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Alkyls cluster

The tetranuclear magnesium cluster is rather stable, which makes it possible to obtain by transmetallation cluster alkyl Grignard reagents inaccessible by direct synthesis in the films of reagents. [Pg.711]

It has also been applied to cluster alkyls such as the following (219) [ReaClalCHaSiMealeJ [RagClalCHaSiMealsIanha)]... [Pg.355]

Distinct subsections of the molecules comprising liquid crystals have also been observed using the rate of MQC development in a mixture of liquid crystalline materials. Separate MQ signals were observed for effectively isolated spin systems (phenyl rings) and weakly coupled multi-spin clusters (alkyl tails)80 in a mixture of 4-cyanophenyl 4 -butylbenzoate and 4 cyano-phenyl 4 -heptylbenzoate. [Pg.30]

The treatment of a trirhenium cluster with hydrogen leads to a new class of cluster alkyls involving a hexarhenium framework the syntheses are summarized in Scheme 14. The structure of [Re60M-Cl)6H(CH2SiMe3) ] was confirmed by... [Pg.211]

Sodium borobydride reacts with Lewis acids in nonprotic solvents to yield diborane [19287-45-7] 2 6 which can then be used to generate other useful organoboranes such as amine boranes, alkyl boranes, and boron hydride clusters. [Pg.259]

Derivatives of the boranes include not only simple substituted compounds in which H has been replaced by halogen, OH, alkyl or aryl groups, etc., but also the much more diverse and numerous class of compounds in which one or more B atom in the cluster is replaced by another main-group element such as C, P or S, or by a wide range of metal atoms or coordinated metal groups. These will be considered in later sections. [Pg.174]

A whole series of alkyl cluster compounds ResClsRe has been prepared by reacting ResClg with a large excess of RMgCl in... [Pg.1069]

Like gold, silver readily forms insoluble (yellow) thiolates [Ag(SR)] primary alkylthiolates are thought to have non-molecular structures but with bulky tertiary alkyls (n = 8), probably having a cyclic structure. Addition of excess thiolate leads to the formation of clusters like Ag6(SPh)g, Ag5(SPh)7 and Ag5(SBu )6 (phosphine adducts are known, too). [Pg.288]

Niobium, tris(diethyldilhiocarbamato)oxy-stereochemistry, 1,82 structure, 1, 83 Niobium, tris(oxa ato)oxy-stereochcmistry, 1, 82 Niobium, tris(phcnylcncdirhio)-structure, 1, 63 Niobium alanate, 3, 685 Niobium complexes alkyl alkoxy reactions, 2, 358 amides, 2,164 properties, 2, 168 synthesis, 2, 165 applications, 6,1014 carbamicacid, 2, 450 clusters, 3, 672,673,675 hexamethylbenzene ligands, 3, 669 cyanides synthesis, 2, 9 p-dinitrogen, 3, 418 fluoro... [Pg.177]

Non-ionic thiourea derivatives have been used as ligands for metal complexes [63,64] as well as anionic thioureas and, in both cases, coordination in metal clusters has also been described [65,66]. Examples of mononuclear complexes of simple alkyl- or aryl-substituted thiourea monoanions, containing N,S-chelating ligands (Scheme 11), have been reported for rhodium(III) [67,68], iridium and many other transition metals, such as chromium(III), technetium(III), rhenium(V), aluminium, ruthenium, osmium, platinum [69] and palladium [70]. Many complexes with N,S-chelating monothioureas were prepared with two triphenylphosphines as substituents. [Pg.240]

A MOF constructed from rhodium paddlewheel clusters linked to porphyrinic ligands already discussed in Section 4.3.1.1 shows an interesting synergetic behavior when the porphyrinic rings are loaded with metals like Cu , Ni , or Pd . In the hydrogenation of olefins, the hydride species at the rhodium center is transferred to the coordinated olefin adsorbed on a metal ion in the center of the porphyrin ring to form an alkyl species, and next this alkyl species reacts with a hydride species activated at the rhodium center to form the alkane [81]. [Pg.83]

The fact that f.a.b.-m.s. can be used to observe cluster ions has been exploited in a study of metal binding to cyclodextrins, and in an investigation of the complexes formed between a 3-O-methylmannose dodecasac-charide and alkyltrimethylammonium ions having decyl and hexadecyl as alkyl chains. In the latter study, the larger organic cation was shown to form the stronger complex. [Pg.70]


See other pages where Alkyls cluster is mentioned: [Pg.305]    [Pg.378]    [Pg.1024]    [Pg.305]    [Pg.378]    [Pg.1024]    [Pg.161]    [Pg.352]    [Pg.800]    [Pg.386]    [Pg.164]    [Pg.434]    [Pg.800]    [Pg.105]    [Pg.187]    [Pg.1104]    [Pg.300]    [Pg.132]    [Pg.318]    [Pg.331]    [Pg.267]    [Pg.120]    [Pg.151]    [Pg.69]    [Pg.278]    [Pg.171]    [Pg.42]    [Pg.43]    [Pg.62]    [Pg.59]    [Pg.147]    [Pg.54]    [Pg.69]    [Pg.201]    [Pg.113]    [Pg.158]    [Pg.159]   
See also in sourсe #XX -- [ Pg.73 , Pg.167 ]




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Cluster compounds lithium alkyls

Iron complexes alkylated clusters

Main group-transition metal cluster alkylation

Metal alkyl clusters

Ruthenium complexes alkylated clusters

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