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Anomalous electroless deposition of less noble metals on Cu in ionic liquids and its application towards battery electrodes

机译:离子液体中Cu上较低贵金属的异常无电金属及其朝向电池电极的应用

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摘要

Electroless deposition can be triggered by the difference in the redox potentials between two metals in an electrolyte. In aqueous electrochemistry, galvanic displacement takes place according to the electrochemical series wherein a more noble metal can displace a less noble metal. Herein we show anomalous behaviour in ionic liquids wherein less noble metals such as Fe and Sb were deposited on Cu at temperatures from 25 to 60 degrees C. Fe formed spherical structures whereas Cu2Sb/Sb formed nanoplates. A multistep process during the electroless deposition of Sb on Cu took place which was discerned from in situ XPS, and mass spectrometry. In situ AFM was also used to understand the nucleation and growth process of the galvanic displacement reaction. Subsequently, the Cu2Sb/Sb nanoplates were also tested as the anode for both Li-ion and Na-ion batteries. Thus, it is shown that the electrochemistry in ionic liquids significantly differs from aqueous electrolytes and opens up new routes for material synthesis.
机译:电解沉积可以通过电解质中的两个金属之间的氧化还原电位的差异来触发。在水化学水化学中,根据电化学序列进行电流置换,其中更贵的金属可以移动较少的贵金属。在此,我们在离子液体中显示出异常的行为,其中在25至60℃的温度下沉积诸如Fe和Sb的诸如Fe和Sb的较少的贵金属。Fe形成的球形结构,而Cu2Sb / Sb形成的纳米板。在Cu上的无电沉积期间的多步过程发生,该过程是从原位XPS识别的,并质谱法。原位AFM也用于了解电致置位反应的成核和生长过程。随后,Cu2SB / Sb纳米板也被测试为锂离子和Na离子电池的阳极。因此,示出了离子液体中的电化学从水性电解质显着不同,并打开了用于材料合成的新途径。

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  • 来源
    《Faraday discussions》 |2018年第2018期|共13页
  • 作者单位

    Tech Univ Clausthal Inst Electrochem Arnold Sommerfeld Str 6 D-38678 Clausthal Zellerfeld Germany;

    Tech Univ Clausthal Inst Electrochem Arnold Sommerfeld Str 6 D-38678 Clausthal Zellerfeld Germany;

    Tech Univ Clausthal Inst Electrochem Arnold Sommerfeld Str 6 D-38678 Clausthal Zellerfeld Germany;

    Tech Univ Clausthal Inst Electrochem Arnold Sommerfeld Str 6 D-38678 Clausthal Zellerfeld Germany;

    Tech Univ Clausthal Inst Electrochem Arnold Sommerfeld Str 6 D-38678 Clausthal Zellerfeld Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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