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Understanding the Origin of One- or Two-Step Valence Tautomeric Transitions in Bis(dioxolene)-Bridged Dinuclear Cobalt Complexes

机译:理解双(二氧化二烯) - 底核钴复合物中的单一或两步价互变异构体过渡的起源

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摘要

Valence tautomerism (VT) involves a reversible stimulated intramolecular electron transfer between a redox-active ligand and redox-active metal. Bis(dioxolene)-bridged dinuclear cobalt compounds provide an avenue toward controlled two-step VT interconversions of the form {Co~Ⅲ-cat-cat-Co~Ⅲ} ⇄ {Co~Ⅲ-cat- SQ-Co~Ⅱ}⇄{Co~Ⅱ-SQ-SQ-Co~Ⅱ} (cat~(2-) = catecholate, SQ~(·-) = semi- quinonate). Design flexibility for dinuclear VT complexes confers an advantage over two-step spin crossover complexes for future applications in devices or materials. The four dinuclear cobalt complexes in this study are bridged by deprotonated 3,3,3',3'- tetramethyl-1,1'-spirobi(indan)-5,5',6,6'-tetraol (spiroH_4) or 3,3,3',3'-tetramethyl-1,1'-spirobi(indan)-4,4',7,7'-tetrabromo- 5,5',6,6'-tetraol (Br_4spiroH_4) with Me_ntpa ancillary ligands (tpa = tris(2-pyridylmethyl)amine, n = 0-3 corresponds to methylation of the 6-position of the pyridine rings). Complementary structural, magnetic, spectroscopic, and density functional theory (DFT) computational studies reveal different electronic structures and VT behavior for the four cobalt complexes; one-step one-electron partial VT, two-step VT, incomplete VT, and temperature-invariant {Co~Ⅲ-cat-cat-Co~Ⅲ} states are observed. Electrochemistry, DFT calculations, and the study of a mixed-valence {Zn~Ⅱ-cat-SQ-Zn~Ⅱ} analog have allowed elucidation of thermodynamic parameters governing the one- and two-step VT behavior. The VT transition profile is rationalized by (1) the degree of electronic communication within the bis(dioxolene) ligand and (2) the matching of cobalt and dioxolene redox potentials. This work establishes a clear path to the next generation of two-step VT complexes through incorporation of mixed-valence class II and class II- III bis(dioxolene) bridging ligands with sufficiently weak intramolecular coupling.
机译:价互变异物(VT)涉及氧化还原活性配体和氧化还原活性金属之间的可逆刺激的分子内电子传递。双(二氧化二烯) - 底核钴化合物提供了朝向{Co〜Ⅲ-cat-cat-co-co-co〜Ⅱ} {co〜Ⅲ-cat-sq-co〜Ⅱ}⇄ {CO〜Ⅱ-SQ-SQ-CO〜Ⅱ}(CAT〜(2-)=感应,Sq〜(· - )=半驰族)。 Dinuclect vt复合物的设计灵活性赋予了两步自旋交叉复合物的优势,用于设备或材料中的未来应用。本研究中的四个二核钴络合物通过反驳的3,3,3',3'-四甲基-1,1'-螺螺飞物(indan)-5,5',6,6'-四醇(Sporoh_4)或3 ,3,3',3'-四甲基-1,1'-spirobi(indan)-4,4',7,7'-四romo-5,5',6,6'-四醇(Br_4spiroh_4),me_ntpa辅助配体(TPA = Tris(2-吡啶基甲基)胺,n = 0-3对应于吡啶环的6-位置的甲基化)。互补结构,磁,光谱和密度泛函(DFT)计算研究显示了四个钴络合物的不同电子结构和VT行为;观察一步一步一电子部分VT,两步VT,不完全VT和温度不变{CO〜Ⅲ-CAT-CAT-CAT-CO〜Ⅲ}。电化学,DFT计算和混合价的研究{Zn〜Ⅱ-Cat-SQ-Zn〜Ⅱ}模拟允许阐明治疗单步和两步VT行为的热力学参数。 VT过渡轮廓由(1)双(二甲二烯)配体内的电子通信程度和(2)钴和二氧化烯氧化还原电位的匹配来合理化。该工作通过掺入具有足够弱的分子内偶联的混合价II和III-III族(二甲醇)桥接配体来确定下一代两步VT复合物的明显路径。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第24期|10692-10704|共13页
  • 作者单位

    School of Chemistry University of Melbourne Parkville VIC 3010 Australia;

    Department of Chemistry Colorado State University Fort Collins 80S23 United States;

    School of Chemistry University of Melbourne Parkville VIC 3010 Australia;

    School of Chemistry University of Melbourne Parkville VIC 3010 Australia;

    School of Chemistry University of Melbourne Parkville VIC 3010 Australia;

    Department of Chemistry Colorado State University Fort Collins 80523 United States;

    Institute of Physical and Organic Chemistry Southern Federal University 344090 Rostov-on-Don Russian Federation;

    School of Chemistry University of Melbourne Parkville VIC 3010 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:16:45

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