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首页> 外文期刊>JPC Bulletin on Iron & Steel >Microfluidic Assisted Synthesis of Hybrid Au–Pd Dumbbell-like Nanostructures: Sequential Addition of Reagents and Ultrasonic Radiation
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Microfluidic Assisted Synthesis of Hybrid Au–Pd Dumbbell-like Nanostructures: Sequential Addition of Reagents and Ultrasonic Radiation

机译:微流体辅助合成杂交AU-PD哑铃型纳米结构:顺序添加试剂和超声辐射

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src="http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/cgdefu/2017/cgdefu.2017.17.issue-5/acs.cgd.7b00193/20170427/images/medium/cg-2017-00193u_0007.gif">A sequential-addition microfluidic reactor and an ultrasonic integrated microfluidic reactor were designed to produce with high selectivity hybrid Au–Pd dumbbell-like nanostructures (Au–Pd DBNPs), consisting of a palladium segment tipped with gold heads. A single-stage synthesis was not able to synthesize hybrid nanostructures due to the high reactivity of gold. On the other hand, a two-step method was successful by first synthesizing Pd nanorod-like structures and subsequent growing of Au on the tips of those structures by the localized galvanic replacement reaction. The localized deposition of Au onto both tips of palladium rods was achieved by using two different microfluidic approaches: (i) by sequential injection of gold along the reaction channel at 100 °C and a 5 min residence time, and (ii) by ultrasonic radiation at room temperature and a 2 min residence time. The synthesized Au–Pd DBNPs had higher electrocatalytic activity in the ethanol oxidation reaction in alkaline media than the Pd nanorods.
机译:src =“http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/cgdefu/2017/cgdefu.2017.17.issue-5/acs.cgd.7b00193/20170427/images/medium /cg-2017-00193u_0007.gif“>序列加法的微流体反应器和超声集成的微流体反应器设计成用高选择性杂交Au-pd哑铃样纳米结构(Au-Pd dbnps)产生,由钯段延伸用金头。由于金的高反应性,单级合成不能合成杂化纳米结构。另一方面,通过首先合成Pd纳米棒状结构并随后通过局部的电催化置换反应将Au施加在这些结构的尖端上,成功了一种两步方法。通过使用两种不同的微流体方法来实现Au在两个钯棒上的局部沉积:(i)通过在100℃和5分钟的停留时间,通过超声辐射顺序地注射金,并通过超声辐射进行(ii)在室温和2分钟的停留时间。合成的AU-Pd DBNPS在碱性介质中的乙醇氧化反应中具有比Pd纳米棒更高的电催化活性。

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  • 来源
    《JPC Bulletin on Iron & Steel》 |2017年第5期|共11页
  • 作者单位

    Department of Chemical Engineering Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge Massachusetts 02139 United States;

    Department of Chemical Engineering Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge Massachusetts 02139 United States;

    Department of Chemical Engineering Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge Massachusetts 02139 United States;

    Department of Chemical Engineering Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge Massachusetts 02139 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 钢铁冶炼(黑色金属冶炼)(总论);
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