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Butyltins

Cyclopentene derivatives with carboxylic acid side-chains can be stereoselectively hydroxy-lated by the iodolactonization procedure (E.J. Corey, 1969, 1970). To the trisubstituted cyclopentene described on p. 210 a large iodine cation is added stereoselectively to the less hindered -side of the 9,10 double bond. Lactone formation occurs on the intermediate iod-onium ion specifically at C-9ot. Later the iodine is reductively removed with tri-n-butyltin hydride. The cyclopentane ring now bears all oxygen and carbon substituents in the right stereochemistry, and the carbon chains can be built starting from the C-8 and C-12 substit""" ... [Pg.275]

Mercaptides are unchallenged as the ligand of choice for the other entities bonded to the tin, but carboxylates can also be used. Whereas a variety of mercaptans are used, the thioglycolic acid derivatives remain the largest single mercaptan. Dibutyltin bis(isooctyl thioglycolate) [25168-24-5] and butyltin tris(isooctyl thioglycolate) [25852-70A] are two common examples. These materials are produced by the reaction of the appropriate alkyl tin chloride or oxide, and the mercaptan. [Pg.6]

The oxide monobutyltin oxide [51590-67-1J, is a sesquioxide, C H SnO from which it is difficult to remove the last traces of water. It is an infusible, insoluble, amorphous white powder that forms when butyltin trichloride is hydrolyzed with base. The partially dehydrated material, butylstaimoic acid [2273-43-0] is slightly acidic and forms alkaH metal salts. These salts, ie, alkaH metal alkylstaimonates, form when excess alkaH is used to hydrolyze the organotin trichloride ... [Pg.74]

Di-/i-butyltin oxide [SI8-08-6] M 248.9, m >300 . It is prepd by hydrolysis of di-n-butyltin dichloride with KOH. Hence wash with a little aq M KOH then H2O and dry at 80 /10mm until the IR is free from OH bands. [Cummings Aust J Chem 18 98 7965.]... [Pg.418]

The submitters report that the same yields in terms of percentages are obtained if the procedure is applied to the preparation of tetra-M-propyltin and tetra-M-butyltin. [Pg.88]

Bowmer and Tonelli [161] have also studied the thermal characteristics of the whole range of ethylene-vinyl chloride copolymers prepared by partial reductive dechlorination of PVC using tri-n-butyltin-hydride. Naqvi [162] has substantiated further his explanations for the thermal stability characteristics of ethylene-vinyl chloride copolymers reported by Braun et al. [159] using the results of Bowmer and Tonelli [161] as a basis. [Pg.334]

In an effort to identify a more stereoselective route to dihydroagarofuran (15), trimethylsilylated alkyne 17 was utilized as a substrate for radical cyclization (Scheme 2). Treatment of 17 with a catalytic amount of AIBN and tri-n-butyltin hydride (1.25 equiv) furnishes a mixture of stereoisomeric vinyl silanes 18 (72% combined yield) along with an uncyclized reduction product (13% yield). The production of stereoisomeric vinyl silanes in this cyclization is inconsequential because both are converted to the same alkene 19 upon protodesiiyiation. Finally, a diastereoselective di-imide reduction of the double bond in 19 furnishes dihydroagaro-... [Pg.384]

If the reaction just described is conducted in the presence of a suitable hydrogen atom donor such as tri-n-butyltin hydride or tert-butyl hydrosulfide, reductive decarboxylation occurs via a radical chain mechanism to give an alkane (see 125—>128, Scheme 24). Carboxylic acids can thus be decarboxylated through the intermediacy of their corresponding thiohydroxamate esters in two easily executed steps. In this reducjtive process, one carbon atom, the carbonyl carbon, is smoothly excised... [Pg.406]

The key features of Curran s productive and elegant tandem radical cyclization strategy are illustrated in a retrosynthetic analysis for hirsutene (1) (see Scheme 27). The final synthetic event was projected to be an intermolecular transfer of a hydrogen atom from tri-rc-butyltin hydride to the transitory tricyclic vinyl radical 131. The latter can then be traced to bicyclic tertiary radical 132 and thence to monocyclic primary radical 133 through successive hex-5-enyl-like radical cyclizations. It was anticipated that the initial radical 133 could be generated through the abstraction of the iodine atom from... [Pg.409]


See other pages where Butyltins is mentioned: [Pg.145]    [Pg.145]    [Pg.145]    [Pg.145]    [Pg.547]    [Pg.548]    [Pg.164]    [Pg.70]    [Pg.73]    [Pg.334]    [Pg.317]    [Pg.87]    [Pg.88]    [Pg.329]    [Pg.172]    [Pg.11]    [Pg.333]    [Pg.334]    [Pg.73]    [Pg.174]    [Pg.382]    [Pg.383]    [Pg.386]    [Pg.387]    [Pg.388]    [Pg.392]    [Pg.394]    [Pg.395]    [Pg.396]    [Pg.398]    [Pg.403]    [Pg.405]    [Pg.409]    [Pg.412]    [Pg.416]    [Pg.494]    [Pg.542]    [Pg.542]    [Pg.740]    [Pg.762]   
See also in sourсe #XX -- [ Pg.555 , Pg.563 , Pg.564 , Pg.570 , Pg.571 , Pg.587 ]

See also in sourсe #XX -- [ Pg.555 , Pg.563 , Pg.564 , Pg.570 , Pg.571 , Pg.587 ]

See also in sourсe #XX -- [ Pg.287 , Pg.288 , Pg.289 , Pg.290 , Pg.291 , Pg.396 , Pg.398 , Pg.402 ]

See also in sourсe #XX -- [ Pg.69 , Pg.70 , Pg.71 , Pg.72 , Pg.74 , Pg.75 , Pg.77 , Pg.81 , Pg.88 , Pg.89 , Pg.95 , Pg.97 , Pg.98 , Pg.99 ]

See also in sourсe #XX -- [ Pg.817 , Pg.823 ]

See also in sourсe #XX -- [ Pg.94 ]




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Allyltri-n-butyltin

Benzaldehyde, 4-r-butyltin chloride complex

Benzaldehyde, 4-r-butyltin chloride complex crystal structure

Butyltin

Butyltin

Butyltin Determination in Sediment

Butyltin bromides

Butyltin bromides determination

Butyltin chlorides

Butyltin chlorides determination

Butyltin concentrations in human liver

Butyltin halides

Butyltin halides determination

Butyltin hydride, reaction with

Butyltin hydride, reaction with halides

Butyltin mercaptide

Butyltin moieties

Butyltin species

Butyltin species toxicity

Butyltin trichloride

Crotyltri-n-butyltin

Di-n-Butyltin Chloride (DBTC)

Di-n-butyltin dichloride

Di-n-butyltin dilaurate

Di-n-butyltin maleate

Di-n-butyltin oxide

I-Butyltin hydride

N-Butyltin trichloride

Poly(tri-n-butyltin methacrylate-methyl

Quality control butyltin

Reduction tri-n-butyltin enolates

Selenides, acyl phenyl reaction with tri-n-butyltin hydride

Tetra-n-butyltin

Tetra-»-butyltin

Tri-/ -butyltin hydrid

Tri-n-butyltin

Tri-n-butyltin azide

Tri-n-butyltin bromide

Tri-n-butyltin chloride

Tri-n-butyltin fluoride

Tri-n-butyltin hydride

Tri-n-butyltin methacrylate-methyl

Tri-n-butyltin oxide

Tri-n-butyltin trifluoromethanesulfonate

Tri-w-butyltin Hydride

Tri-«-butyltin chloride

Tri-»-butyltin hydride

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