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Ionization equilibrium in salt‐containing aqueous solutions of synthetic polyampholytes
Authors:Larisa Vedikhina  Alla Kurmaeva  Rashid Tukhvatullin  William Barabanov
Abstract:The peculiarities of ionic equilibrium in salt‐containing aqueous solutions of polyampholytes (acrylic acid–2‐methyl‐5‐vinylpyridine copolymers) of various compositions and molecular weights were studied. The protonation degree of base groups (βiep), the dissociation degree of acid groups (αiep), and the ionization constant of methylvinylpyridine groups (pKb) for the isoelectric points of the studied polyampholytes under various ionic strength values (I) were assessed spectrophotometrically. The dependencies of αiep and pKb versus the copolymer composition in the absence of low molecular weight electrolyte are described by the following equations: pKb = 6.2–0.037z and lg αiep = 0.27–0.0215z, where z is the molar content of the acrylic acid units. The basicity of methylvinylpyridine groups increases in proportion to the content of acid groups at a constant ionic strength and is independent of the molecular weight and molecular weight distribution of the copolymer. The relationship between pKb and the ionic strength of the solution for acrylic acid–methylvinylpyridine copolymers was established: pKb(I) = pKurn:x-wiley:08876266:media:POLB150:tex2gif-stack-1 + B · I1/2, where pKurn:x-wiley:08876266:media:POLB150:tex2gif-stack-2 is the thermodynamic ionization constant of base groups and B is 0.21 + 0.0065z. A good agreement between the experimental and theoretical (calculated from the given equation) values of the ionization constant, pKb, of methylvinylpyridine groups for other polyampholytes (copolymers of methacrylic acid with 2‐methyl‐5‐vinylpyridine) demonstrated that the ionic state of polyampholytes is determined by the basicity of methylvinylpyridine groups, which depends on the copolymer composition and solution ionic strength. © 2000 John Wiley & Sons, Inc. J Polym Sci B: Polym Phys 38: 1824–1831, 2000
Keywords:polyampholyte  ionization equilibrium  isoelectric state  spectrophotometry
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