通过逐步共轭和对称区隔自发形成 π-共轭聚合物胶体分子

IF 13 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Small Pub Date : 2024-10-10 DOI:10.1002/smll.202404934
Osamu Oki, Shun-Ichiro Noguchi, Sota Nakayama, Hiroshi Yamagishi, Junpei Kuwabara, Takaki Kanbara, Yohei Yamamoto
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引用次数: 0

摘要

凝聚是指由聚合物溶质引起的液体相分离,有时会形成低聚液滴簇。由于团聚是漂移液滴随机碰撞的结果,因此团聚的形态并不均匀。在这里,我们报告了独特的有组织共凝聚,产生了具有单分散尺寸、形态对称性和成分异质性的胶体分子。我们研究了两种合成聚合物混合物的共凝现象,发现其中一种聚合物首先共凝成核心液滴,另一种聚合物随后在其上共凝形成卫星液滴。卫星液滴围绕核心液滴对称排列,并在不失去形态的情况下凝固。卫星液滴的数量及其对称性可根据液滴的化学亲和性和直径进行调节。这一发现凸显了共凝作为一种非模板和非共价途径形成具有结构和功能复杂性的非球面胶体材料的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spontaneous Formation of π-Conjugated Polymeric Colloidal Molecules Through Stepwise Coacervation and Symmetric Compartmentalization.

Spontaneous Formation of π-Conjugated Polymeric Colloidal Molecules Through Stepwise Coacervation and Symmetric Compartmentalization.

Coacervation, the phase separation of liquid induced by polymeric solutes, sometimes results in the formation of oligomeric clusters of droplets. The morphology of the clusters is non-uniform because the clustering is a consequence of the random collisions of the drifting droplets. Here we report distinctively organized coacervation, yielding colloidal molecules with monodisperse size, morphological symmetry, and compositional heterogeneity. We investigate the coacervation of a mixture of two types of synthetic polymers and find that one of the polymers coacervates first and serves as a core droplet, on which the other polymer coacervates subsequently to form satellite droplets. The satellite droplets arrange themselves symmetrically around the core and solidify without losing the morphology. The number of satellites and their symmetry are modulable depending on the chemical affinity and the diameter of the droplets. This finding highlights the capability of coacervation as a non-templated and non-covalent pathway to form aspherical colloidal materials with structural and functional complexity.

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来源期刊
Small
Small 工程技术-材料科学:综合
CiteScore
17.70
自引率
3.80%
发文量
1830
审稿时长
2.1 months
期刊介绍: Small serves as an exceptional platform for both experimental and theoretical studies in fundamental and applied interdisciplinary research at the nano- and microscale. The journal offers a compelling mix of peer-reviewed Research Articles, Reviews, Perspectives, and Comments. With a remarkable 2022 Journal Impact Factor of 13.3 (Journal Citation Reports from Clarivate Analytics, 2023), Small remains among the top multidisciplinary journals, covering a wide range of topics at the interface of materials science, chemistry, physics, engineering, medicine, and biology. Small's readership includes biochemists, biologists, biomedical scientists, chemists, engineers, information technologists, materials scientists, physicists, and theoreticians alike.
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