Adsorption of cobalt species on the interface, which is developed between aqueous solution and metal oxides used for the preparation of supported catalysts: a critical review

被引:74
作者
Bourikas, K
Kordulis, C
Vakros, J
Lycourghiotis, A [1 ]
机构
[1] Univ Patras, Dept Chem, GR-26500 Patras, Greece
[2] Hellenic Open Univ, Sch Sci & Technol, GR-26222 Patras, Greece
[3] FORTH, ICE HT, Inst Chem Engn & High Temp Chem Proc, GR-26500 Patras, Greece
关键词
cobalt; metal oxide/aqueous solution interface; adsorption; co-supported catalysts; interface chemistry;
D O I
10.1016/j.cis.2004.04.001
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In the present review article, we present the efforts done so far for elucidating the mechanism of adsorption of the Co(II) species, mainly Co(H2O)(6)(2+), on the interfacial region developed between metal oxide particles, used as catalytic supports, and aqueous electrolytic solutions. Specifically, we present: (i) the principal modes of deposition of the transition metal ionic species (TMIS) on the surface of oxidic supports related with the various methodologies used for the preparation of the supported catalysts; (ii) the state of the art concerning the general aspects of the adsorption mechanisms of the TMIS on the aforementioned interfacial region; and (iii) the works reported so far dealing with the adsorption of the Co(II) species on the surface of gamma-Al2O3 (gamma-alumina), alpha-Al2O3 (alpha-alumina), TiO2 (rutile), and SiO2 (silica). It was concluded that the mechanism of adsorption depends on two main factors: on the Co(II) surface concentration and on the nature of the support surface. It seems that, generally, the mechanism changes progressively along the Co(II) surface concentration from the deposition of monodentate-mononuclear inner sphere complexes, weakly evidenced in too low values of the Co(II) surface concentration, to multidentate, multinuclear inner sphere surface complexes at relatively low Co(II) surface concentrations, and then into surface Co(OH)(2)-like, eventually mixed precipitates, at relatively high Co(II) surface concentrations but at pH values lower than those required for bulk precipitation. In all cases, Co(II) forms surface species with Co(II) in octahedral symmetry. However, the exact Co(II) surface concentration values, in which the abovementioned two transitions (concerning the deposited phase) take place, depends on the kind of the support. Thus, SiO2 favors the formation of the Co(OH)(2)-like precipitates even at relatively low Co(II) surface concentrations. In contrast, TiO2 favors the formation of mononuclear or oligonuclear surface complexes. Finally, alumina, which exhibits the maximum adsorption capacity, favors the formation of highly defected Co(OH)(2)-like precipitates, probably mixed Co-Al precipitates. The exact local structure of the inner sphere Co(II) surface complexes, formed by exchanging the H2O ligands with surface oxygens, has been already approached but only for the surface planes of the alpha-Al2O3 and rutile monocrystals. This structure remains up to now rather unclear for the polycrystalline oxides used as catalytic supports. (C) 2004 Elsevier B.V. All rights reserved.
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页码:97 / 120
页数:24
相关论文
共 119 条
[1]   A revised physical theory for adsorption of metal complexes at oxide surfaces [J].
Agashe, KB ;
Regalbuto, JR .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1997, 185 (01) :174-189
[2]  
Baes C.F., 1976, HYDROLYSIS CATIONS
[3]   PREPARATION AND CHARACTERIZATION OF DISPERSED COBALT OXIDE SUPPORTED ON GAMMA-AL2O3 [J].
BAI, C ;
SOLED, S ;
DWIGHT, K ;
WOLD, A .
JOURNAL OF SOLID STATE CHEMISTRY, 1991, 91 (01) :148-152
[4]   IR study of acrolein hydrogenation over Co/SiO2 catalysts [J].
Bailie, JE ;
Rochester, CH ;
Hutchings, GJ .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS, 1997, 93 (24) :4389-4394
[5]   Outer-sphere Pb(II) adsorbed at specific surface sites on single crystal alpha-alumina [J].
Bargar, JR ;
Towle, SN ;
Brown, GE ;
Parks, GA .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1996, 60 (18) :3541-3547
[6]   Advances in the mechanism of deposition of the CrO42-, HCrO4-, and Cr2O72- species on the surface of titania consisting of anatase and rutile [J].
Bourikas, K ;
Spanos, N ;
Lycourghiotis, A .
LANGMUIR, 1997, 13 (03) :435-444
[7]   Ion pair formation and primary charging behavior of titanium oxide (anatase and rutile) [J].
Bourikas, K ;
Hiemstra, T ;
Van Riemsdijk, WH .
LANGMUIR, 2001, 17 (03) :749-756
[8]   Advances in the mechanism of deposition of MoO42- and Mo7O246- species on the surface of titania consisted of anatase and rutile [J].
Bourikas, K ;
Spanos, N ;
Lycourghiotis, A .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1996, 184 (01) :301-318
[9]   Adsorption of molybdate monomers and polymers on titania with a multisite approach [J].
Bourikas, K ;
Hiemstra, T ;
Van Riemsdijk, WH .
JOURNAL OF PHYSICAL CHEMISTRY B, 2001, 105 (12) :2393-2403
[10]   Mechanism of deposition of vanadium-oxo, species on the ''anatase/electrolytic solution'' interface [J].
Bourikas, K ;
Georgiadou, I ;
Kordulis, C ;
Lycourghiotis, A .
JOURNAL OF PHYSICAL CHEMISTRY B, 1997, 101 (42) :8499-8506