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Phosphonate group

Ring enlargement via an insertion of a carbene generated in the a-position to the ring is an established method and has also been applied to the synthesis of oxepins. The ()3-allylpalladium chloride catalyzed decomposition of substituted ethyl diazo(4/7-pyran-4-yl)acetates in benzene at room temperature gives ethyl oxepin-4-carboxylates 1 in excellent yield.190 The ester function can be replaced by the phosphonate group and other P = 0-functions (see Houben-Weyl,... [Pg.31]

Compounds with a phosphonate group linked by a P-C bond to a carbohydrate residue may be named as glycos-n-ylphosphonates (cf. 2-Carb-31.2) or as C-sub-stituted carbohydrates (cf. amino sugars, 2-Carb-14). [Pg.116]

A theoretical approach based on the electrical double layer correction has been proposed to explain the observed enhancement of the rate of ion transfer across zwitter-ionic phospholipid monolayers at ITIES [17]. If the orientation of the headgroups is such that the phosphonic group remains closer to the ITIES than the ammonium groups, the local concentration of cations is increased at the ITIES and hence the current observed due to cation transfer is larger than in the absence of phospholipids at the interface. This enhancement is evaluated from the solution of the PB equation, and calculations have been carried out for the conditions of the experiments presented in the literature. The theoretical results turn out to be in good agreement with those experimental studies, thus showing the importance of the electrostatic correction on the rate of ion transfer across an ITIES with adsorbed phospholipids. [Pg.551]

The diol was protected and the C-terminal group converted to a methyl ester in sequence B. A phosphonate group was installed at C(7) via an acylation reaction in Step C-5. Successive oxidations of the primary and deprotected secondary alcohol gave the C(l)-C(8) intermediate. [Pg.1238]

The zinc-pyridoxal 5 -phosphate-2-amino-3-phosphonopropionic acid system exhibits deprotonation of the coordinated phosphonate group to bind to the zinc center at increased pH but cannot be coordinated to the zinc ion below pH 8.5 when it is protonated and hydrogen bound to the phosphate group.422... [Pg.1181]

All the experiments are conducted on aldehyde terminal functions. Depending on the solubility of the resulting phosphorylated dendrimers, anchorage of phosphorus moieties has been carried out on generation 1 (6 phosphate or phosphinite groups) and up to generation 5 [(96 aminophosphate (Fig. 6, Scheme 15), amino phosphite or functionalized phosphonate groups)] [17b]. [Pg.108]

An unusual pH dependence has been reported for the Gd111 complex of a tetraamide-based ligand with extended noncoordinating phosphonate side chains (Scheme 12).169,170 The relaxivity increases from pH 4 to 6, followed by a decrease until pH 8.5, then from pH 10.5 it increases again. The system, as well as isostructural lanthanide complexes, was characterized by various techniques such as 31P and 170 NMR and fluorescence measurements. The pH dependence could be attributed to protonation equilibria of the noncoordinating phosphonate groups, which can... [Pg.867]

Layered phosphate/phosphonate and phosphonate materials, obtained by substitution of the phosphate moiety by phosphonate groups, display interesting tunable hydrophilic/organophilic properties for adsorption processes. When Candida rugosa lipase (CRL) is simply equilibrated with zirconium phosphate and phosphonate [135,136], immobilization was demonstrated to take place at the surface of the microcrystals. However, because lipase exhibits a strong hydrophobic character, its uptake by zirconium phosphate and phosphonate was much more related to the hydrophobic/hydrophilic character of the supports than to the surface area properties. A higher uptake is observed for zirconium-phenylphosphonate (78 %)... [Pg.462]

Further examples of the use of the hDA reaction in dihydropyran synthesis include the formation of the fused pyrans 18 from vinylallenes 17 and aldehydes (Scheme 8) <00TL6781> and a trans-fused dihydropyran containing a phosphonate group 19 . A total synthesis of the 11-oxa steroid system is based on an intramolecular Diels-Alder reaction involving an orthoquinodimethane derived from a benzocyclobutene (Scheme 9) <00TL1767>. [Pg.319]

Scheme 2 shows preparation of the biftinctional fiber. PPPE-c and PPPE-f grafted with CMS and ST were functionalized by the reported method.6 Here, an example of functionalization procedures is described. The precursory fibers (PPPE-f grafted with CMS and ST, 2 g) and triethyl phosphite (60 ml) were taken into a three-necked flask (200 ml) equipped with a Liebig condenser. After the mixture in the flask was heated for 48 h at 100 °C, the resulting phosphorylated PPPE-f was washed with acetone, aceton-water mixture and water, and dried in vacuum oven at 40 °C. In order to introduce sulfonic acid groups, the phosphorylated PPPE-f was treated with a 30 mL of 1,2-dichloroethane solution of chlorosulfonic acid (10 wt %) for 2 h at room temperature. Finally, diethyl phosphonate groups on the fibers were hydrolyzed with 12 M hydrochloric acid under refluxed... [Pg.54]

Gadolinium(III) complexes containing phosphonate groups can be targeted to bone. Examples are the DOTA derivatives (325, 326) and complexes of aminophosphonate ligands (327). [Pg.240]

Several observations regarding this aspect have been published, and are briefly mentioned here. 5,6-Dideoxy-6-C-phosphono-D-arabino-hexofuranose (135), an isosteric phosphonate analog of D-arabinose 5-phosphate, is apparently converted, in the presence of enolpyruvate phosphate, into 3,8,9-trideoxy-9-C-phosphono-D-mcmno-2-nonulosonic acid (136) under catalysis by KDO 8-phosphate synthetase from Escherichia coli K 235. Compound 136, an isosteric phosphonate analog of KDO 8-phosphate, is a product inhibitor of the synthetase, and, by the nature of the phosphonate group, is not subject to dephosphorylation as catalyzed by KDO 8-phosphate phosphatase156 (see Scheme 40). Compound 119 (see Scheme 33) is a weak inhibitor of KDO 8-phosphate synthetase.81 KDO inhibits KDO 8-phosphate phosphatase,139 and D-ribose 5-phosphate has an inhibitory... [Pg.387]

Pinto MR, Rristal BM, Schanze KS (2003) A water-soluble poly(phenylene ethynylene) with pendant phosphonate groups. Synthesis, photophysics, and layer-by-layer self-assembled films. Langmuir 19 6523-6533... [Pg.387]

It was confirmed by IR and elemental analysis that poly-MMA contained neither sulfonate group nor phosphonate group. Therefore, any grafted copolymerization of MMA onto macromolecule was not observed. [Pg.104]

The Lewis acid catalyzed reaction of furan (169) with ketovinylphosphonate 170 produced a mixture of adducts, both of which slowly underwent retro Diels-Alder reactions at room temperature121. When diethylaluminum chloride was used as the catalyst, the endo selectivity (with respect to the keto functionality) was enhanced from 171/172 = 58/42 to 78/22 by raising the reaction temperature from — 25 °C to 0°C (equation 47). This is in agreement with the FMO theory, since initial Lewis acid complexation is with the phosphonate group. [Pg.368]


See other pages where Phosphonate group is mentioned: [Pg.220]    [Pg.780]    [Pg.26]    [Pg.579]    [Pg.69]    [Pg.128]    [Pg.547]    [Pg.547]    [Pg.549]    [Pg.13]    [Pg.278]    [Pg.354]    [Pg.1180]    [Pg.104]    [Pg.132]    [Pg.371]    [Pg.797]    [Pg.901]    [Pg.228]    [Pg.335]    [Pg.224]    [Pg.332]    [Pg.291]    [Pg.160]    [Pg.6]    [Pg.56]    [Pg.91]    [Pg.383]    [Pg.573]    [Pg.168]    [Pg.76]    [Pg.170]    [Pg.434]   
See also in sourсe #XX -- [ Pg.129 , Pg.131 ]

See also in sourсe #XX -- [ Pg.509 ]




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Carboxylic phosphonic acid groups

Copper phosphonate groups

Hyperbranched polymer electrolyte with a phosphonic acid group at the periphery

Membranes, phosphonic acid groups

Phosphonic Acid Groups

Phosphonic end groups

Proton phosphonic acid groups

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