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Cerium oxides structure-bonding

The X-ray structure showed a mean Ce-N bond length of 2.259 A the 0-0 distance of 1.328(6) A is indicative of a superoxide [O2] (rather than a peroxide [02] ), which implies that the cerium oxidation state is intermediate between +3 and +4. ... [Pg.93]

A predominant feature of the atomic structure of the lanthanide group is the sequential addition of 14 electrons to the 4f subshell (Table 1). The /"electrons do not participate in bond formation and in ordinary aqueous solutions all of the lanthanides exhibit a principal (III) state. The common (III) state confers a similarity in chemical properties to all lanthanide elements. Some of the lanthanides can also exist in the (II) state (Nd, Sm, Eu, Tm, Yh) or in the (IV) state (Ce, Pr, Nd, Tb, Dy). Except for Ce(IV), Eu(II), and Yb(II), these unusual lanthanide oxidation states can only be prepared under drastic redox pressure and temperature conditions, and they are not stable in aqueous solutions. Cerium (IV) is a strong oxidizing agent... [Pg.2]

Like the double bond, the carbon-carbon triple bond is susceptible to many of the common addition reactions. In some cases, such as reduction, hydroboration and acid-catalyzed hydration, it is even more reactive. A very efficient method for the protection of the triple bond is found in the alkynedicobalt hexacarbonyl complexes (.e.g. 117 and 118), readily formed by the reaction of the respective alkyne with dicobalt octacarbonyl. In eneynes this complexation is specific for the triple bond. The remaining alkenes can be reduced with diimide or borane as is illustrated for the ethynylation product (116) of 5-dehydro androsterone in Scheme 107. Alkynic alkenes and alcohols complexed in this way show an increased structural stability. This has been used for the construction of a variety of substituted alkynic compounds uncontaminated by allenic isomers (Scheme 107) and in syntheses of insect pheromones. From the protecting cobalt clusters, the parent alkynes can easily be regenerated by treatment with iron(III) nitrate, ammonium cerium nitrate or trimethylamine A -oxide. ° ... [Pg.692]

In this section, systematic results on the electronic structures and chemical bonding of rare-earth sesquioxides and fluorite-type oxides are introduced briefly. In the subsection 4-1, systematic results on the electronic structures and chemical bonding of sesquioxides are described and the description on rare-earth fluorite-type oxides is mainly focused on cerium dioxide in the subsection 4-2. [Pg.95]


See other pages where Cerium oxides structure-bonding is mentioned: [Pg.76]    [Pg.235]    [Pg.340]    [Pg.305]    [Pg.207]    [Pg.65]    [Pg.95]    [Pg.207]    [Pg.488]    [Pg.4234]    [Pg.154]    [Pg.169]    [Pg.130]    [Pg.604]    [Pg.382]    [Pg.3410]    [Pg.4233]    [Pg.248]    [Pg.94]    [Pg.459]    [Pg.16]    [Pg.143]    [Pg.189]   
See also in sourсe #XX -- [ Pg.250 ]




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Cerium oxides

Cerium structures

Oxides bonding

Oxides, structure

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