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Dual stimuli-responsive rotaxane-branched dendrimers with reversible dimension modulation

机译:具有可逆尺寸调制的双重刺激响应轮烷支化树枝状大分子

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摘要

With the aim of mimicking biological machines, in which the delicate arrangement of nanomechanical units lead to the output of specific functions upon the external stimulus, the construction of dual stimuli-responsive rotaxane-branched dendrimers was realized in this study. Starting from a switchable organometallic [2]rotaxane precursor, the employment of a controllable divergent approach allowed for the successful synthesis of a family of rotaxane-branched dendrimers up to the third generation with 21 switchable rotaxane moieties located on each branch. More importantly, upon the addition and removal of dimethylsulfoxide (DMSO) molecule or acetate anion as the external stimulus, the amplified responsiveness of the switchable rotaxane units endowed the resultant rotaxane-branched dendrimers the solvent- or anion-controlled molecular motions, thus leading to the dimension modulation. Therefore, we successfully constructed a family of rotaxane-branched dendrimers with dual stimuli-responsiveness that will be a privileged platform for the construction of dynamic supramolecular materials.
机译:为了模仿生物机械的目的,其中纳米机械单元的精细排列导致在外部刺激下输出特定功能,本研究实现了双重刺激响应的轮烷支链树枝状聚合物的构建。从可转换的有机金属[2]轮烷的前体开始,采用可控制的发散方法,成功地合成了轮烷支化的树枝状大分子家族,直至第三代,每个分支上有21个可转换的轮烷部分。更重要的是,在添加和去除作为外部刺激的二甲亚砜(DMSO)分子或乙酸根阴离子后,可切换轮烷单元的放大响应性使所得的轮烷支化的树枝状大分子具有溶剂或阴离子控制的分子运动,从而导致尺寸调制。因此,我们成功地构建了具有双重刺激反应性的轮烷支链树枝状大分子家族,这将是构建动态超分子材料的重要平台。

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