Influence of Synthesis Conditions on the Crystal, Local Atomic, Electronic Structure, and Catalytic Properties of (Pr1−xYbx)2Zr2O7 (0 ≤ x ≤ 1) Powders

В. В. Попов, Е. Б. Маркова,Yan V. Zubavichus, А. П. Менушенков,Alexey A. Yastrebtsev, B. R. Gaynanov,Olga Chernysheva, А. А. Иванов,Sergey G. Rudakov, M. M. Berdnikova, А. А. Писарев,Elizaveta S. Kulikova, N. A. Kolyshkin,Evgeny V. Khramov,Victor N. Khrustalev, И. В. Щетинин,Nadezhda A. Tsarenko, N.V. Ognevskaya, O.N. Seregina

Crystals(2023)

引用 0|浏览3
暂无评分
摘要
The influence of Yb3+ cations substitution for Pr3+ on the structure and catalytic activity of (Pr1−xYbx)2Zr2O7 powders synthesized via coprecipitation followed by calcination is studied using a combination of long- (s-XRD), medium- (Raman, FT-IR, and SEM-EDS) and short-range (XAFS) sensitive methods, as well as adsorption and catalytic techniques. It is established that chemical composition and calcination temperature are the two major factors that govern the phase composition, crystallographic, and local-structure parameters of these polycrystalline materials. The crystallographic and local-structure parameters of (Pr1−xYbx)2Zr2O7 samples prepared at 1400 °C/3 h demonstrate a tight correlation with their catalytic activity towards propane cracking. The progressive replacement of Pr3+ with Yb3+ cations gives rise to an increase in the catalytic activity. A mechanism of the catalytic cracking of propane is proposed, which considers the geometrical match between the metal–oxygen (Pr–O, Yb–O, and Zr–O) bond lengths within the active sites and the size of adsorbed propane molecule to be the decisive factor governing the reaction route.
更多
查看译文
关键词
catalytic properties,electronic structure,synthesis conditions,crystal
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要