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Effect of SnO2 Deposition Sequence in SnO2-Modified PtRu/C Catalyst Preparation on Catalytic Activity for Methanol Electro-Oxidation

机译:SnO2改性PtRu / C催化剂制备中SnO2沉积顺序对甲醇电氧化催化活性的影响

摘要

SnO2-modified PtRu/C catalysts were prepared in a polyol process to investigate the effect of a SnO2 deposition sequence on the catalytic activity for methanol electro-oxidation. The structure, morphology, and chemical state of the prepared catalysts were characterized by X-ray diffraction, scanning transmission electron microscopy, and X-ray photoelectron spectroscopy. The electrochemical activities were evaluated by cyclic voltammetry, linear sweep voltammetry, and chronoamperometry measurements in combination with in situ IR reflection-absorption spectroscopy (IRRAS). Compared with those in the PtRu/C catalyst, a simultaneous deposition of PtRu and SnO2 particles or a deposition of SnO2 prior to PtRu improved the metal dispersion and decreased the alloyed Ru fraction. The deposition sequence of SnO2 did not alter the chemical-state distribution of Pt and Ru but resulted in a different surface atomic ratio of Pt, Ru, and SnO2. Electrochemical and in situ IRRAS measurements indicated that the SnO2-modified PtRu/C catalyst prepared by the deposition of PtRu prior to SnO2 gave the best catalytic activity for COads and methanol electro-oxidation among the PtRu/C and SnO2-modified PtRu/C catalysts. The roles of SnO2 deposited with different sequences in the SnO2-modified PtRu/C catalysts were proposed.
机译:SnO2改性的PtRu / C催化剂是在多元醇工艺中制备的,目的是研究SnO2沉积顺序对甲醇电氧化催化活性的影响。通过X射线衍射,扫描透射电子显微镜和X射线光电子能谱表征了所制备催化剂的结构,形态和化学状态。通过循环伏安法,线性扫描伏安法和计时电流法测量结合原位红外反射吸收光谱法(IRRAS)评估电化学活性。与PtRu / C催化剂相比,同时沉积PtRu和SnO2颗粒或在PtRu之前沉积SnO2可以改善金属分散性并降低合金化的Ru分数。 SnO2的沉积顺序不会改变Pt和Ru的化学态分布,但会导致Pt,Ru和SnO2的表面原子比不同。电化学和原位IRRAS测量表明,在PtRu / C和SnO2修饰的PtRu / C催化剂中,先于SnO2沉积PtRu制备的SnO2修饰的PtRu / C催化剂对COads和甲醇电氧化具有最佳的催化活性。 。提出了SnO2修饰的PtRu / C催化剂中以不同顺序沉积的SnO2的作用。

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