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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Kinetic Study of Chitosan- Tripolyphosphate Complex Reaction and Acid-Resistive Properties of the Chitosan-Tripolyphosphate Gel Beads Prepared by in-Liquid Curing Method
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Kinetic Study of Chitosan- Tripolyphosphate Complex Reaction and Acid-Resistive Properties of the Chitosan-Tripolyphosphate Gel Beads Prepared by in-Liquid Curing Method

机译:液体固化法制备的壳聚糖-三聚磷酸盐胶体微珠的动力学研究及耐酸性能

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摘要

Chitosan gel beads were prepared using an in-liquid curing method by the ionotropic crosslinking with sodium tripolyphosphate. Crosslinking characteristics of the chitosan-TPP beads were improved by the modification of in-liquid curing mechanism of the beads in TPP solution. Chitosan gel beads cured in pH value lower than 6 were really ionic-crosslinking controlled, whereas chitosan gel beads cured in pH values higher than 7 were coacervation-phase inversion controlled accompanied with slightly ionic-crosslinking dependence. According to the result, significantly increasing the ionic-crosslinking density of chitosan beads could be achieved by transferring the pH value of the curing agent, TPP, from basic to acidic. The swelling behavior of various chitosan beads in acid appeared to depend on the ionic-crosslinking density of the chitosan-TPP beads that were deeply affected by the curing mechanism of the beads. The mechanism of chitosan-TPP beads swollen in weak acid was chain-relaxation controlled, while the mechanism of chitosan-TPP beads swollen in strong acid seem to be not only chain-relaxation but also chain-scission controlled. Chitosan-TPP beads prepared in acidic TPP solution decreased the chain-scission ability due to the increase of ionic crosslinking density of the beads. By the transition of curing mechanism, the swelling degree of chitosan-TPP beads was depressed, and the disintegration of chitosan-TPP beads would not occur in strong acid. The mechanism of ionic-crosslinking reaction of chitosan beads could be investigated by an unreacted core model, and the curing mechanism of the chitosan beads is mainly diffusion controlled when higher than 5% of chitosan was employed.
机译:使用液体内固化方法,通过与三聚磷酸钠的离子交联来制备壳聚糖凝胶珠。壳聚糖-TPP珠的交联特性通过改变TPP溶液中珠的液体内固化机理而得到改善。在pH值低于6的情况下固化的壳聚糖凝胶珠实际上受到离子交联的控制,而在pH值高于7的情况下固化的壳聚糖凝胶珠受到凝聚相转化的控制,同时具有轻微的离子交联依赖性。根据该结果,可以通过将固化剂TPP的pH值从碱性转移到酸性来显着提高壳聚糖微珠的离子交联密度。各种壳聚糖珠粒在酸中的溶胀行为似乎取决于壳聚糖-TPP珠粒的离子交联密度,该离子交联密度受珠粒的固化机理影响很大。壳聚糖-TPP珠在弱酸中溶胀的机理是受链松弛控制的,而壳聚糖-TPP珠在强酸中溶胀的机理似乎不仅是链松弛,而且是断链控制的。在酸性TPP溶液中制备的壳聚糖-TPP珠由于其离子交联密度的增加而降低了断链能力。通过固化机理的转变,壳聚糖-TPP珠的溶胀度降低,在强酸中不会发生壳聚糖-TPP珠的崩解。壳聚糖珠的离子交联反应机理可以通过未反应的核模型研究,当壳聚糖含量大于5%时,其固化机理主要是扩散控制。

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