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Vinylene additives

Due to easier handling, liquid electrolyte additives and solvents have found more interest than gaseous additives. Among these components, organic sulfites [14-19] (Fig. 11), partially fluorinated aprotic solvents [12, 20-25], and vinylene additives [24, 26-32] have found particular attention. [Pg.197]

Vinylene additives are very attractive at the moment both from an academic and industrial point of view [24, 26-32], Usually, vinylene additives can be very effective even when they are used in very low amounts (< 1 vol.-%), in particular when the first charging step is properly adjusted (Fig. 14). [Pg.198]

Heteroaromatic ring stmctures can also be incorporated into poly(arylene vinylene) stmctures using the same precursor polymer method shown for PPV. Poly(thienylene vinylene) (13) (113—118) and poly(furylene vinylene) (14) (119,120) have been prepared in this manner. In addition, alkoxy-substituted poly(thienylene vinylenes) (15) (119,121) have been synthesized. Various copolymers containing phenjiene, thienylene, and furylene moieties have also been studied (120,122,123). [Pg.38]

In 1993, Scherf and Chmil described the first synthesis of a ladder-type poly(pflra-phenylene-czs-vinylene) (116) [138]. On the one hand, ladder polymer 116 represents, a planar poly(phenylene) containing additional vinylene bridges on the other hand, it is a poly(phenylenevinylene) with aryl-aryl linkages in the polymeric main chain. The target macromolecules, as fully aromatic ladder polymers, are composed of all-carbon six-membered rings in the double-stranded main chain (an example of angularly annelated poly(acene)s). [Pg.216]

We have reported the first example of a ring-opening metathesis polymerization in C02 [144,145]. In this work, bicyclo[2.2.1]hept-2-ene (norbornene) was polymerized in C02 and C02/methanol mixtures using a Ru(H20)6(tos)2 initiator (see Scheme 6). These reactions were carried out at 65 °C and pressure was varied from 60 to 345 bar they resulted in poly(norbornene) with similar conversions and molecular weights as those obtained in other solvent systems. JH NMR spectroscopy of the poly(norbornene) showed that the product from a polymerization in pure methanol had the same structure as the product from the polymerization in pure C02. More interestingly, it was shown that the cis/trans ratio of the polymer microstructure can be controlled by the addition of a methanol cosolvent to the polymerization medium (see Fig. 12). The poly(norbornene) prepared in pure methanol or in methanol/C02 mixtures had a very high trans-vinylene content, while the polymer prepared in pure C02 had very high ds-vinylene content. These results can be explained by the solvent effects on relative populations of the two different possible metal... [Pg.133]

Hanack and coworkers [161] reported related cyano-substituted naphthalene vinylene derivatives 126 and 127. Interestingly, replacing the phenylene unit in CN-PPV 113 with naphthalene in polymers 126 and 127 results in significant blue shift of the emission maxima from 710 to 595 nm (for 126a) and 500 nm (for 127). In addition, the efficiency, tested for double-layer device ITO/l/127/Mg Al(3 97), was rather low (3>el = 0.017%). [Pg.82]

Lahti and coworkers [212] reported a series of meta-linked oligo(phenylene vinylene) block copolymers 181a-c. A mem-linked phenylene unit imposed an additional hypsochromic shift on the emission of these segmented polymers. The PL maxima were found at 399-416 nm, but a significant (ca. 70 nm) red shift was observed for EL spectra (ITO/polymer/Ca/Al) (Chart 2.39). [Pg.95]

Among the various additives tested, vinylene carbonate (VC) might be the most famous in the lithium ion research and development community, although the number of publications related to it seems to be rather small. Its importance can be evidenced by the number of companies that vied for the patent rights for... [Pg.131]

A very remote secondary H/D isotope effect has been measured for the 2 + 2-cycloaddition of TCNE to 2,7-dimethylocta-2,fran -4,6-triene. The reaction of nitric oxide with iV-benzylidene-4-methoxyaniline to produce 4-methoxybenzenediazonium nitrate and benzaldehyde is thought to proceed via a 2 + 2-cycloaddition between nitric oxide and the imine double bond. A novel mechanism for the stepwise dimerization of the parent silaethylene to 1,3-disilacyclobutane involves a low-barrier [1,2]-sigmatropic shift. Density functional, correlated ab initio calculations, and frontier MO analysis support a concerted 2 + 2-pathway for the addition of SO3 to alkenes. " The enone cycloaddition reactions of dienones and quinones have been reviewed. The 2 + 2-photocycloadditions of homochiral 2(5H)-furanones to vinylene carbonate are highly diastereoisomeric. ... [Pg.457]

Tetrabutylammonium fluoride, 286 Titanium(IV) chloride-Diethylalumi-num chloride, 309 Vinylene carbonate, 342 Dihydroxylation (see Addition reactions to carbon-carbon multiple bonds) Dimerization (see Coupling reactions) Displacement reactions (see Substitution reactions)... [Pg.364]

On the basis of these observations, Bryce-Smith et al. [115] introduced a rule stating that for addition to benzene, Pmeta when 9.6 eV < IP (alkene) <8.65 eV. They concluded that if this rule is correct, ortho addition of ethylenes to Si benzene necessarily involves an element of charge transfer to or from the ethylene. Indeed, a marked effect of polar solvents (methanol or acetonitrile) in promoting the ortho addition of benzene to ethyl vinyl ether and tetramethylethene was observed (portho increased by 20-50%, whereas cpmeta was unaffected. One exception to this rule was found by Heine and Hartmann [10], who discovered that vinylene carbonate (IP = 10.08 eV) undergoes mainly meta photocycloaddition to benzene, accompanied by some para addition. Bryce-Smith and Gilbert [46] commented that their rule referred to quantum yields and not chemical yields, whereas no quantum yields were given for the vinylene carbonate additions. Moreover, quantum yield measurements should be made at low conversions because most ortho cycloadducts are photolabile. [Pg.94]


See other pages where Vinylene additives is mentioned: [Pg.35]    [Pg.28]    [Pg.609]    [Pg.181]    [Pg.874]    [Pg.179]    [Pg.195]    [Pg.351]    [Pg.353]    [Pg.129]    [Pg.401]    [Pg.32]    [Pg.383]    [Pg.388]    [Pg.346]    [Pg.102]    [Pg.2]    [Pg.74]    [Pg.247]    [Pg.461]    [Pg.358]    [Pg.394]    [Pg.51]    [Pg.295]    [Pg.659]    [Pg.668]    [Pg.219]    [Pg.46]    [Pg.35]    [Pg.367]    [Pg.299]    [Pg.86]   
See also in sourсe #XX -- [ Pg.180 ]

See also in sourсe #XX -- [ Pg.180 ]

See also in sourсe #XX -- [ Pg.180 ]




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Additives vinylene carbonate

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