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SYNTHESIS, STRUCTURE AND PROPERTIES OF INTERPENETRATING SULFONIC ACID RESINS WITH HIGH CAPACITY
作者姓名:徐和德  李国明
作者单位:Chemistry Department of South China Normal University,Guangzhou,Chemistry Department of South China Normal University,Guangzhou
摘    要:Two series of interpenetrating sulfonic acid resins (ISAR), 10×n and n×10, were prepared by means of the wet method, and the physicochemical, thermodynamic and kinetic properties of the ISAR were measured. The results show: 10×n resins exhibit better properties than n×10 ones, mainly in higher apparent degree of crosslinking and larger conformational entropy effect, among which, 10×1 resin exhibits the best thermodynamic and kinetic properties. In the DTA graphs of n×10 resins, there are two T_g and two T_(ox), but in those of 10×n, only one T_g and one T_(ox). This result well supports the conclusion that 10×n resins have much better interpenetrating structural aspects.

收稿时间:1988-05-10

SYNTHESIS, STRUCTURE AND PROPERTIES OF INTERPENETRATING SULFONIC ACID RESINS WITH HIGH CAPACITY
XU Hede,LI Guoming.SYNTHESIS, STRUCTURE AND PROPERTIES OF INTERPENETRATING SULFONIC ACID RESINS WITH HIGH CAPACITY[J].Chinese Journal of Polymer Science,1989,0(4):322-329.
Authors:XU Hede  LI Guoming
Institution:Chemistry Department of South China Normal University; Guangzhou
Abstract: Two series of interpenetrating sulfonic acid resins (ISAR), 10×n and n×10, were prepared by means of the wet method, and the physicochemical, thermodynamic and kinetic properties of the ISAR were measured. The results show: 10×n resins exhibit better properties than n×10 ones, mainly in higher apparent degree of crosslinking and larger conformational entropy effect, among which, 10×1 resin exhibits the best thermodynamic and kinetic properties. In the DTA graphs of n×10 resins, there are two Tg and two Tox,but in thpse of 10×n,only one Tg and one Tox.This result well supports the conclusion that 10×n resins have much better interpenetrating structural aspects.
Keywords:Interpenetrating networks  Sulfonic acid resin  Selectivity  Degree of crosslinking  
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