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Solvophobically-driven 3-D self-assembly of 'exploded''-type polyphenylene dendrimers

机译:溶剂化驱动的“爆炸”型聚亚苯基树枝状大分子的3-D自组装

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摘要

The three-dimensional self-assembly of a shape-persistent third-generation polyphenylene dendrimer into an extensively interdigitated hexamer was studied with ultra-high-mass MALDI-TOF mass spectrometry and dynamic light scattering. Remarkably, the high-precision assembly occurs in the absence of electrostatic or hydrogen-bonding interactions, and is the product of Lilliputian solvophobic interactions, mediated by the dendrimer arm size and shape. The assembly size can be tuned from monomer to dimer to hexamer simply by varying the solvent composition. Further growth or chain end densification results in fundamentally different aggregation or in disruption of the perfect packaging of the macromolecules. This hexameric structural motif is completely different than what has been previously accessible with conventional self-assembly and marks the beginning of a new direction in 3D nanofabrication.
机译:利用超高质量MALDI-TOF质谱和动态光散射研究了形状持久的第三代聚亚苯基树枝状聚合物到广泛交叉指六聚体的三维自组装。值得注意的是,高精度组装是在没有静电或氢键相互作用的情况下发生的,并且是由树状聚合物臂的大小和形状介导的Lilliputian疏液相互作用的产物。只需改变溶剂组成,即可将组装尺寸从单体调整为二聚体,再调整为六聚体。进一步的增长或链端致密化会导致根本不同的聚集或破坏大分子的完美包装。该六聚体结构基序与以前的常规自组装方法完全不同,标志着3D纳米加工新方向的开始。

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