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Synthesis and single-molecule imaging of highly mobile adamantane-wheeled nanocars

机译:高移动性金刚烷轮式纳米汽车的合成和单分子成像

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The synthesis and single-molecule imaging of two inherently fluorescent nanocars equipped with adamantane wheels is reported. The nanocars were imaged using 4,4-difluoro-4-bora-3a,4a-diaza-s-indacene (BODIPY) as the chromophore, which was rigidly incorporated into the nanocar chassis via Sonogashira cross-coupling chemistry that permitted the synthesis of nanocars having different geometries. In particular, studied here were four- and three-wheeled nanocars with adamantane wheels. It was found that, for the four-wheeled nanocar, the percentage of moving nanocars and the diffusion constant show a significant improvement over p-carborane-wheeled nanocars with the same chassis. The three-wheeled nanocar showed only limited mobility due to its geometry. These results are consistent with a requisite wheel-like rolling motion. We furthermore developed a model that relates the percentage of moving nanocars in single-molecule experiments with the diffusion constant. The excellent agreement between the model and the new results presented here as well as previous single-molecule studies of fluorescent nanocars yields an improved understanding of motion in these molecular machines.
机译:报道了两个固有的装有金刚烷车轮的荧光纳米汽车的合成和单分子成像。使用4,4-二氟-4-硼3a,4a-二氮杂-s-茚并四烯(BODIPY)作为生色团对纳米汽车进行成像,通过Sonogashira交叉偶联化学将其牢固地结合到纳米汽车底盘中,从而允许合成具有不同几何形状的纳米汽车。特别是,这里研究的是带有金刚烷车轮的四轮和三轮纳米汽车。结果发现,对于四轮纳米汽车,与具有相同底盘的对-碳烷汽车相比,移动纳米汽车的百分比和扩散常数显示出显着改善。由于其几何形状,三轮纳米汽车仅显示出有限的机动性。这些结果与必需的轮状滚动运动一致。我们还开发了一个模型,该模型将单分子实验中移动的纳米汽车的百分比与扩散常数相关联。该模型与此处介绍的新结果以及先前对荧光纳米汽车的单分子研究之间的出色一致性,使人们对这些分子机器中的运动有了更深入的了解。

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