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Strategies for Stabilization of Electrodeposited Metal Particles in Electropolymerized Films for H2O Oxidation and H~+ Reduction

机译:稳定H2O氧化和H〜+还原的电聚合膜中电沉积金属颗粒的策略

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Metal particles were electrodeposited on a variety of conducting substrates, and their electrocatalytic activity toward H2O oxidation to O2 and H~+ reduction to H2 was evaluated. Co, Ni, Cu, Pd, Ag, and Pt were all electrodeposited on fluorine-doped tin oxide (FTO) electrodes. Particularly active were Pd and Pt for H~+ reduction and Co and Ag for H2O oxidation. When cycled reductively in 0.1 M HClO4, FTO electrodes derivatized with Pt and Pd reached current densities for hydrogen evolution of 18.3 and 13.2 mA/ cm2, respectively, at —0.6 V vs normal hydrogen electrode (NHE). FTO electrodes with electrodeposited Co or Ag were cycled oxidatively in H2O buffered to pH 7 with phosphate buffer. Current densities of 10.5 and 8.70 mA/cm~2, respectively, were reached at +1.8 Vvs NHE with H2O oxidation onsets at +1.3 and +1.4 V, respectively. The impacts on catalytic stability and performance of electrodeposited metals in/on an electrically conductive polymer support were also investigated. Films of poly-[Fe(vbpy)3](PF6)2 (vbpy is 4-methyl-4'-vinyl-2,2'-bipyridine) were generated on FTO by reductive electropolymerization. Significant improvements to the long-term stability of electrodeposited Ag and Pt particles were observed in the poly-[Fe(vbpy)3](PF6)2 support. Films of poly-[M(vbpy)3](PF6)2 with M = Co(II) or Cu(II) were also prepared and evaluated as electrocatalysts for H2O oxidation. Films containing Co(II) reached current densities of 6.0 mA/cm~2 at +1.8 V vs NHE in H2O.
机译:将金属颗粒电沉积在各种导电基材上,并评估了它们对H2O氧化为O2和H〜+还原为H2的电催化活性。 Co,Ni,Cu,Pd,Ag和Pt均电沉积在掺氟氧化锡(FTO)电极上。尤其活泼的是Pd和Pt用于还原H〜+,Co和Ag用于H2O氧化。当在0.1 M HClO4中进行还原性循环时,用Pt和Pd衍生的FTO电极在-0.6 V时的氢析出电流密度为-0.6 V(相对于普通氢电极(NHE))。将带有电沉积的Co或Ag的FTO电极在磷酸盐缓冲液缓冲的pH值为7的H2O中进行氧化循环。在+1.8 Vvs NHE时,电流密度分别达到10.5和8.70 mA / cm〜2,H2O的氧化开始分别在+1.3和+1.4V。还研究了对导电聚合物载体中/上的电沉积金属的催化稳定性和性能的影响。通过还原电聚合在FTO上生成了聚[Fe(vbpy)3](PF6)2(vbpy是4-甲基-4'-乙烯基-2,2'-联吡啶)的薄膜。在聚[Fe(vbpy)3](PF6)2载体中观察到电沉积的Ag和Pt颗粒的长期稳定性有显着改善。还制备了具有M = Co(II)或Cu(II)的聚[M(vbpy)3](PF6)2薄膜,并将其作为H2O氧化的电催化剂进行评估。相对于NHE在H2O中,含Co(II)的薄膜在+1.8 V时的电流密度达到6.0 mA / cm〜2。

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