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One-step synthesis of Au-Ag alloy nanoparticles using soluble starch and their photocatalytic performance for 4-nitrophenol degradation

机译:使用可溶性淀粉的Au-Ag合金纳米粒子的一步合成及其对4-硝基苯酚降解的光催化性能

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摘要

The green and controllable synthesis of Au-Ag alloy nanoparticles (NPs) in one-pot has been a challenge in nanotechnology. Here, the soluble starch was employed as a reducing and capping agent to synthesize stable Au-Ag alloy NPs without using any toxic agent. The surface plasmon resonance wavelength and the composition of Au-Ag alloy NPs could be continuously adjusted only by the synthesis time in one-pot. Au-Ag alloy NPs were characterized by means of various techniques. It could be found as-prepared NPs were quasi-spherical with a small average size and a face-centered cubic polycrystalline structure. The above green synthesis method, facile, efficient and eco-friendly, can be extended to the controllable synthesis of other bimetallic NPs. Obtained Au-Ag alloy NPs exhibited a superior photocatalytic activity and stability for the 4-nitrophenol (4-NP) degradation due to abundance hydroxyl groups of the soluble starch and the synergistic effect between Au and Ag elements. The rate constant of 4-NP degradation could be linearly tuned by the composition of Au- Ag alloy NPs and their synthesis time besides their addition amount. The above methods to control the rate constant provide promising routes for other photocatalytic reactions using bimetallic NPs as photocatalysts.
机译:一锅中Au-Ag合金纳米颗粒(NPS)的绿色和可控合成是纳米技术的挑战。这里,使用可溶性淀粉作为还原和覆盖剂,以合成稳定的Au-Ag合金NPS而不使用任何有毒剂。表面等离子体共振波长和Au-Ag合金NP的组成只能通过合成时间在一锅中连续调节。通过各种技术表征Au-Ag合金NPS。它可以被发现,用制备的NPS是准球形的,具有小的平均尺寸和面为中心的立方体多晶结构。上述绿色合成方法,容易,高效且环保,可以扩展到其他双金属NP的可控合成。获得的Au-Ag合金NPS由于可溶性淀粉的丰富羟基和Au和Ag元素之间的协同效应而表现出优异的光催化活性和4-硝基苯酚(4-NP)降解的稳定性。除了它们添加量之外,Au-Ag合金NP的组成及其合成时间可以线性调节4-NP降解的速率常数。上述控制速率常数的方法提供了使用双金属NP作为光催化剂的其他光催化反应的有前途的路线。

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  • 来源
    《Journal of Materials Science》 |2018年第23期|共12页
  • 作者单位

    Univ Shanghai Sci &

    Technol Sch Energy &

    Power Engn Jun Gong Rd 516 Shanghai 200093 Peoples R China;

    Univ Shanghai Sci &

    Technol Sch Energy &

    Power Engn Jun Gong Rd 516 Shanghai 200093 Peoples R China;

    Univ Shanghai Sci &

    Technol Sch Energy &

    Power Engn Jun Gong Rd 516 Shanghai 200093 Peoples R China;

    Univ Shanghai Sci &

    Technol Sch Energy &

    Power Engn Jun Gong Rd 516 Shanghai 200093 Peoples R China;

    Univ Shanghai Sci &

    Technol Sch Energy &

    Power Engn Jun Gong Rd 516 Shanghai 200093 Peoples R China;

    Univ Shanghai Sci &

    Technol Sch Energy &

    Power Engn Jun Gong Rd 516 Shanghai 200093 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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