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首页> 外文期刊>New Journal of Chemistry >Plasmonic core-shell ionic microgels for photo-tuning catalytic applications
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Plasmonic core-shell ionic microgels for photo-tuning catalytic applications

机译:用于光调催化应用的等离子体芯 - 壳离子微凝胶

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摘要

Development of a breathing support with superior binding affinity for the facile immobilization of Au nanoparticles (Au NPs) for remotely controlled chemical reactions is of immense scientific interest in catalytic applications. Herein, a straightforward and fast electrostatic self-assembly of Au NPs onto near-infrared (NIR) light-responsive plasmonic core-shell thermosensitive ionic microgels, which are based on gold nanorods (Au NRs) coated with microgel shells of ionic liquids, has been constructed. These self-assembled nanocomposites exhibit high catalytic activity and controllability as compared to other Au-based catalysts reported in literature for the reduction of 4-nitrophenol. In the entire catalytic process, the NIR laser acts as a motor to drive the plasmonic core-shell ionic microgels for breathing and thereby tunes the progress of the catalytic reaction. Our results may provide a novel strategy, which is completely different from other traditional modes, to regulate the catalytic activity. The realization of this breathing modulation method induced by a remotely controlled way may create possibilities for the design of functional nanomaterials that can serve as intelligent catalysts with excellent catalytic activity.
机译:呼吸载体的呼吸载体对偏远的控制化学反应的Au纳米颗粒(Au nps)的体内固定化的呼吸载体对催化应用的巨大科学感兴趣。这里,Au nps的直接和快速的静电自组装到近红外(nir)光响应性等离子体核心 - 壳热敏离子微凝胶,其基于涂有离子液体的微凝胶壳的金纳米棒(Au nrs),具有建成了。与在文献中报道的其他Au的催化剂相比,这些自组装纳米复合材料具有高催化活性和可控性,用于减少4-硝基苯酚。在整个催化过程中,NIR激光器用作电动机以驱动等离子体芯 - 壳离子微凝胶进行呼吸,从而调整催化反应的进展。我们的结果可以提供一种新的策略,其与其他传统模式完全不同,以调节催化活性。通过远程控制方式诱导这种呼吸调制方法的实现可以为功能纳米材料设计产生可以用作具有优异催化活性的智能催化剂的可能性。

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