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首页> 外文期刊>Angewandte Chemie >Simultaneous SAXS and SANS Analysis for the Detection of Toroidal Supramolecular Polymers Composed of Noncovalent Supermacrocycles in Solution
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Simultaneous SAXS and SANS Analysis for the Detection of Toroidal Supramolecular Polymers Composed of Noncovalent Supermacrocycles in Solution

机译:用于检测溶液中非共价超分子聚合物的环形超分子聚合物的同时淋巴和SAN分析

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摘要

Molecular self-assembly primarily occurs in solution. To better understand this process, techniques capable of probing the solvated state are consequently required. Small-angle scattering (SAS) has a proven ability to detect and characterize solutions, but it is rarely applied to more complex assembly shapes. Here, small-angle X-ray and neutron scattering are applied to observe toroidal assemblies in solution. Combined analysis confirms that the toroids have a core-shell structure, with a p-conjugated core and an alkyl shell into which solvent penetrates. The dimensions determined by SAS agree well with those obtained by (dried-state) atomic force microscopy. Increasing the number of naphthalene units in the molecular building block yields greater rigidity, as evidenced by a larger toroid and a reduction in solvent penetration into the shell. The detailed structural analysis demonstrates the applicability of SAS to monitor complex solution-based self-assembly.
机译:分子自组装主要发生在溶液中。 为了更好地理解该过程,因此需要能够探测溶解状态的技术。 小角度散射(SAS)具有证明可以检测和表征解决方案的能力,但很少施加到更复杂的装配形状。 这里,将小角X射线和中子散射施用于溶液中观察环形组件。 组合分析证实环形具有核 - 壳结构,具有p缀合的芯和烷基壳,溶剂穿透溶剂。 通过SAS确定的尺寸与通过(干态)原子力显微镜获得的尺寸吻合良好。 增加分子构建块中的萘单元的数量产生更大的刚性,如较大的环形和溶剂渗透到壳体中的减少证明。 详细的结构分析表明了SAS监测基于溶液的自组装的适用性。

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