Edgecomb Joseph, Xie Xiaohong, Shao Yuyan, El-Khoury Patrick Z, Johnson Grant E, Prabhakaran Venkateshkumar
Pacific Northwest National Laboratory, Richland, WA, United States.
Front Chem. 2020 Oct 21;8:572563. doi: 10.3389/fchem.2020.572563. eCollection 2020.
Understanding molecular-level transformations resulting from electrochemical reactions is important in designing efficient and reliable energy technologies. In this work, a novel integrated scanning electrochemical cell microspectroscopy (iSECCMS) capability is developed by combining a high spatial resolution electrochemical scanning probe with fluorescence spectroscopy. Using 6-carboxyfluorescein as a fluorescent probe, the iSECCMS platform is employed to measure the effect of the detrimental generation of reactive oxygen species (ROS) formed at the active sites of oxygen reduction reaction (ORR) catalysts. Carbon-supported tantalum-doped titanium oxide (TaTiO) catalysts, a potential Pt-group-metal-free (PGM-free) cathode material explored for low temperature polymer electrolyte fuel cells (PEFCs), is used as a representative model ORR system, where generation of intermediate HO instead of fully oxidized HO is a major concern. We establish that the iSECCMS platform provides a novel and versatile capability for spatially resolved mapping of ROS generation and activity during the kinetically-limited ORR and may, therefore, aid the future characterization and development of high-performance PGM-free PEFC cathodes.
理解电化学反应产生的分子水平转变对于设计高效可靠的能源技术至关重要。在这项工作中,通过将高空间分辨率电化学扫描探针与荧光光谱相结合,开发了一种新型的集成扫描电化学细胞显微光谱技术(iSECCMS)。使用6-羧基荧光素作为荧光探针,iSECCMS平台用于测量在氧还原反应(ORR)催化剂活性位点形成的活性氧(ROS)有害生成的影响。碳载钽掺杂二氧化钛(TaTiO)催化剂是一种为低温聚合物电解质燃料电池(PEFC)探索的潜在无铂族金属(PGM-free)阴极材料,用作代表性的ORR模型系统,其中主要关注的是生成中间体HO而不是完全氧化的HO。我们确定,iSECCMS平台为在动力学受限的ORR过程中ROS生成和活性的空间分辨映射提供了一种新颖且通用的能力,因此可能有助于未来高性能无PGM的PEFC阴极的表征和开发。