Electrochemical quartz crystal microbalance study of high-rate Pt dissolution in H2O2-containing H2SO4 solution with Fe2+ ion

Electrochemical quartz crystal microbalance study of high-rate Pt dissolution in H2O2-containing H2SO4 solution with Fe2+ ion
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DOI:
10.1016/j.ijhydene.2015.10.067
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发表时间:
2016-01
影响因子:
7.2
通讯作者:
Hayato Itaya;S. Shironita;A. Nakazawa;M. Inoue;M. Umeda
Hayato Itaya;S. Shironita;A. Nakazawa;M. Inoue;M. Umeda
中科院分区:
工程技术2区
文献类型:
--
作者:
Hayato Itaya;S. Shironita;A. Nakazawa;M. Inoue;M. Umeda

文献摘要

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采用电化学石英晶体微天平(EQCM)研究了H2O2和Fe2+共存下Pt在H2SO4溶液中的溶解行为。EQCM数据表明,在含H2O2的H2SO4体系中,Pt在第4次循环后的1.36 → 0.36 V vs.RHE的阴极电位阶跃中发生了明显的溶解,而Fe2+的存在进一步促进了Pt的溶解。在Fe 2+的存在下,观察到的质量增加和质量损失直到第3次循环也更显著,这表明Pt电极表面的粗糙度显著增加。这一现象可能是由于H2O2的显著分解导致O2生成增加所致。结果表明,在H2O2和Fe2+共存的条件下,Pt原子重排形成了Pt氧化剂,促进了Pt的快速溶解。
Pt dissolution in an H2SO4solution was investigated in the presence of both H2O2and Fe2+using an electrochemical quartz crystal microbalance (EQCM). The EQCM data in the H2O2-containing H2SO4with and without Fe2+showed that a remarkable Pt dissolution occurred during the cathodic potential step of 1.36 → 0.36 V vs. RHE from the 4th cycle, which is further enhanced by the presence of Fe2+. The mass gains and mass losses observed up to the 3rd cycle were also more significant in the presence of Fe2+, suggesting that the roughness of the Pt electrode surface remarkably increased. This phenomenon may be caused by the enhanced O2generation due to the significant decomposition of H2O2. As a result, Pt oxidants inducing the cathodic Pt dissolution significantly form from the rearranged Pt atoms, which contribute to the high-rate Pt dissolution in the presence of both H2O2and Fe2+.