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The Sonogel-Carbon electrode as a sol-gel graphite-based electrode

机译:Sonogel-Carbon电极作为溶胶-凝胶石墨基电极

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In this work, a novel sol-gel-based procedure to obtain solid carbon composite electrodes is proposed. The procedure is based on the use of sonocatalysis to apply high-energy ultrasound directly to the precursors; this way, ultrasonic cavitation is achieved so that hydrolysis with acidic water is promoted in the absence of any additional solvent and the time needed to get a unique phase is reduced drastically. The mix of sonogel with spectroscopic grade graphite leads to a new type of solgel electrode: the Sonogel-Carbon electrode. The amount of water, necessary for hydrolysis to occur, has been studied, as well as the sol pH value and the electrochemical behavior of the Sonogel-Carbon electrode in Britton-Robinson buffer. Mechanical renewal of the electrodes surfaces and background signal stability for at least 42 days have been also tested. We have carried out some tests to check the ability of the synthesized material to give electrochemical response when redox species are present in the background electrolyte. Mechanical and electrochemical studies indicate that the Sonogel-Carbon electrode shows good properties for use as an electrochemical sensor. [References: 16]
机译:在这项工作中,提出了一种新颖的基于溶胶-凝胶的方法来获得固体碳复合电极。该程序基于使用声催化作用将高能超声直接应用于前体。以此方式,实现了超声空化,从而在没有任何其他溶剂的情况下促进了用酸性水进行的水解,并且大大减少了获得独特相所需的时间。声能凝胶与光谱级石墨的混合产生了一种新型的溶胶凝胶电极:声能凝胶碳电极。已经研究了发生水解所需的水量,以及在Britton-Robinson缓冲液中的Sonogel-Carbon电极的溶胶pH值和电化学行为。还测试了电极表面的机械更新和至少42天的背景信号稳定性。我们已经进行了一些测试,以检查当背景电解质中存在氧化还原物质时,合成材料产生电化学响应的能力。机械和电化学研究表明,Sonogel-Carbon电极具有良好的性能,可用作电化学传感器。 [参考:16]

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