首页|期刊导航|纳米材料科学(英文版)|NiO lattice oxygen overflow promoted by Ti3C2 support enhances catalytic hydrolysis of carbonyl sulfide in metallurgical gas

NiO lattice oxygen overflow promoted by Ti3C2 support enhances catalytic hydrolysis of carbonyl sulfide in metallurgical gasOA

NiO lattice oxygen overflow promoted by Ti3C2 support enhances catalytic hydrolysis of carbonyl sulfide in metallurgical gas

Shunzheng Zhao;Yiran Tan;Xiaolong Tang;Fengyu Gao;Qingjun Yu;Dongjuan Kang;Yunpeng Liu;Honghong Yi

Country Department of Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,China||Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants,Beijing 100083,ChinaCountry Department of Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,ChinaCountry Department of Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,China||Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants,Beijing 100083,ChinaCountry Department of Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,ChinaCountry Department of Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,ChinaCountry Department of Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,ChinaInstitute of High Energy Physics,Chinese Academy of Sciences,Beijing 100049,ChinaCountry Department of Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,China||Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants,Beijing 100083,China

Carbonyl sulfideCatalytic hydrolysisMXeneLattice oxygen activationProton capture

Carbonyl sulfideCatalytic hydrolysisMXeneLattice oxygen activationProton capture

《纳米材料科学(英文版)》 2026 (3)

575-584,10

This work was financially supported by National Key R&D Program of China(No.2023YFB3810800),and National Natural Science Foundation of China(No.51808037).The authors wish to thank facility support of the 4B9A beamline of Beijing Synchrotron Radiation Facility(BSRF).

10.1016/j.nanoms.2024.09.012

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