Synthesis and properties of Pt/TiN catalyst for low-temperature air purification from carbon monoxide
Синтез и свойства Pt/TiN-катализатора для низкотемпературной очистки воздуха от монооксида углерода
2021-01-01
SCID: 54.1/kdeu3js3
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Pt/TiN catalystsX-ray photoelectron spectroscopycarbon monoxide oxidationcatalytic air purificationtitanium nitride
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Abstract (AI)
Catalysts of carbon monoxide oxidation were synthesized by deposition of platinum on titanium nitride (TiN). Two substrates with an average particle size of 18 and 36 nm were obtained by hydrogen reduction of titanium tetrachloride in a stream of microwave plasma of nitrogen. The surface of the catalysts was studied by X-ray photoelectron spectroscopy (XPS). The data obtained by us in the present work indicate the presence of oxynitride as a transition layer between nitride and oxide. It was found that the CO oxidation rate on the 9–15 wt. % Pt loaded TiN catalysts is 120 times higher than that on the platinum black with a specific surface of 30 m2⋅g–1. Increase in the reaction rate of CO oxidation on Pt/TiN catalysts as compared to platinum black can be associated with both an increase in the concentration of CO molecules adsorbed and a decrease in the activation energy of the reaction. Catalysts are promising for use in catalytic air purification systems.
Key Findings
1
Platinum was deposited on TiN substrates with average particle sizes of 18 and 36 nm, synthesized by microwave-plasma hydrogen reduction of titanium tetrachloride.
2
Pt/TiN catalysts were identified as promising materials for low-temperature catalytic air purification.
3
The enhanced CO oxidation rate may result from increased CO adsorption and reduced reaction activation energy on Pt/TiN catalysts.
4
TiN-supported catalysts containing 9–15 wt.% platinum oxidized carbon monoxide 120 times faster than platinum black with a specific surface area of 30 m²·g⁻¹.
5
XPS analysis indicated that an oxynitride layer forms at the interface between titanium nitride and oxide.
Research Object
Pt/TiN catalysts for low-temperature carbon monoxide oxidation and air purification
Research Subject
Surface composition and catalytic CO-oxidation performance of Pt-loaded TiN, including oxynitride interlayer formation, CO adsorption, and activation-energy effects
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2021-01-01
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