封面光刺激到达微流中的选择性中间体:从超分子共聚物到微盘结构的一次性转化(ChemSystemsChem 6/2024)

IF 3.1 Q2 CHEMISTRY, MULTIDISCIPLINARY
Akira Kaneyoshi, Shota Nomura, Takato Maeda, Dr. Takahiro Kusukawa, Dr. Yoshihiro Kikkawa, Dr. Munenori Numata
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引用次数: 0

摘要

Munenori Numata 及其合作者的研究文章展示了一个由流动和光驱动的耗散自组装系统。超分子共聚和从正向聚合物末端卷起的过程产生了离散的微米级超分子结构,这种结构既具有分子级的内部复杂性,又具有分子尺度的长程有序性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Front Cover: Photostimuli Reach a Selective Intermediate in a Microflow: One-Shot Transformation from a Supramolecular Co-Polymer to a Micro-Disk Structure (ChemSystemsChem 6/2024)

Front Cover: Photostimuli Reach a Selective Intermediate in a Microflow: One-Shot Transformation from a Supramolecular Co-Polymer to a Micro-Disk Structure (ChemSystemsChem 6/2024)

In the Research Article by Munenori Numata and co-workers a dissipative self-assembly system powered by flow and light is demonstrated. Supramolecular co-polymerization and rolling-up from the forward polymer's end led to the creation of discrete micrometer-sized supramolecular architecture featuring both molecular-level inner complexity and long-range order over molecular scale.

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CiteScore
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