制氢
镧
拉尼奥
催化作用
化学
乙酸乙酯
无机化学
材料科学
氢
有机化学
光电子学
铁电性
电介质
作者
Zhiwei Xue,Yuesong Shen,Peiwen Li,Yu Zhang,Junjie Li,Bin Qin,Jin Zhang,Yanwei Zeng,Shemin Zhu
出处
期刊:Small
[Wiley]
日期:2018-07-20
卷期号:14 (34)
被引量:14
标识
DOI:10.1002/smll.201800927
摘要
Abstract The hydrogen economy is accelerating technological evolutions toward highly efficient hydrogen production. In this work, the catalytic performance of NiO/NaCl for hydrogen production via autothermal reforming of ethyl acetate and water is further improved through lanthanum modification, and the resulted 3%‐NiLaO y /NaCl catalyst achieves as high as 93% H 2 selectivity and long‐term stability at 600 °C. The promoting effect is caused by the strong interactions between lanthanum and NiO/NaCl, by which LaNiO 3 and a novel LaOCl phase are formed. The key role of LaOCl in promoting low‐temperature hydrogen production is highlighted, while effects of LaNiO 3 are well known. The LaOCl (010) facet possesses high adsorption capacity toward co‐chemisorbing ethyl acetate and water. LaOCl strongly interacts with ethyl acetate and H 2 O in the form of hydrogen bonding and coordination effect. The interactions induce tensions inside ethyl acetate and H 2 O, activate the molecules, and hence decrease the energy barrier for reaction. In situ Fourier transform infrared spectroscopy (FTIR) reveals that LaOCl along with NaCl enhances the adsorption ability of NiO/NaCl. Moreover, LaOCl improves the dispersion of Ni species in NiO–LaNiO 3 –LaOCl nanosheets, which possess abundant active sites. The effects together promote hydrogen evolution. Furthermore, the NiLaO y /NaCl catalyst can be easily reborn after deactivation due to the water solubility of NaCl.
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