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Crown ethers supported

Catalysis of Acyl Transfer Processes by Crown-Ether Supported Alkaline-Earth Metal Ions... [Pg.113]

The reactions of oxiranes with thiocyanate ion or with thiourea are usually done in homogeneous solution in water, alcohols or alcohol-acetic acid. The use of silica gel as a support for potassium thiocyanate in toluene solvent is advantageous for the simple work-up (filtration and evaporation of solvent) (80JOC4254). A crown ether has been used to catalyze reactions of potassium thiocyanate. [Pg.179]

The template effect has long been accepted prima facie by workers in the crown field because of the obvious relationship between ring size and complexation constant. In fact, Cram stated in 1975 that the templating properties of for preparing crown ethers is well established.. . In fact, the template effect was widely acknowledged and has always received overwhelming support. Nevertheless, few direct comparisons are available in the literature and we have restricted ourselves m this discussion only to direct rather than the large body of presumptive evidence which is currently available. [Pg.18]

Polymer supported xanthene derivatives have been used in the solid phase synthesis of 1-aminophosphinic acids, RCH(NH2)PH(0)0H, <%TL1647> and of C-terminal peptide amides <96JOC6326>. Xanthene units also feature in crown ethers <96JCS(P2)2091>, calixarenes <96JOC5670> and in a flexible template for a P-sheet nucleator <96JOC7408>. [Pg.300]

Deoxy-2-[ F]fluoro-D-mannose ( F-2DFM) was prepared through treatment of 201 (see Section 11,2) with F-Bu4NF(MeCN, 75°, 30 min) or K F crown ether, as reported for the cold synthesis. F-2DFM was also prepared from methyl 4,6-di-0-acetyl-3-C>-benzoyl-2-C>-triflyl-a-D-glu-copyranoside with amino(polyether)-supported, carrier-free [ F]fluoride. [Pg.198]

Kawamura, M. and Sato, K. (2007) Magnetic nanoparticle-supported crown ethers. Chemical Communications (32), 3404-3405. [Pg.88]

A family of recently published Cp complexes sheds a more detailed light on the role of the donors on the overall structural pattern. Demonstrated with a group of Cp derivatives in the presence of the crown ethers 15-crown-5 and 18-crown-6, monomeric complexes may be obtained in the form CpNa(15-crown-5) 84. In a parallel fashion, 18-crown-6 has been shown to be effective in supporting monomeric structures of the heavier alkali metals bound to Cp. Examples include CpM(18-crown-6) (M = K 85, Rb 86, Cs 87).100 101... [Pg.14]

In terms of chelating systems, nitrogen and oxygen donors (bipyridine, phenanthroline, crown ethers, etc.) have also been attached to polymer supports (364), as well as chelating phosphorus donors (see Section IV,B). [Pg.365]

One of the more important recent developments in organometallic aluminum chemistry has been the formation and isolation of low-coordinate compounds, and, in particular, cations. These were first prepared in reactions of various aluminum reagents with crown ethers to form the inclusion compounds known as liquid clathrates. 71,72 Most of the evidence supports the presence of ion pairs as the basis of the solvent inclusion effect. Indeed, the compound [AlMe2-18-crown-6]+[AlMe2Cl2] was isolated from one such system (the cation is shown in Figure 6(a)).73 This was the first time the Me2Al+ unit had been structurally characterized. [Pg.272]

We thank BIP Chemicals Ltd., for Research Studentships to PHW and FRJ, the British Council and the Turkish Cultural Ministry for support of YF, the British Science Research Council for funds for equipment and technical help, the National Research Development Corporation for support of the work on crown ethers, and Dr. D. Schlotterbeck for instructing us in the Jaacks ethoxide method. [Pg.752]

With a view to producing catalysts that can easily be removed from reaction products, typical phase-transfer catalysts such as onium salts, crown ethers, and cryptands have been immobilized on polymer supports. The use of such catalysts in liquid-liquid and liquid-solid two-phase systems has been described as triphase catalysis (Regen, 1975, 1977). Cinquini et al. (1976) have compared the activities of catalysts consisting of ligands bound to chloromethylated polystyrene cross-linked with 2 or 4% divinylbenzene and having different densities of catalytic sites ([126], [127], [ 132]—[ 135]) in the... [Pg.333]

Cram and co-workers have experimented extensively with chiral recognition in crown ethers derived from various 3-binaphthols (73). In nonpolar solvents, these chiral ethers complex salts of PEA and various chiral a-amino esters (with fast exchange), inducing nonequivalence in their NMR spectra. The senses of proton nonequivalence induced in these solutes have been used to support proposed structures of the diastereomeric solvates (74). [Pg.308]


See other pages where Crown ethers supported is mentioned: [Pg.670]    [Pg.307]    [Pg.307]    [Pg.91]    [Pg.670]    [Pg.307]    [Pg.307]    [Pg.91]    [Pg.67]    [Pg.183]    [Pg.172]    [Pg.339]    [Pg.730]    [Pg.134]    [Pg.121]    [Pg.385]    [Pg.438]    [Pg.340]    [Pg.382]    [Pg.77]    [Pg.794]    [Pg.25]    [Pg.1453]    [Pg.280]    [Pg.335]    [Pg.412]    [Pg.211]    [Pg.217]    [Pg.82]    [Pg.38]    [Pg.54]   
See also in sourсe #XX -- [ Pg.175 ]




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Catalysis of Acyl Transfer Processes by Crown-Ether Supported Alkaline-Earth Metal Ions

Crown ethers polymer supported

Polymer-supported crown ethers catalytic activity

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