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◆ ACS Catalysis2025-12-19· Fourier transform infrared spectroscopy

PdO <sub> <i>x</i> </sub> Versus Pd for Lean Methane Combustion: Low-Temperature CO-FTIR Spectroscopy Combined with Operando FTIR Spectroscopy

Tao Wang, Yu Qiao, Zhilin Chen, Chao Xiao, Shuming Peng

原始摘要(英文原文)· Original abstract
The active phase for methane combustion is still in debate. Low-temperature CO-FTIR spectroscopy was used to probe the working surface state on a series of Pd/Al 2 O 3 (PdAl) and Pd/silicalite-1 (PdSil) catalysts with different starting states: oxidized, reduced (R), reoxidized (Ro). The surface of prereduced PdAl (Pd 0 ) is transformed to an oxidized state (PdO x ) with a CO stretching vibration (ν CO ) at ∼2157 cm –1 when it is aged in the methane oxidation mixture. The aging-induced transformation from Pd 0 to PdO x occurred at 250 °C or above. Although PdSil has multiple kinds of PdO x entities, prereduced PdSil also transformed into PdO x . For PdAl(4)-R-A250, XRD patterns suggest weak bulk oxidation of Pd 0 at 250 °C, XPS spectra indicate 28% of surface Pd 0 atoms are oxidized, but CO-FTIR spectra confirm all the “top surface” Pd 0 atoms are oxidized. It demonstrates the advantage of CO-FTIR spectroscopy in probing the top surface state. Finally, a direct correlation between operando FTIR spectroscopy and low-temperature CO-FTIR spectroscopy was established. Operando FTIR spectra over PdSil during methane oxidation at 250 °C gives two bands at 2124 cm –1 (CO–Pd + ) and 2161 cm –1 (CO–Pd 2+ ). After cooling in nitrogen, CO-FTIR spectra give two similar bands at 2134 cm –1 and 2157 cm –1 . The “working surface state” can be preserved in CO-FTIR. For PdAl(4), operando FTIR spectra at 250 and 300 °C give no bands of adsorbed CO. Adding CO into the methane oxidation mixture resulted in a single CO–Pd 2+ band at 2163 cm –1, which is in accord with their CO-FTIR spectra. For operando FTIR spectroscopy, the observation of the bands of adsorbed CO depends on the accumulation of the CO intermediates, but their accumulation is limited to reaction temperatures below 300 °C and to PdSil (not PdAl). These limitations make low-temperature CO-FTIR spectroscopy more general and sensitive.
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PdO <sub> <i>x</i> </sub> Versus Pd for Lean Methane Combustion: Low-Temperature CO-FTIR Spectroscopy Combined with Operando FTIR Spectroscopy — 科研速览 Science Skim