The effect of degree of ionization, f, on the spatial inhomogeneities in weakly charged polymer gels has been investigated by light scattering (LS) and small-angle neutron scattering. An anomalous cross-link density (CD) dependence of the scattered intensity, I ( q ), was observed in a poor solvent (above an inversion temperature, T inv ), where q is the scattering vector. That is, a gel became more homogeneous with increasing CD in a poor solvent (above T inv ) though it became more heterogeneous with increasing CD in a good solvent (below T inv ). LS data indicated the following three features of the gels: (1) an increase of T inv with increasing f, (2) a decrease of the critical degree of polymerization between cross-linking points, N c, with increasing f, where N c is the critical value of N at which I ( q ) diverges with decreasing N (∼1/CD), and (3) a decrease of I ( q ) with f . The influence of f on the anomaly as well as on the microscopic and macroscopic phase separation was discussed in terms of the Rabin-Panyukov (RP) theory proposed for weakly charged gels.
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Ikkai et al. (1998) studied this question.
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