论文标题

在NIR辐射下具有多室结构的黄金@@聚多巴胺纳米反应器的增强催化活性

Enhanced Catalytic Activity of Gold@Polydopamine Nanoreactors with Multi-compartment Structure Under NIR Irradiation

论文作者

Mei, Shilin, Kochovski, Zdravko, Roa, Rafael, Gu, Sasa, Xu, Xiaohui, Yu, Hongtao, Dzubiella, Joachim, Ballauff, Matthias, Lu, Yan

论文摘要

光热转化(PTC)纳米结构在许多领域具有巨大的应用潜力,因此,它们引起了极大的关注。但是,由于综合困难,建造具有多室结构的PTC纳米反应器,以实现独特的化学特性和结构特征的组合仍然具有挑战性。本文中,我们设计并合成了一种催化活性的PTC金(AU)@Polydopamine(PDA)纳米反应器,该纳米反应器由红外辐照使用组装的PS-B-P2VP纳米球作为软模板。颗粒表现出多室结构,通过3D电子断层扫描技术揭示。它们具有可调外壳厚度的渗透性壳。已使用这些颗粒作为纳米反应器研究了4-硝基苯酚还原反应的全动力学,并与其他报告的系统进行了比较。值得注意的是,证明了近红外照射时催化反应的显着加速,这首先揭示了光热转化和复杂的内部结构对催化还原动力学的协同作用的重要性。综合和对催化的新见解的便利性将促进一个新的纳米反应器研究的平台。

Photothermal conversion (PTC) nanostructures have great potential for applications in many fields, and therefore, they have attracted tremendous attention. However, the construction of a PTC nanoreactor with multi-compartment structure to achieve the combination of unique chemical properties and structural feature is still challenging due to the synthetic difficulties. Herein, we designed and synthesized a catalytically active, PTC gold (Au)@polydopamine (PDA) nanoreactor driven by infrared irradiation using assembled PS-b-P2VP nanosphere as soft template. The particles exhibit multi-compartment structure which is revealed by 3D electron tomography characterization technique. They feature permeable shells with tunable shell thickness. Full kinetics for the reduction reaction of 4-nitrophenol has been investigated using these particles as nanoreactors and compared with other reported systems. Notably, a remarkable acceleration of the catalytic reaction upon near-infrared irradiation is demonstrated, which reveals for the first time the importance of the synergistic effect of photothermal conversion and complex inner structure to the kinetics of the catalytic reduction. The ease of synthesis and fresh insights into catalysis will promote a new platform for novel nanoreactor studies.

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