Influence of surfactants on the physicochemical properties and catalytic behaviour of Mo-doped carbon xerogels

被引:8
|
作者
Maldonado-Hodar, F. J. [1 ]
Jirglova, H. [1 ]
Morales-Torres, S. [1 ,2 ]
Perez-Cadenas, A. F. [1 ]
机构
[1] Univ Granada, Fac Sci, Dept Inorgan Chem, Ave Fuentenueva S-N, E-18071 Granada, Spain
[2] Univ Porto, Lab Separat & React Engn, Lab Catalysis & Mat LSRE LCM, Fac Engn, Rua Dr Roberto Frias, P-4200465 Oporto, Portugal
关键词
Carbon xerogels; Nanostructures; Metal doping; Nanosized molybdenum carbide; Organic-inorganic interactions; In-situ carbidization; Surface properties; Catalytic performance; RESORCINOL-FORMALDEHYDE GELS; ALKANE AROMATIZATION; ACTIVATED CARBONS; ORGANIC AEROGELS; MOLYBDENUM; MORPHOLOGY; POROSITY; XPS; TEMPERATURE; COMPOSITES;
D O I
10.1016/j.cattod.2017.01.030
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
A series of Mo-doped carbon xerogels were obtained by surfactant-assisted sol-gel polymerization of resorcinol-formaldehyde at neutral pH. The morphology, porous texture, acid-base character and metal phase and dispersion, of these novel nanostructured materials were studied by several and complementary techniques, while their catalytic performance was assessed in the isopropanol decomposition and n-hexane aromatization. The formation of different carbon nanostructures (nanospheres or nanofibers) was induced by fitting the surfactant ratios, being always obtained highly dispersed molybdenum nanoparticles on these nanostructures. Nevertheless, the nature of the Mo-phases varied from oxides to carbides depending on surfactant ratios. The incorporation of cationic surfactant molecules to the chemical structure of the gels favours the interaction with anionic precursors, like MoO42-, which avoids sintering and promotes the carbidization of the metallic phase (63% of the total metal loading being achieved) during carbonization. The combination of Mo-phases (oxide and carbide) together the carbon support moderates the catalyst acidity, which induces a high selectivity to benzene (around 75%) in hexane aromatization processes. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:217 / 225
页数:9
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