首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Single-step synthesis of nano-sized perovskite-type oxide/carbon nanotube composites and their electrocatalytic oxygen-reduction activities
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Single-step synthesis of nano-sized perovskite-type oxide/carbon nanotube composites and their electrocatalytic oxygen-reduction activities

机译:纳米钙钛矿型氧化物/碳纳米管复合材料的一步合成及其电催化氧还原活性

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Composites of nano-sized perovskite-type oxides of La_(1-x)Sr_xMnO3 (LSMO) and carbon nanotubes (CNTs) were synthesized in a single step by the electrospray pyrolysis method, and their electrocatalytic activities for oxygen reduction were evaluated in an alkaline solution. The resulting LSMO nanoparticles with a diameter of less than 20 nm were well dispersed and deposited on the surface of CNTs. Elemental analysis showed that the metal-composition of LSMO/CNT composites was controlled by altering the concentrations of a precursor solution. Rotating-disk-electrode measurements revealed that the electrocatalytic activities of LSMO/CNT composites increased with an increase in a molar ratio of Sr element. Composites of LSMO nanoparticles and CNTs showed greater catalytic activities than conventional LSMO particles (1 μm) supported on carbon black for oxygen reduction. Moreover the LSMO/CNT catalyst showed larger oxygen-reduction currents even in the presence of ethylene glycol while a Pt disk electrode was affected by the oxidation currents of ethylene glycol. These results indicate that LSMO/CNT composites are a promising candidate as a cathode catalyst with a higher catalytic selectivity for oxygen reduction and a higher crossover-tolerance for use in anion-exchange membrane fuel cells.
机译:通过电喷雾热解法一步合成La_(1-x)Sr_xMnO3(LSMO)和碳纳米管(CNTs)纳米钙钛矿型氧化物的复合物,并在碱性条件下评估其对氧还原的电催化活性。解。将所得的直径小于20 nm的LSMO纳米颗粒很好地分散并沉积在CNT的表面上。元素分析表明,LSMO / CNT复合材料的金属组成是通过改变前体溶液的浓度来控制的。旋转圆盘电极测量表明,LSMO / CNT复合材料的电催化活性随Sr元素摩尔比的增加而增加。 LSMO纳米颗粒和CNTs的复合材料显示出比传统的LSMO颗粒(1μm)更大的催化活性,该颗粒负载在炭黑上以减少氧气。而且,即使在存在乙二醇的情况下,LSMO / CNT催化剂也显示出较大的氧还原电流,而Pt圆盘电极受到乙二醇的氧化电流的影响。这些结果表明,LSMO / CNT复合材料作为阴极催化剂具有广阔的前景,可用于阴离子交换膜燃料电池,具有更高的氧还原催化选择性和更高的交叉耐受性。

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