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Polymer electrolytes dendrimers

DILLON R A and SHRivER D F (2001), lon transport and vibrational spectra of branched polymer and dendrimer electrolytes , Chem Mater, 13 1369-1373 FENTON D E, PARK J M and WRIGHT p V (1973), Complexes of alkali metal ions with poly (ethylene oxide) . Polymer, 14 589-589 FEUILLADE G and PERCHE p (1975), lon-condnctivc macromolecular gels and membrane for solid lithium cells , J Appl Electrochem, 5 63-69 FONTENELLA J J, WINTERGILL M C, CALAME J P and ANDEEN C G (1983), Electrical relaxation in pure and alkah metal thiocyanate complexed poly(ethylene oxide) . Solid State Ionics, 8 333—339... [Pg.579]

Then we address the dynamics of diblock copolymer melts. There we discuss the single chain dynamics, the collective dynamics as well as the dynamics of the interfaces in microphase separated systems. The next degree of complication is reached when we discuss the dynamic of gels (Chap. 6.3) and that of polymer aggregates like micelles or polymers with complex architecture such as stars and dendrimers. Chapter 6.5 addresses the first measurements on a rubbery electrolyte. Some new results on polymer solutions are discussed in Chap. 6.6 with particular emphasis on theta solvents and hydrodynamic screening. Chapter 6.7 finally addresses experiments that have been performed on biological macromolecules. [Pg.8]

Enormous effort is spent on studying complex fluids, more-so than any of the previous topics reviewed above. These fluids include polymer solutions and melts, alkanes, colloidal systems, electrolytes, liquid crystals, micelles, surfactants, dendrimers and, increasingly, biological systems such as DNA and proteins in solution. There are therefore many specialist areas and it is impossible to review them all here. As such, we sample only a select few areas that reflect our own personal interests, and apologise to readers who have specific interests elsewhere. First, we briefly look over some simulations on colloidal systems, alkanes, dendrimers, biomolecular systems, etc, and will then... [Pg.360]

High-molecular mass surfactants such as butyl acrylate-butyl methacrylate-methacrylic acid copolymer sodium salts, starburst dendrimers, poly(amidoamines), and diaminobutane-based poly(propyleneimine) as well as cationic polyelectrolytes (ionenes) had all been presented as successful secondary phases for aromatic compounds. The determination of 10 nitrophenols in glycine buffers modified by 3-CD (0-10 mmolL" ) and polyvinylpyrrolidone (PVP) (0.5-2.5% w/v) is an example of application of polymer-based electrolytes to rain, tap, and process water. ... [Pg.917]


See other pages where Polymer electrolytes dendrimers is mentioned: [Pg.44]    [Pg.450]    [Pg.289]    [Pg.262]    [Pg.414]    [Pg.1317]    [Pg.120]    [Pg.1]    [Pg.14]    [Pg.17]    [Pg.692]    [Pg.110]    [Pg.124]    [Pg.175]   
See also in sourсe #XX -- [ Pg.375 , Pg.375 ]




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