Masaru Kato, Hiroyuki Asakura, Siqi Xie, Koki Matsumoto, Akira Onoda, Shun Saito, Kenji Ishii, Takaya Mitsui, Kosuke Fujiwara, Ichizo Yagi
To gain insights into single-atom active sites of iron, nitrogen-doped carbon (Fe-N-C), we performed comprehensive element-specific spectroscopies including Fe K-edge X-ray absorption, 57Fe Mössbauer, and Fe Kβ1,3 and valence-to-core (VtC) X-ray emission spectroscopy for two Fe-N-C electrocatalysts that exclusively have atomically dispersed FeN4 active sites for the oxygen reduction reaction. Experimental VtC X-ray emission spectra (VtC-XES) coupled with spectral simulation of FeN4 active site models allowed us to determine the dominant active site in each catalyst: FeN4 active sites with 14-membered or 16-membered rings. Our study will open up possibilities to understand more details on active site structure-activity relationships not only for Fe-N-C electrocatalysts but also the other single-atom (electro)catalysts.