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首页> 外文期刊>RSC Advances >Gold microsheets having nano/microporous structures fabricated by ultrasonic-assisted cyclic galvanic replacement
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Gold microsheets having nano/microporous structures fabricated by ultrasonic-assisted cyclic galvanic replacement

机译:具有超声波辅助循环电流更换的纳米/微孔结构的金微圆形

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摘要

A novel technique for the fabrication of nano/microporous gold (Au) microsheets using an ultrasonicassisted cyclic galvanic replacement reaction between a sacrificial silver (Ag) plate and gold ions (AuCl4-) is reported. First of all, AuCl4- is reduced on the surface of sacrificial Ag via a galvanic replacement reaction. Then, the epitaxial growth of the Au film on the Ag surface is disturbed by the precipitated AgCl by-product of this galvanic replacement reaction. The co-precipitated AgCl and galvanic-generated Au nanostructures induce the formation of an interpenetrated Au/AgCl nanocomposite film on the surface of the sacrificial Ag plate. Finally, ultrasonic radiation enables auto-detachment of the galvanic-generated film along the AgCl/Ag interface. The galvanic replacement and auto-detachment processes continuously occur as a cycle until the scarified Ag is totally consumed. The coral-like Au nanostructures with nano/microporous morphologies are realized after removing AgCl by NH3 treatment. The hierarchical nano/microporous structures have micropores and nanopores with sizes of 0.15-0.30 mu m and 30-60 nm, respectively, separated by chain-like Au structures. The complex porous structures, through which liquids can easily flow, can potentially be used in applications such as high-efficiency free-standing catalysts, super capacitors, electrochemical sensors and surface-enhanced Raman scattering (SERS) substrates. A SERS application of the Au microsheets is also demonstrated.
机译:报道了一种新颖的技术,用于使用牺牲银(Ag)板和金离子(AuCl4-)之间的超声臂循环置换反应的纳米/微孔金(Au)微圆形的技术。首先,通过电催化反应在牺牲AG的表面上减少AuCl4。然后,通过该电催化反应的沉淀的AgCl副产物扰乱Ag表面上的Au膜的外延生长。共沉淀的ACCL和电催化的Au纳米纳米结构诱导在牺牲Ag板的表面上形成渗透性Au / AgCl纳米复合膜。最后,超声波辐射能够沿着AGCL / AG接口自动分离电流产生的膜。电流替代和自动分离过程连续发生作为循环,直到划痕的AG完全消耗。通过NH3处理除去AgCl后,实现了具有纳米/微孔形态的珊瑚样Au纳米结构。分层纳米/微孔结构分别具有0.15-0.30μm和30-60nm的微孔和纳米孔,分别通过链状Au结构分离。液体可以容易地流动的复杂多孔结构可以潜在地用于高效独立催化剂,超级电容器,电化学传感器和表面增强拉曼散射(SERS)基板的应用中。还证明了Au微圆形的SERS应用。

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  • 来源
    《RSC Advances》 |2015年第95期|共9页
  • 作者单位

    Chulalongkorn Univ Fac Sci Dept Chem Sensor Res Unit Bangkok 10330 Thailand;

    Chulalongkorn Univ Fac Sci Dept Chem Sensor Res Unit Bangkok 10330 Thailand;

    Chulalongkorn Univ Fac Sci Dept Chem Sensor Res Unit Bangkok 10330 Thailand;

    Chulalongkorn Univ Fac Sci Dept Chem Sensor Res Unit Bangkok 10330 Thailand;

    Chulalongkorn Univ Fac Sci Dept Chem Sensor Res Unit Bangkok 10330 Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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