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首页> 外文期刊>Angewandte Chemie >Reversible Halide-Modulated Nickel-Nickel Bond Cleavage: Metal-Metal Bonds as Design Elements for Molecular Devices
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Reversible Halide-Modulated Nickel-Nickel Bond Cleavage: Metal-Metal Bonds as Design Elements for Molecular Devices

机译:可逆卤化物调制的镍-镍键裂解:金属-金属键作为分子器件的设计元素

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摘要

The synthesis and study of basic molecular devices are areas of research aimed toward understanding the fundamental design and functional parameters required for the construction of complex molecular machines. Transition metals have been used extensively in this context in conjunction with elegantly designed ligand frameworks. Typically, transition metals bind to different sets of donors in these frameworks, inducing large molecular motions, as a function of changes in pH value, redox processes, excitation by light, heating, introduction of additional ligands, and removal or addition of different metal ions. We report herein strategies based on chloride-mediated Ni—Ni bond cleavage and thermally accessible Ni—P bond cleavage to construct molecular analogues of hinge and mechanical crank mechanisms.
机译:基本分子装置的合成和研究是旨在了解构造复杂分子机器所需的基本设计和功能参数的研究领域。在这种情况下,过渡金属已与优雅设计的配体骨架一起广泛使用。通常,过渡金属与这些骨架中的不同组供体结合,根据pH值的变化,氧化还原过程,光激发,加热,引入其他配体以及去除或添加不同的金属离子,引起大分子运动。 。我们在此报告基于氯化物介导的Ni-Ni键裂解和可热访问的Ni-P键裂解的策略,以构建铰链和机械曲柄机制的分子类似物。

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