三元运算
氧气
催化作用
化学
相(物质)
空位缺陷
结晶学
无机化学
物理化学
分析化学(期刊)
计算机科学
色谱法
生物化学
有机化学
程序设计语言
作者
Zhigang Liu,Zili Wu,Xihong Peng,Andrew Binder,Song‐Hai Chai,Sheng Dai
摘要
We have studied CO oxidation over a ternary CuO x /Co 3 O 4 –CeO 2 catalyst and employed the techniques of N 2 adsorption/desporption, XRD, TPR, TEM, in situ DRIFTS, and QMS (quadrupole mass spectrometry) to explore the origin of active oxygen. DRIFTS-QMS results with labeled 18 O 2 indicate that the origin of active oxygens in CuO x /Co 3 O 4 –CeO 2 obeys a model, called a queue mechanism. Namely gas-phase molecular oxygens are dissociated to atomic oxygens and then incorporated in oxygen vacancies located at the interface of Co 3 O 4 –CeO 2 to form active crystalline oxygens, and these active oxygens diffuse to the CO–Cu + sites thanks to the oxygen vacancy concentration magnitude and react with the activated CO to form CO 2 . This process, obeying a queue rule, provides active oxygens to form CO 2 from gas-phase O 2 via oxygen vacancies and crystalline oxygen at the interface of Co 3 O 4 –CeO 2 .
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