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Ni(II) decorated nano silicoaluminophosphate molecular sieves-modified carbon paste electrode as an electrocatalyst for electrooxidation of methanol

机译:Ni(II)修饰的纳米硅铝磷酸盐分子筛修饰的碳糊电极作为甲醇电氧化的电催化剂

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摘要

In this work, we reported a method for the synthesis of nanosized silicoaluminophosphate (SAPO) molecular sieves that are important members of zeolites family. The synthesized SAPO was characterized using X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM) as well as infrared (IR) techniques. Then, the modified carbon paste electrode was prepared by nano SAPO molecular sieves and nickel (II) ion incorporated at this electrode. The electrochemical behaviour of the modified electrode (Ni-SAPO/CPE) towards the oxidation of methanol was investigated by cyclic voltammetry and chronoamperometry methods. It has been found that the oxidation current is extremely increased by using Ni-SAPO/CPE compared to the unmodified Ni-CPE, it seems that Ni2+ inclusion into nano SAPO channels provides the active sites for catalysis of methanol oxidation. The effect of some parameters such as scan rate of potential, concentration of methanol, amount of SAPO was investigated on the oxidation of methanol at the surface of modified electrode. The values of electron transfer coefficient, charge-transfer rate constant and electrode surface coverage for the Ni(II)/Ni(III) couple in the surface of Ni-SAPO/CPE were found to be 0.555, 0.022 s(-1) and 5.995 x 10(-6) mol cm(-2), respectively. Also, the diffusion coefficient and the mean value of catalytic rate constant for methanol and redox sites of modified electrode were obtained to be 1.16 x 10(-5) cm(2) s(-1) and 4.62 x 10(4) cm(3) mol(-1) s(-1), respectively. The good catalytic activity, high sensitivity, good selectivity and stability and easy in preparation rendered the Ni-SAPO/CPE to be a capable electrode for electrocatalytic oxidation of methanol.
机译:在这项工作中,我们报告了一种合成纳米沸石硅铝磷酸盐(SAPO)分子筛的方法,该分子筛是沸石家族的重要成员。使用X射线衍射(XRD),场发射扫描电子显微镜(FESEM)以及红外(IR)技术对合成的SAPO进行了表征。然后,通过纳米SAPO分子筛和掺入该电极的镍(II)离子制备改性碳糊电极。通过循环伏安法和计时电流法研究了修饰电极(Ni-SAPO / CPE)对甲醇氧化的电化学行为。已经发现,与未改性的Ni-CPE相比,通过使用Ni-SAPO / CPE,氧化电流极大地增加,似乎Ni 2+包含在纳米SAPO通道中提供了催化甲醇氧化的活性位点。考察了电势扫描速率,甲醇浓度,SAPO含量等参数对修饰电极表面甲醇氧化的影响。发现Ni-SAPO / CPE表面中的Ni(II)/ Ni(III)对的电子传递系数,电荷传递速率常数和电极表面覆盖率的值为0.555、0.022 s(-1)和分别为5.995 x 10(-6)mol cm(-2)。另外,修饰电极的甲醇和氧化还原位点的扩散系数和催化速率常数的平均值分别为1.16 x 10(-5)cm(2)s(-1)和4.62 x 10(4)cm( 3)分别为mol(-1)s(-1)。良好的催化活性,高灵敏度,良好的选择性和稳定性以及易于制备使Ni-SAPO / CPE成为甲醇电催化氧化的有效电极。

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