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Electrocatalysts based on Iron Phthalocyanine and Polyindole supported on Carbon Nanotubes for Oxygen Reduction in DMFCs

机译:基于铁酞菁的电催化剂和负载在碳纳米管上的碳纳米管上的氧化碳氧化物(用于氧气)的DMFC

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Novel electrocatalysts from iron phthalocyanine (FePc) and polyindole (PID) supported on carbon nanotubes (CNTs) have been synthesized for oxygen reduction reaction (ORR) in Direct Methanol Fuel Cell (DMFC). Two synthetic strategies have been proposed: i) preparation of PID on CNTs (PID/CNTs) through indole polymerization followed by the mechanical mixing of PID/CNTs with FePc (FePc_PID/CNTs); and ii) dispersion of polymerized PID, FePc, and CNTs in methanol and subsequent drying (FePc/PID/CNTs). The morphology of prepared catalysts was examined by SEM, and the electrochemical activity towards ORR was evaluated by cyclic voltammetry. FePc/PID/CNTs catalysts were found to have higher activity than that of FePcPID/CNTs, due to a better dispersion of PID and FePc on carbon support, as demonstrated by SEM. Furthermore, in comparison with platinum on carbon black the prepared PID-based catalysts exhibited a stable ORR potential in both H2SO4 and H2SO4 + CH3OH solution. These new iron-based catalysts are thus promising to substitute platinum/carbon black at the cathode side of DMFC.
机译:在直接甲醇燃料电池(DMFC)中,已经合成了来自碳纳米管(CNT)的铁酞菁(FEPC)和聚吲哚(PID)的新型电催化剂,用于氧还原反应(ORR)。已经提出了两种合成策略:i)通过吲哚聚合,用FEPC(FEPC_PID / CNT)进行PID / CNT的机械混合,制备CNT(PID / CNT)上的PID。 II)聚合PID,FEPC和CNT分散在甲醇中和随后的干燥(FEPC / PID / CNT)中的分散体。通过SEM检查制备的催化剂的形态,并通过循环伏安法评估朝向ORR的电化学活性。由于PID和FEPC对碳载量更好的分散,发现FEPC / PID / CNTs催化剂的活性高于FEPCPID / CNT的活性更高,如SEM所证明的。此外,与炭黑上的铂相比,制备的PID基催化剂在H 2 SO 4和H 2 SO 4 + CH 3 OH溶液中表现出稳定的ORR电位。因此,这些新的铁基催化剂具有替代DMFC的阴极侧的铂/炭黑。

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