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Photoswitchable rotaxanes on gold nanoparticles

机译:金纳米粒子上的可光转换轮烷

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We studied rotaxanes that consisted of a molecular axle, with a photoactive 9-Aryl-9-methoxy-acridane moiety at one end, and a tetracationic ring of cyclobis(paraquat-p-phenylene) (CBQT~(4+)). The aim of the study was to deposit the axle ends onto gold nanoparticles (AuNPs). First, we introduced thioctic acid into the axle molecules. Then, rotaxanes were deposited on AuNPs by two methods: 1) Pseudorotaxanes were deposited on the gold surface by forming rotaxanes with the AuNP as a terminator to prevent unthreading of the ring structure; and 2) a chain containing the thioctic ester was introduced into a complete rotaxane, and then it was deposited on the AuNP with the aid of an exchange process. The photoheterolysis of the acridane unit resulted in formation of the corresponding acridinium methoxide; this, in turn, could thermally react to return to the acridane moiety. Due to the creation of a positive charge, the ring moved from the acridane station to a second, evasive station within the axle. This switching cycle could also take place when deposited on the gold surface. However, on the gold surface, the ring movement associated with the switching process was unidirectional.
机译:我们研究了由分子轴,一端具有光敏9-芳基-9-甲氧基-ac烷部分和环双(百草枯-对亚苯基)(CBQT〜(4+))的四阳离子环组成的轮烷。该研究的目的是将车轴端部沉积到金纳米颗粒(AuNPs)上。首先,我们将硫辛酸引入到车轴分子中。然后,通过两种方法将轮烷沉积在AuNPs上:1)通过以AuNP为终止剂形成轮烷以防止环结构松脱,将伪轮烷沉积在金表面上。 2)将含有硫辛酸酯的链引入完整的轮烷中,然后借助交换过程将其沉积在AuNP上。 cri啶单元的光杂分解导致形成相应的甲醇cri啶;反过来,这可能会发生热反应,返回到cri啶部分。由于产生了正电荷,环从the啶工作站移至车轴内的第二个规避站。当沉积在金表面上时,该切换循环也可能发生。但是,在金表面上,与切换过程相关的环运动是单向的。

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  • 来源
    《Organic & biomolecular chemistry 》 |2011年第9期| p.3549-3559| 共11页
  • 作者单位

    Institute of Chemistry, Humboldt-Universitdt zu Berlin, Brook-Taylor-Str.2, D-12489, Berlin, Germany;

    Institute of Chemistry, Humboldt-Universitdt zu Berlin, Brook-Taylor-Str.2, D-12489, Berlin, Germany;

    Institute of Chemistry, Humboldt-Universitdt zu Berlin, Brook-Taylor-Str.2, D-12489, Berlin, Germany;

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