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首页> 外文期刊>Angewandte Chemie >Visible-Light-Driven Photoisomerization and Increased Rotation Speed of a Molecular Motor Acting as a Ligand in a Ruthenium(II) Complex
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Visible-Light-Driven Photoisomerization and Increased Rotation Speed of a Molecular Motor Acting as a Ligand in a Ruthenium(II) Complex

机译:可见光驱动的光异构化和增加的钌(II)配体中的分子马达的旋转速度。

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摘要

Toward the development of visible-light-driven molecular rotary motors, an overcrowded alkene-based ligand and the corresponding ruthenium(II) complex is presented. In our design, a 4,5-diazafluorenyl coordination motif is directly integrated into the motor function. The photochemical and thermal isomerization behavior has been studied by UV/Vis and NMR spectroscopy. Upon coordination to a Ru-II bipyridine complex, the photoisomerization process can be driven by visible (lambda(max) = 450 nm) instead of UV light and furthermore, a large increase of the speed of rotation is noted. DFT calculations point to a contraction of the diaza-fluorenyl lower half upon metal-coordination resulting in reduced steric hindrance in the "fjord region" of the molecule. Consequently, it is shown that metal-ligand interactions can play an important role in the adjustment of both photophysical and thermodynamic properties of molecular motors.
机译:为了发展可见光驱动的分子旋转马达,提出了一种过度拥挤的基于烯烃的配体和相应的钌(II)配合物。在我们的设计中,4,5-二氮杂芴基配位基序直接整合到运动功能中。通过UV / Vis和NMR光谱研究了光化学和热异构化行为。与Ru-II联吡啶配合物配位后,光异构化过程可以由可见光(λ(最大值)= 450 nm)而不是紫外光驱动,此外,旋转速度也有很大提高。 DFT计算表明在金属配位后,二氮杂芴基的下半部分收缩,导致分子“峡湾区”的位阻降低。因此,表明金属-配体相互作用可在分子电动机的光物理和热力学性质的调节中起重要作用。

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