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两亲性金纳米团簇介导的光热微乳液聚合

Photothermal Miniemulsion Polymerization by Amphiphilic Gold Nanoclusters.

作者信息

Yang Ning, Kang Yuetong, Liu Jiaren, Wang Jiaxi, Zan Yonghui, Zhao Xuan, Wang Xiaoyu, Li Lidong

机构信息

State Key Laboratory for Advanced Metals and Materials, School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing, 100083, P. R. China.

出版信息

Chem Asian J. 2025 Mar 3;20(5):e202401194. doi: 10.1002/asia.202401194. Epub 2025 Jan 8.

Abstract

Gold nanoclusters (AuNCs), which are approximately 2 nm in size, exhibit distinctive photophysical and catalytic properties, but their performance is often compromised by environmental factors. To mitigate these challenges, attempts have been made to incorporate AuNCs into polymer matrices to enhance their stability. Miniemulsion polymerization has proven to be an effective method for fabricating organic-inorganic composites. Here, we present a facile photothermal-assisted method for miniemulsion polymerization utilizing AuNCs, which serve as co-stabilizers of the emulsion and photothermal conversion agents. By grafting tryptamine onto hydrophilic AuNCs, the amphiphilic AuNCs were spontaneously adsorbed at the styrene/water interfaces, resulting in stable nanoemulsions. Taking advantage of the photothermal properties of surface-bounded AuNCs, rapid polymerization of styrene within the nanoemulsion was successfully initiated by external laser irradiation. The prepared nanocomposites inherited the photothermal activity of AuNCs and exhibited good photothermal stability and repeatability. This approach not only facilitates remote control of chemical reactions, but also optimizes the distribution of AuNCs within the final polymer matrix, thereby enabling the efficient synthesis of nanocomposites while exploiting the unique photofunctionality of AuNCs.

摘要

金纳米团簇(AuNCs)的尺寸约为2纳米,具有独特的光物理和催化性能,但其性能常常受到环境因素的影响。为了应对这些挑战,人们尝试将AuNCs掺入聚合物基质中以提高其稳定性。微乳液聚合已被证明是制备有机-无机复合材料的有效方法。在此,我们提出一种利用AuNCs进行微乳液聚合的简便光热辅助方法,AuNCs作为乳液的共稳定剂和光热转换剂。通过将色胺接枝到亲水性AuNCs上,两亲性AuNCs自发吸附在苯乙烯/水界面上,形成稳定的纳米乳液。利用表面结合的AuNCs的光热性质,通过外部激光照射成功引发了纳米乳液中苯乙烯的快速聚合。制备的纳米复合材料继承了AuNCs的光热活性,并表现出良好的光热稳定性和可重复性。这种方法不仅便于远程控制化学反应,还优化了AuNCs在最终聚合物基质中的分布,从而能够在利用AuNCs独特光功能的同时高效合成纳米复合材料。

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