CO Cryo-Sorption as a Surface-Sensitive Spectroscopic Probe of the Active Site Density of Single-Atom Catalysts

  • Jeong, Beomgyun; 
  • Abbas, Hafiz Ghulam; 
  • Klein, Benedikt P.; 
  • Bae, Geunsu; 
  • Velmurugan, Adith Ramakrishnan; 
  • ... Ringe, Stefan; 
  • 외 8명
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초록

Quantifying the number of active sites is a crucial aspect in the performance evaluation of single metal-atom electrocatalysts. A possible realization is using adsorbing gas molecules that selectively bind to the single-atom transition metal and then probing their surface density using spectroscopic tools. Herein, using in situ X-ray photoelectron spectroscopy (XPS) and near edge X-ray absorption fine structure (NEXAFS) spectroscopy, we detect adsorbed CO gas molecules on a FeNC oxygen reduction single atom catalyst. Correlating XPS and NEXAFS, we develop a simple surface- and chemically-sensitive protocol to accurately and quickly quantify the active site density. Density functional theory-based X-ray spectra simulations reaffirm the assignment of the spectroscopic fingerprints of the CO molecules adsorbed at Fe-N4-C sites, and provide additional unexpected structural insights about the active site needed to explain the low-temperature CO adsorption. Our work represents an important step towards an accurate quantitative catalytic performance evaluation, and thus towards developing reliable material design principles and catalysts.

키워드

heterogeneous catalysis; adsorption; x-ray absorption spectroscopy; photoelectron spectroscopy; density functional calculations; ab initio calculations; NITROGEN-DOPED CARBON; OXYGEN REDUCTION; TURNOVER FREQUENCY; METAL; IRON; SPECTRA; PERFORMANCE; XPS; ELECTROCATALYSTS; QUANTIFICATION
제목
CO Cryo-Sorption as a Surface-Sensitive Spectroscopic Probe of the Active Site Density of Single-Atom Catalysts
저자
Jeong, Beomgyun; Abbas, Hafiz Ghulam; Klein, Benedikt P.; Bae, Geunsu; Velmurugan, Adith Ramakrishnan; Choi, Chang Hyuck; Kim, Geonhwa; Kim, Dongwoo; Kim, Ki-jeong; Cha, Byeong Jun; Kim, Young Dok; Jaouen, Frederic; Maurer, Reinhard J.; Ringe, Stefan
DOI
10.1002/anie.202420673
발행일
2025-03-03
유형
Article
저널명
Angewandte Chemie International Edition
권
64
호
10