱ in both solid and solution states. This is the first time a two-step valence tautomeric (VT) transition has been observed in solution. Partial photoinduction of the VT transition is also possible in the solid. Magnetic and spectroscopic studies of 5 and 6 reveal that spiroconjugation of the bis(dioxolene) ligand allows electronic interaction across the spiro bridge, suggesting that thermally activated vibronic coupling between the two cobalt-dioxolene moieties plays a key role in the two-step transition evident for 3.
机译:具有桥接双(二氧戊烯)配体的​​双核钴配合物家族,其衍生自3,3,3',3'-四甲基-1,1'-螺双(茚满-5,5',6,6'-四醇)(spiroH_4 )和基于三(2-吡啶基甲基)胺(tpa)的辅助配体已经合成并进行了表征。双-(二氧戊烯)桥联配体具有氧化还原活性,可在(spiro〜(cat-cat))〜(4-),(spiro〜(SQ-cat))〜(3-)和(spiro〜( SQ-SQ))〜(2-)形式,(猫=儿茶酚酸酯,SQ =半奎宁酸酯)。吡啶环6位连续甲基化引起的辅助配体(Me_ntpa; n = 0-3)的变化会影响配合物的氧化还原状态,从而控制电子在钴中心与桥连配体之间的分布。络合物[Co_2(螺)(tpa)_2]〜(2+)(1),[Co_2(螺)(Metpa)_2]〜(2+)(2),[Co_2(螺))盐的纯样品(Me_2tpa)_2]〜(2+)(3),[Co_2(螺)(Me_3tpa)_2]〜(2+)(4),[Co_2(螺)(tpa)_2]〜(3+)(5 )和[Co_2(spiro)(tpa)_2]〜(4+)(6)已分离,并且1,4和6已通过单晶X射线衍射表征。使用多种技术对固态和溶液态进行的研究揭示了1、2和4-6的温度不变氧化还原态,并为四种不同的电荷分布提供了明确的证据:1和2是Co〜Ⅲ-(spiro〜(cat-cat) )-Co〜Ⅲ,4是Co〜Ⅱ-(螺〜(SQ-SQ))-Co〜Ⅱ,5是Co〜Ⅲ-(螺〜(SQ-cat))-Co〜Ⅲ,6是Co 〜Ⅲ-(螺〜(SQ-SQ))-Co〜Ⅲ。在这六个配合物中,只有三个显示出电荷分布与温度有关的证据,显示出罕见的热诱导两步价互变异构体从Co〜Ⅲ-(螺〜(cat-cat))-Co〜Ⅲ形式转变为Co 〜Ⅱ-(螺〜(SQ-SQ-cat))-Co〜Ⅲ,然后变成固相和溶液状态的Co〜Ⅱ-(螺〜(SQ-SQ))-Co〜Ⅱ。这是第一次在溶液中观察到两步价互变异构(VT)过渡。 VT过渡的部分光诱导在固体中也是可能的。对5和6的磁性和光谱研究表明,双(二氧戊烯)配体的​​螺共轭能使电子相互作用跨越螺桥,这表明两个钴-二氧戊烯基团之间的热活化电子耦合在明显的两步过渡中起关键作用为3。

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  • 来源
    《Journal of the American Chemical Society》 |2013年第22期|8304-8323|共20页
  • 作者单位

    School of Chemistry, The University of Melbourne, Victoria, 3010, Australia;

    UdR INSTM and Department of Chemistry 'U. Schiff', University of Florence, 50019 Sesto Fiorentino (FI), Italy,Department of Applied Science and Technology, GuglieImo Marconi University, 00193, Rome, Italy;

    School of Chemistry, The University of Melbourne, Victoria, 3010, Australia;

    School of Chemistry, Monash University, Clayton, Victoria, 3800, Australia,Department of Chemistry, College of Science & Sustainable Energy Technologies (SET) Center, King Saud University, Saudi Arabia;

    School of Chemistry, Monash University, Clayton, Victoria, 3800, Australia;

    School of Chemistry, The University of Sydney, New South Wales, 2006, Australia;

    Mental Health Research Institute, The University of Melbourne, Victoria, 3010, Australia;

    School of Chemistry, The University of Melbourne, Victoria, 3010, Australia;

    School of Chemistry, The University of Melbourne, Victoria, 3010, Australia;

    School of Chemistry, Monash University, Clayton, Victoria, 3800, Australia;

    School of Chemistry, Monash University, Clayton, Victoria, 3800, Australia;

    School of Chemistry, Monash University, Clayton, Victoria, 3800, Australia;

    School of Chemistry and Physics, The University of Adelaide, South Australia, 5005, Australia;

    UdR INSTM and Department of Chemistry 'U. Schiff', University of Florence, 50019 Sesto Fiorentino (FI), Italy;

    School of Chemistry, The University of Melbourne, Victoria, 3010, Australia;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:12:39

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