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首页> 外文期刊>ACS Omega >High Reusability of Catalytically Active Gold Nanoparticles Immobilized in Core–Shell Hydrogel Microspheres
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High Reusability of Catalytically Active Gold Nanoparticles Immobilized in Core–Shell Hydrogel Microspheres

机译:固定在核壳水凝胶微球中的催化活性金纳米粒子的高可重复使用性

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The reusability of hybrid core–shell microgels, whose core surfaces were decorated with gold nanoparticles, was investigated in terms of catalysis activity. Hybrid core–shell microgels composed of a rigid core and water-swollen gel shell endowed the immobilized gold nanoparticles with a high dispersion stability, which resulted in excellent catalytic activity. In contrast to free Au nanoparticles and conventional hybrid microgels, where the Au nanoparticles are randomly distributed over the entire microgel templates, the hydrogel shell part of the hybrid core–shell microgels suppressed the aggregation between the microgels and Au nanoparticles in individual microgels, which improved the reusability for the catalysis reaction. The results of this study should help to develop advanced catalyst systems that require high reusability even when the chemical reactions occur in aqueous solution and external stimuli are applied.
机译:研究了混合核-壳微凝胶的可重复使用性,其核心表面装饰有金纳米颗粒,具有催化活性。由刚性核和水溶胀的凝胶壳组成的混合核-壳微凝胶赋予固定化的金纳米粒子以高的分散稳定性,从而产生了出色的催化活性。与游离的Au纳米颗粒和常规的混合微凝胶不同,Au纳米颗粒随机分布在整个微凝胶模板上,混合核-壳微凝胶的水凝胶壳部分抑制了单个微凝胶中微凝胶和Au纳米颗粒之间的聚集,从而改善了催化反应的可重用性。这项研究的结果应有助于开发先进的催化剂体系,即使在水溶液中发生化学反应并施加外部刺激时,该体系也需要高度可重复使用性。

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