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Motion Control of Polymeric Nanomotors Based on Host-Guest Interactions

机译:基于宿主互动的聚合物纳米电阻的运动控制

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Controlling the motion of artificial self-propelled micro- and nanomotors independent of the fuel concentration is still a great challenge. Here we describe the first report of speed manipulation of supramolecular nanomotors via blue light-responsive valves, which can regulate the access of hydrogen peroxide fuel into the motors. Light-sensitive polymeric nanomotors are built up via the self-assembly of functional block copolymers, followed by bowl-shaped stomatocyte formation and incorporation of platinum nanoparticles. Subsequent addition of beta-cyclodextrin (beta-CD) leads to the formation of inclusion complexes with the trans-isomers of the azobenzene derivatives grafted from the surfaces of the stomatocytes. beta-CDs attachment decreases the diffusion rate of hydrogen peroxide into the cavities of the motors because of partly blocking of the openings of the stomatocyte. This results in a lowering of the speed of the nanomotors. Upon blue light irradiation, the trans-azobenzene moieties isomerize to the cis-form, which lead to the detachment of the beta-CDs due to their inability to form complexes with the cis-isomer. As a result, the speed of the nanomotors increases accordingly. Such a conformational change provides us with the unique possibility to control the speed of the supramolecular nanomotor via light-responsive host-guest complexation. We envision that such artificial responsive nano-systems with controlled motion could have potential applications in drug delivery.
机译:控制独立于燃料浓度无关的人工自推进微型和纳米热器的运动仍然是一个巨大的挑战。在这里,我们描述了通过蓝光响应阀来描述超分子纳米热器速度操纵的第一个报告,这可以调节过氧化氢燃料的进入电机。通过功能嵌段共聚物的自组装来构建光敏聚合物纳米电阻,然后通过碗状的气囊细胞形成和掺入铂纳米颗粒。随后加入β-环糊精(β-CD)导致包含从气囊表面的表面接枝的偶氮苯衍生物的反式异构体的形成。 β-CDS附件降低了过氧化氢的扩散速率,因为部分地阻断了气囊细胞的开口。这导致纳米热量的速度降低。在蓝光照射时,反式偶氮苯部分对顺式形式异构化,这导致β-CDS的脱离,因为它们无法与顺式异构体形成复合物。结果,纳米电机的速度相应地增加。这种构象变化为我们提供了通过光响应宿主络合来控制超分子纳米电机的速度的独特可能性。设想具有受控运动的这种人造敏感纳米系统可以具有药物递送的潜在应用。

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