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邻苯二酚和对苯二酚在钴氢氧化物膜修饰玻碳电极上的选择性测定 被引量:2

Selective Simultaneous Determination of Catechol and Hydroquinone at Cobalt Hydroxide Modified Glassy Carbon Electrode
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摘要 通过镀膜/循环伏安法制备了钴氢氧化物膜修饰的玻碳电极。该修饰电极对邻苯二酚(CA)和对苯二酚(HQ)具有较强的电催化活性。考察了支持电解质酸度对邻苯二酚和对苯二酚电化学响应的影响,选用0.1 mol/LPBS(pH 10.0)作为支持电解质。利用差示脉冲伏安法(DPV)对邻苯二酚和对苯二酚进行选择性检测,当两者浓度同时改变时,邻苯二酚和对苯二酚在6~100μmol/L范围内氧化峰电流与其浓度呈良好的线性关系,检出限分别为2×10–7,5×10–7mol/L(S/N=3)。钴氢氧化物膜电极具有较好的稳定性、重现性及较强的抗干扰能力,将此修饰电极应用于模拟水样中邻苯二酚和对苯二酚的测定,回收率为95.4%~100.4%。 Cobalt hydroxide modified glassy carbon electrode (CoOOH/GCE) was prepared by film plating/cyclic voltammetry method. CoOOH/GCE exhibited excellent electrocatalytic activities towards catechol (CA) and hydroquinone (HQ). The effects of pH value on the oxidation peak current and potential of catechol and hydroquinone were studied by differential pulse vohammetry (DPV), and 0.1 mol/L PBS (pH 10.0) was selected as the supporting electrolyte. Under the optimized conditions, when the concentrations of CA and HQ were simultaneously changed, the oxidation peak current of CA and HQ was linear with concentration repectively in the range of 6-100μmol/L with the detection limit of 2 × 10-7, 5 × 10-7 mol/L (S/N=3) repectively. Furthermore, the modified electrode exhibited good reproducibility, stability and selectivity, which was used for the determination of CA and HQ in imitative water samples with recoveries of 95.4%- 100.4%.
出处 《化学分析计量》 CAS 2012年第4期22-26,共5页 Chemical Analysis And Meterage
基金 国家自然科学基金项目(20701040)
关键词 钴氢氧化物膜 邻苯二酚 对苯二酚 电催化 cobalt hydroxide film catechol hydroquinone electrocatalytic oxidation
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  • 1Zhu W H, Ke J J, Yu H M, et al. A study of the electrochemistry of nickel-hydroxide electrodes with various additives [ J ]. Journal of Power Sources, 1995,56(1): 75-79.
  • 2Barbero C, Planes G A, Miras M C. Redox coupled ion exchange in cobalt oxide films [ J ]. Electrochemistry Communications,2001, 3(3): 113-116.
  • 3Srinivasan V, Weidner J W. Capacitance studies of cobalt oxide films formed via electrochemical precipitation [ J ]. Journal of Power Sources, 2002,108(1-2): 1:5-20.
  • 4Das D, Das K. Cobalt hydroxide film on Pt as co-catalyst for oxidation of polyhydric alcohols in alkaline medium ~ J 1 ~Materials Chemistry and Physics, 201 O, 123 (2-3): 719-722.
  • 5Chari M A, Shobha D, Sasaki T. Room temperature synthesis of benzimidazole derivatives using reusable cobalt hydroxide ( 11 ) and cobalt oxide ( 1I ) as efficient solid catalysts E J ]. Tetrahedron Letters, 2011,52(43): 5 575-5 580.
  • 6Yang J, Zhang W D, Gunasekaran S. A low-potential H202-assisted electrodeposition of cobalt oxide / hydroxide nanostructures onto vertically-aligned multi-walled carbon nanotube arrays for glucose sensing [ J 1. Electrochimica Acta, 201 I, 56(16): 5 538-5 544.
  • 7Wang B X, Lin H, ~in Z G. Hydrothermal synthesis of beta-cobalt hydroxide with various morphologies in water / ethanol solutions E J ~ .Materials Letters, 2011,65(1): 4143.
  • 8Zhao T, Jiang H, Ma J. Surfactant-assisted electrochemical deposition of alpha-cobalt hydroxide for supercapacitors E J 1. Journal of Power Sources,2011,196(2): 860-864.
  • 9Kong L B, Kong L B, Liu M C, et al. Porous cobalt hydroxide film electrodeposited on nickel foam with excellent electrochemical capacitive behavior [ J 1. Journal of Solid State Electrochemistry, 2011,15(3): 571-577.
  • 10Jafarian M, Mahjani M G, Heli H. A study of the electro-catalytic oxidation of methanol on a cobalt hydroxide modified glassy carbon electrode [ J ]. Electrochimica Acta,2003,48(23): 3 423-3 429.

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