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Synthesis and electrocatalytic performance of phosphotungstic acid-modified Ag@Pt/MWCNTs catalysts for oxygen reduction reaction

机译:磷钨酸修饰的Ag @ Pt / MWCNTs催化剂的合成及对氧还原反应的电催化性能

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摘要

Keggin-structured phosphotungstic acid H3PW12O40 (HPW)-modified Ag@Pt/MWCNTs electrocatalysts were successfully prepared using a chemical impregnation method. Physical characterization by X-ray powder diffraction, high-resolution transmission electron microscopy, scanning electron microscopy, and X-ray photoelectron spectroscopy revealed that the HPW molecules were incorporated into the Ag@Pt/MWCNT structure The diameter of the catalyst used was about 4.0 nm, and electrochemical investigation results indicated that HPW could ameliorate electrocatalytic activity. The catalyst with HPW content of 25 % displayed the best excellent electrocatalytic activity with an electrochemically active area of 83.62 m(2) g(-1) and a half-wave potential for the oxygen reduction reaction of 0.851 V, all ascribed to the high utilization of Pt and the protective effect of the HPW layer on the catalyst surface. The synergic effect of the HPW and Ag@Pt enhanced the rate of electron transfer and increased the catalytic efficiency of oxygen reduction reaction, influencing 4e(-) reduction reactions on Ag@Pt/MWCNTs-HPW catalysts.
机译:采用化学浸渍法成功制备了Keggin结构的磷钨酸H3PW12O40(HPW)改性的Ag @ Pt / MWCNTs电催化剂。通过X射线粉末衍射,高分辨率透射电子显微镜,扫描电子显微镜和X射线光电子能谱进行的物理表征表明,HPW分子被掺入到Ag @ Pt / MWCNT结构中。所用催化剂的直径约为4.0纳米和电化学研究结果表明,HPW可以改善电催化活性。 HPW含量为25%的催化剂表现出最佳的优异电催化活性,其电化学活性面积为83.62 m(2)g(-1),氧还原反应的半波电势为0.851 V,均归因于高Pt的利用和HPW层对催化剂表面的保护作用。 HPW和Ag @ Pt的协同作用提高了电子转移速率,提高了氧还原反应的催化效率,影响了Ag @ Pt / MWCNTs-HPW催化剂的4e(-)还原反应。

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