Strickland Kara, Miner Elise, Jia Qingying, Tylus Urszula, Ramaswamy Nagappan, Liang Wentao, Sougrati Moulay-Tahar, Jaouen Frédéric, Mukerjee Sanjeev
Northeastern University Center for Renewable Energy Technology, Department of Chemistry and Chemical Biology, Northeastern University, 317 Egan Research Center, 360 Huntington Avenue, Boston, Massachusetts 02115, USA.
Department of Biology, Northeastern University, 134 Mugar Life Sciences, 360 Huntington Avenue, Boston, Massachusetts 02115, USA.
Nat Commun. 2015 Jun 10;6:7343. doi: 10.1038/ncomms8343.
Replacement of noble metals in catalysts for cathodic oxygen reduction reaction with transition metals mostly create active sites based on a composite of nitrogen-coordinated transition metal in close concert with non-nitrogen-coordinated carbon-embedded metal atom clusters. Here we report a non-platinum group metal electrocatalyst with an active site devoid of any direct nitrogen coordination to iron that outperforms the benchmark platinum-based catalyst in alkaline media and is comparable to its best contemporaries in acidic media. In situ X-ray absorption spectroscopy in conjunction with ex situ microscopy clearly shows nitrided carbon fibres with embedded iron particles that are not directly involved in the oxygen reduction pathway. Instead, the reaction occurs primarily on the carbon-nitrogen structure in the outer skin of the nitrided carbon fibres. Implications include the potential of creating greater active site density and the potential elimination of any Fenton-type process involving exposed iron ions culminating in peroxide initiated free-radical formation.
用过渡金属取代用于阴极氧还原反应的催化剂中的贵金属,大多会基于氮配位过渡金属与非氮配位碳嵌入金属原子簇的复合物形成活性位点。在此,我们报道一种非铂族金属电催化剂,其活性位点与铁没有任何直接的氮配位,在碱性介质中性能优于基准铂基催化剂,在酸性介质中与目前最佳的同类催化剂相当。原位X射线吸收光谱结合非原位显微镜清楚地表明,氮化碳纤维中嵌入的铁颗粒并不直接参与氧还原途径。相反,反应主要发生在氮化碳纤维外皮的碳氮结构上。这意味着有可能创造更高的活性位点密度,并有可能消除任何涉及暴露铁离子的芬顿型过程,最终导致过氧化物引发自由基形成。