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星形聚丙烯酸与季铵化聚(4-乙烯基吡啶)的水溶性复合物。

Water-soluble complexes of star-shaped poly(acrylic acid) with quaternized poly(4-vinylpyridine).

作者信息

Pergushov Dmitry V, Babin Ivan A, Plamper Felix A, Zezin Alexander B, Müller Axel H E

机构信息

Department of Polymer Science, School of Chemistry, Moscow State University, Vorob'evy Gory, 119991 Moscow, Russian.

出版信息

Langmuir. 2008 Jun 1;24(13):6414-9. doi: 10.1021/la800959s. Epub 2008 Jun 6.

Abstract

The interaction of star-shaped poly(acrylic acid) having various numbers of arms (5, 8, and 21) and a strong cationic polyelectrolyte, viz., poly( N-ethyl-4-vinylpyridinium bromide), was examined at pH 7 by means of turbidimetry and dynamic light scattering. Mixing aqueous solutions of the oppositely charged polymeric components was found to result in phase separation only if their base-molar ratio Z = [N+]/[COO (-) + COOH] exceeds a certain critical value ZM ( ZM < 1); this threshold value is determined by the number of arms of the star-shaped polyelectrolyte and the ionic strength of the surrounding solution. At Z < ZM, the homogeneous aqueous mixtures of the oppositely charged polymeric components contain two types of complex species clearly differing in their sizes, with the fractions of these species appearing to depend distinctly on the number of arms of the star-shaped poly(acrylic acid), the base-molar ratio of the oppositely charged polymeric components in their mixtures, and the ionic strength of the surrounding solution. The small complex species (major fraction) are assumed to represent the particles of the water-soluble interpolyelectrolyte complex whereas the large complex species (minor fraction) are considered to be complex aggregates.

摘要

通过比浊法和动态光散射法,在pH值为7的条件下研究了具有不同臂数(5、8和21)的星形聚丙烯酸与强阳离子聚电解质即聚(N - 乙基 - 4 - 乙烯基吡啶溴化物)之间的相互作用。发现只有当带相反电荷的聚合物组分的碱摩尔比Z = [N⁺]/[COO⁻ + COOH]超过某个临界值ZM(ZM < 1)时,混合带相反电荷的聚合物组分的水溶液才会导致相分离;该阈值由星形聚电解质的臂数和周围溶液的离子强度决定。在Z < ZM时,带相反电荷的聚合物组分的均匀水性混合物包含两种尺寸明显不同的复合物种,这些物种的比例似乎明显取决于星形聚丙烯酸的臂数、混合物中带相反电荷的聚合物组分的碱摩尔比以及周围溶液的离子强度。小的复合物种(主要部分)被认为代表水溶性聚电解质复合物的颗粒,而大的复合物种(次要部分)被认为是复合聚集体。

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