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The Enhanced Catalytic Activities of Asymmetric Au-Ni Nanoparticle Decorated Halloysite-Based Nanocomposite for the Degradation of Organic Dyes

机译:不对称金-镍纳米粒子修饰的基于埃洛石的纳米复合材料对有机染料降解的增强催化活性

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摘要

Janus particles (JPs) are unique among the nano-/microobjects because they provide asymmetry and can thus impart drastically different chemical or physical properties. In this work, we have fabricated the magnetic halloysite nanotube (HNT)-based HNTs@Fe3O4 nanocomposite (NCs) and then anchored the Janus Au-Ni or isotropic Au nanoparticles (NPs) to the surface of external wall of sulfydryl modified magnetic nanotubes. The characterization by physical methods authenticates the successful fabrication of two different magnetic HNTs@Fe3O4@Au and HNTs@Fe3O4@Au-Ni NCs. The catalytic activity and recyclability of the two NCs have been evaluated considering the degradation of Congo red (CR) and 4-nitrophenol (4-NP) using sodium borohydride as a model reaction. The results reveal that the symmetric Au NPs participated NCs display low activity in the degradation of the above organic dyes. However, a detailed kinetic study demonstrates that the employ of bimetallic Janus Au-Ni NPs in the NCs indicates enhanced catalytic activity, owing to the structurally specific nature. Furthermore, the magnetic functional NCs reported here can be used as recyclable catalyst which can be recovered simply by magnet.
机译:Janus粒子(JPs)在纳米/微物体中是独特的,因为它们提供不对称性,因此可以赋予完全不同的化学或物理性质。在这项工作中,我们制造了基于磁性埃洛石纳米管(HNT)的HNTs @ Fe3O4纳米复合材料(NCs),然后将Janus Au-Ni或各向同性的Au纳米颗粒(NPs)锚定在硫代硫酸盐修饰的磁性纳米管的外壁表面。通过物理方法表征证明了两种不同的磁性HNTs @ Fe3O4 @ Au和HNTs @ Fe3O4 @ Au-Ni NC的成功制造。考虑到使用硼氢化钠作为模型反应,考虑到刚果红(CR)和4-硝基苯酚(4-NP)的降解,评估了两个NC的催化活性和可回收性。结果表明,对称的金纳米粒子参与NCs显示上述有机染料降解低活性。但是,详细的动力学研究表明,由于结构上的特殊性,在双相碳纳米管中采用双金属Janus Au-Ni NPs可以提高催化活性。此外,此处报道的磁性功能NC可用作可回收的催化剂,可通过磁体简单地回收。

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