标題:Surface-complexation synthesis of silica-supported high-loading well-dispersed reducible nano-Co3O4 catalysts using Co-III ammine hydroxo complexes
作者: Zhang, WD (Zhang, Weidong); Pan, F (Pan, Feng); Li, JJ (Li, Jinjun); Wang, Z (Wang, Zhen); Ding, W (Ding, Wei); Qin, Y (Qin, Yi); Wu, F (Wu, Feng)
來源出版物:APPLIED SURFACE SCIENCE 卷:44頁碼:83-91 DOI: 10.1016/j.apsusc.2018.02.094 出版年: JUN 1 2018
摘要:Silica-supported highly dispersed cobalt oxides prepared by adsorption are likely to be poorly reducible Co-phyllosilicates or CoO species. Here we report the synthesis of silica-supported monodispersed spinel nano-Co3O4 catalysts by inner-sphere complexation using Co-III ammine hydroxo complexes as precursors. The precursors were facilely prepared by stirring ammoniacal Co-II solutions exposed to air. The cobalt loadings (up to 188 mg/g) and particle sizes (3-10 nm) were tailored by successive complexation-calcination cycles. Such catalysts showed significantly superior reducibility and catalytic activity in complete propane oxidation in comparison to supported Co-phyllosilicates and CoO. A further development of this synthesis process may provide a variety of cobalt-based catalysts for important catalytic applications.
入藏号:WOS:000428294500011
文獻類型:Article
語種:English
作者關鍵詞:Cobalt oxide; Silica; Nanoparticle; Cobalt ammine complex; Catalytic oxidation; Volatile organic compounds
擴展關鍵詞: FISCHER-TROPSCH SYNTHESIS; COBALT OXIDE CATALYSTS; ELECTROSTATIC ADSORPTION; CARBON-MONOXIDE; TOTAL OXIDATION; NANOPARTICLES; WATER; HYDROGENATION; BENZENE; OXYGEN
通訊作者地址:Li, JJ; Wu, F (reprint author), Wuhan Univ, Hubei Key Lab Biomass Resources, Sch Resources & Environm Sci, Wuhan 430079, Hubei, Peoples R China.
電子郵件地址:lijinjun@whu.edu.cn; Fengwu@whu.edu.cn
地址:[Zhang, Weidong; Pan, Feng; Li, Jinjun; Wang, Zhen; Ding, Wei; Qin, Yi; Wu, Feng] Wuhan Univ, Hubei Key Lab Biomass Resources, Sch Resources & Environm Sci, Wuhan 430079, Hubei, Peoples R China.
影響因子:3.387
版權所有 © 88858cc永利官网
地址:湖北省武漢市珞喻路129号 郵編:430079
電話:027-68778381,68778284,68778296 傳真:027-68778893 郵箱:sres@whu.edu.cn