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Molecule-Based Cobalt Hexacyanoferrate Nanoparticle: Synthesis, Characterization, and Its Electrochemical Properties

机译:分子基六氰合高铁酸钴纳米粒子的合成,表征及其电化学性质

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摘要

Cobalt hexacyanoferrate (CoHCF) nanoparticles, with an average size of less than 50 nm for individual crystalrite, were synthesized by simply mixing appropriate reactants in the absence of surfactant or template. Elemental analysis provided a stoichiometric formula, K0.2CO1.4[Fe(CN)6]·xH2O for this compound. The involvement of both ferromagnetic CoⅢ1.5 [FeⅢ(CN)6] and antiferromagnetic KCoⅢ[FeⅡ(CN)6] species in the CoHCF complex was effectively proved by Fourier transform infrared spectroscopy, so was the existence of certain amounts of interstitial water molecules. A glassy carbon electrode modified with these CoHCF nanoparticles had high stable and reversible cyclic voltammetric responses even at high scan rates and its electrochemical properties were affected by the nature of counter cations and the concentration of supporting electrolyte. The prepared nanoparticle films, as a mediator on electrode surface, exhibited considerable electrocatalytic activity toward the oxidation of dopamine.
机译:在没有表面活性剂或模板的情况下,通过简单地混合适当的反应物,合成了六价铁酸钴(CoHCF)纳米粒子,单个晶粒的平均尺寸小于50 nm。元素分析提供了该化合物的化学计量公式,K0.2CO1.4 [Fe(CN)6]·xH2O。傅里叶变换红外光谱法有效地证明了铁磁性CoⅢ1.5[FeⅢ(CN)6]和反铁磁性KCoⅢ[FeⅡ(CN)6]都参与了CoHCF络合物的存在,并且一定量的间隙水分子的存在。即使在高扫描速率下,用这些CoHCF纳米粒子修饰的玻璃碳电极也具有较高的稳定性和可逆的循环伏安响应,并且其电化学性质受到抗衡阳离子的性质和支持电解质的浓度的影响。制备的纳米颗粒薄膜作为电极表面的介体,对多巴胺的氧化表现出相当大的电催化活性。

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