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Electroanalysis using modified hierarchical nanoporous carbon materials?

机译:使用改性分层纳米多孔碳材料电分析?

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The role of the electrode nanoporosity in electroanalytical processes is discussed and specific phenomena (slow double layer charging, local pH effects) which can be present in porous electrode are described. Hierarchical porous carbon (HPC) materials are synthesized using a hard template method. The three dimensional carbon porosity is examined using scanning electron microscopy on flat surfaces cut using a focused ion beam (FIB-SEM). The electrochemical properties of the HPC are measured using cyclic voltammetry, AC impedance, chronoamperometry and Probe Beam Deflection (PBD) techniques. Chronoamperometry measurements of HPC seems to fit a transmission line model. PBD data show evidence of local pH changes inside the pores, during double layer charging. The HPC are modified by in situ (chemical or electrochemical) formation of metal (Pt/Ru) or metal oxide (CoOx, Fe_3O_4) nanoparticles. Additionally, HPC loaded with Pt decorated magnetite (Fe_3O_4) nanoparticles is produced by galvanic displacement. The modified HPC materials are used for the electroanalysis of different substances (CO, 0_2, AsO_3~(-3)). The role of the nanoporous carbon substrate in the electroanalytical data is evaluated.
机译:描述了电极纳米孔的作用讨论了可以存在于多孔电极中的特定现象(慢双层充电,局部pH效应)。使用硬模板法合成分层多孔碳(HPC)材料。使用聚焦离子束(FIB-SEM)在平坦的表面上使用扫描电子显微镜检查三维碳孔隙率。使用循环伏安法,AC阻抗,计时率和探针偏转(PBD)技术测量HPC的电化学性质。 HPC的计时率测量似乎适合传输线模型。 PBD数据显示在双层充电期间孔隙内部pH变化的证据。通过原位(化学或电化学)形成金属(Pt / Ru)或金属氧化物(CoOX,Fe_3O_4)纳米颗粒来修饰HPC。另外,通过电镀位移产生加载有PT装饰磁铁矿(Fe_3O_4)纳米颗粒的HPC。改性的HPC材料用于不同物质的电分析(CO,0_2,ASO_3〜(-3))。评估纳米多孔碳基质在电扫描中的作用。

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