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Surface organometallic

The participation of siloxane groups in the reaction increases with the temperature of dehydration of Si02 and quantity of organometallic compound introduced in the reaction. According to the data of infrared spectroscopy (139), the allyl ligands formed in the surface organometallic complexes of Ni and Cr keep the 7r-allyl character of the metal-ligand bond. [Pg.190]

The application of these catalysts in the initial state (without any special treatment of the surface organometallic complexes of such cata-lysts) for ethylene polymerization has been described above. The catalysts formed by the reaction of 7r-allyl compounds with Si02 and AUOj were found to be active in the polymerization of butadiene as well (8, 142). The stereospecificity of the supported catalyst differed from that of the initial ir-allyl compounds. n-Allyl complexes of Mo and W supported on silica were found to be active in olefin disproportionation (142a). [Pg.191]

Some data have been obtained on the activity of the catalyst in a reduced state [for nickel (141,143,144), palladium (144°), and molybdenum (145, 145a). In the case of nickel catalysts the formation of nickel in the zero oxidation state takes place during the reduction of the surface organometallic compound by H2. The infrared spectrum shows the total restoration of the concentration of Si—OH groups (139), so the reduction proceeds according to the scheme ... [Pg.191]

Metal particles Oxide supports Surface organometallic chemistry... [Pg.152]

In this review, we will specifically discuss the similarities and the differences between the chemistry on surfaces and molecular chemistry. In Sect. 2, we will first describe how to generate well-dispersed monoatomic transition metal systems on oxide supports and understand their reactivity. Then, the chemistry of metal surfaces, their modification and the impact on their reactivity will be discussed in Sect. 3. Finally, in Sect. 4, molecular chemistry and surface organometallic chemistry will be compared. [Pg.152]

Reaction of Organometallic Complexes with Oxide Supports the Controlled Formation of Surface Organometallic Complexes... [Pg.153]

The formation of a stable monobutyl species obtained at 50 °C is also further demonstrated by its hydrogenolysis at higher temperatures. Indeed, treatment under H2 of the grafted surface organometallic complex, Pts[SnBu]jy, at 300 °C for 4 h generates about one butane per Sn along with traces amounts of propane, ethane, and methane. [Pg.190]

Structural Similarities and Differences between Molecular and Surface Organometallic Chemistry... [Pg.204]

It is first necessary to distinguish the surface organometallic chemistry on metals and on oxides since one deals with a large ensemble of metals, while the others generate dispersed metal atoms attached covalently onto the support. [Pg.204]

Metalloporphyrinosilicas as a new class of hybrid organic-inorganic materials were prepared by polymerization of 3- er -butyl-5-vinylsalicylaldehyde with styrene and divinylbenzene and used as selective biomimetic oxidation catalyst.27 Synthesis and structural characterization of rare-earth bisfdimethyl-silyl)amides and their surface organometallic chemistry on mesoporous silicate MCM-41 have been reported.28... [Pg.250]

Alumina is known to have more ionic character and its surface has a more complex structure than that of silica. Reaction of Bu3SnH with the surface of partially dehydroxylated aluminas was followed and it was found that the extreme sensitivity of tin chemical shifts to the molecular environment constitutes a method whereby surface organometallic complexes of tin can be used as molecular probes for determining surface structures of oxides.248... [Pg.270]

The reaction of organometallics with metal surfaces is a very promising aspect of surface organometallic chemistry related to fine chemicals. The precise understanding of the reactions between organometallics and metal surfaces is essential to obtain highly selective catalysts by this route.292,293... [Pg.274]

The surface species produced by this reaction are real surface organometallic fragments (15 in Fig. 7.13). [Pg.274]

Surface Organometallic Chemistry as a Tool for Tailor-Made Catalysts... [Pg.276]

A bimetallic catalyst can be obtained by the reaction of tetrabutyltin with Rh/Si02 catalyst. The partial hydrogenolysis leads to the Rhs[Sn(n-C4H9)2]/ Si02 surface organometallic complexes, which proved to be fully selective in the hydrogenation of unsaturated aldehydes into the corresponding unsaturated alcohols.318... [Pg.276]

Surface Organometallic Chemistry for Study of the Elementary Steps in Heterogeneous Catalysis... [Pg.278]


See other pages where Surface organometallic is mentioned: [Pg.191]    [Pg.6]    [Pg.151]    [Pg.151]    [Pg.151]    [Pg.151]    [Pg.152]    [Pg.152]    [Pg.152]    [Pg.153]    [Pg.162]    [Pg.171]    [Pg.185]    [Pg.195]    [Pg.215]    [Pg.233]    [Pg.242]    [Pg.254]    [Pg.299]    [Pg.372]    [Pg.247]    [Pg.266]    [Pg.266]    [Pg.266]    [Pg.267]    [Pg.268]    [Pg.269]    [Pg.273]    [Pg.273]    [Pg.274]    [Pg.274]    [Pg.275]    [Pg.277]   
See also in sourсe #XX -- [ Pg.469 ]




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Surface Organometalic Species

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Surface and Supported Organometallic Catalysis

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Surface organometallic chemistry catalysts

Surface organometallic complexes

Surface organometallic complexes formation

Surface organometallic fragment

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Surface organometallic intermediate

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