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Polydopamine-Coated Manganese Complex/Graphene Nanocomposite for Enhanced Electrocatalytic Activity Towards Oxygen Reduction

机译:聚多巴胺涂层锰配合物/石墨烯纳米复合材料可增强电催化还原氧

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摘要

Platinum electrodes are commonly used electrocatalysts for oxygen reduction reactions (ORR) in fuel cells. However, this material is not economical due to its high cost and scarcity. We prepared an Mn(III) catalyst supported on graphene and further coated with polydopamine, resulting in superior ORR activity compared to the uncoated PDA structures. During ORR, a peak potential at 0.433 V was recorded, which is a significant shift compared to the uncoated material’s −0.303 V (both versus SHE). All the materials reduced oxygen in a wide pH range via a four-electron pathway. Rotating disk electrode and rotating ring disk electrode studies of the polydopamine-coated material revealed ORR occurring via 4.14 and 4.00 electrons, respectively. A rate constant of 6.33 × 106 mol−1s−1 was observed for the polydopamine-coated material–over 4.5 times greater than the uncoated nanocomposite and superior to those reported for similar carbon-supported metal catalysts. Simply integrating an inexpensive bioinspired polymer coating onto the Mn-graphene nanocomposite increased ORR performance significantly, with a peak potential shift of over +730 mV. This indicates that the material can reduce oxygen at a higher rate but with lower energy usage, revealing its excellent potential as an ORR electrocatalyst in fuel cells.
机译:铂电极是燃料电池中用于氧还原反应(ORR)的常用电催化剂。然而,由于其高成本和稀缺性,这种材料不经济。我们制备了负载在石墨烯上的Mn(III)催化剂,并进一步涂覆了聚多巴胺,与未涂覆的PDA结构相比,ORR活性更高。在ORR期间,记录到的峰值电势为0.433 V,与未镀膜材料的−0.303 V(相对于SHE)相比,这是一个很大的变化。所有材料都通过四电子途径在宽pH范围内还原了氧气。聚多巴胺涂层材料的旋转盘电极和旋转环盘电极研究表明,ORR分别通过4.14和4.00电子发生。对于聚多巴胺涂层材料,观察到的速率常数为6.33×10 6 mol -1 s -1 ,是其多于4.5倍。未涂覆的纳米复合材料,优于报道的类似碳载金属催化剂。只需将便宜的生物启发聚合物涂层整合到Mn-石墨烯纳米复合材料上,即可显着提高ORR性能,峰值电位漂移超过+730 mV。这表明该材料可以较高的速率还原氧气,但能耗较低,从而显示出其在燃料电池中作为ORR电催化剂的出色潜力。

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