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首页> 外文期刊>Chemistry: A European journal >Synthesis and Reactivity of [Penta(4-halogenophenyl)cyclopentadienyl]-[hydrotris(indazolyl)borato]ruthenium(II) Complexes: Rotation-Induced Fosbury Flop in an Organometallic Molecular Turnstile
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Synthesis and Reactivity of [Penta(4-halogenophenyl)cyclopentadienyl]-[hydrotris(indazolyl)borato]ruthenium(II) Complexes: Rotation-Induced Fosbury Flop in an Organometallic Molecular Turnstile

机译:[五(4-卤代苯基)环戊二烯基]-[氢三(吲唑基)硼酸酯]钌(II)配合物的合成和反应性:旋转诱导的有机金属分子闸中的Fosbury触发器。

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摘要

The preparation of ruthenium(II) complexes coordinated to a penta(4-halogeno)phenylcyclopentadienyl ligand and to the hydrotris(indazolyl)borate ligand are detailed. Our strategy involves first the coordination of the penta(4-bromo)phenylcyclopentadienyl ligand by reaction with the ruthenium-carbonyl cluster followed by the coordination of the tripodal ligand. The pentabrominated precursor was successfully converted to the pentaiodinated derivative by using the Klapars-Buchwald methodology, applied for the first time on organometallic substrates. Cross-coupling reactions were performed on both pentabromo and pentaiodo complexes to introduce in a single step the five peripheric ferrocenyl fragments required to obtain a potential molecular motor. The two ligands present in the ruthenium complexes undergo a correlated rotation that was established both experimentally by NMR experiments and an X-ray diffraction study, and theoretically by DFT calculations. The potential-energy curve obtained by DFT revealed the energy barrier of the gearing mechanism to be only 4.5 kcal mol(-1). These sterically highly constrained complexes can be regarded as organometallic molecular turnstiles.
机译:详细介绍了与五(4-卤代)苯基环戊二烯基配体和氢三(吲唑基)硼酸酯配体配位的钌(II)配合物的制备。我们的策略涉及首先通过与钌-羰基簇反应来配位五(4-溴)苯基环戊二烯基配体,然后配位三脚架配体。通过使用首次在有机金属基质上使用的Klapars-Buchwald方法,将五溴化前体成功转化为五碳五代衍生物。在五溴和戊二酮配合物上进行交叉偶联反应,以一步法引入获得潜在分子马达所需的五个外围二茂铁基片段。钌络合物中存在的两个配体经历了相关的旋转,该旋转通过NMR实验和X射线衍射研究实验确定,并且理论上通过DFT计算确定。通过DFT获得的势能曲线揭示了齿轮传动机构的能量屏障仅为4.5 kcal mol(-1)。这些空间高度受限的配合物可以被视为有机金属分子旋转栅。

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