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首页> 外文期刊>Biomacromolecules >Chitosan cross-linking with a water-soluble,blocked diisocyanate.2.Solvates and hydrogels
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Chitosan cross-linking with a water-soluble,blocked diisocyanate.2.Solvates and hydrogels

机译:壳聚糖与水溶性嵌段二异氰酸酯交联2.溶剂化物和水凝胶

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摘要

A water-soluble,blocked diisocyante was used to cross-link chitosan under various degrees of solvation,including hydration to form hydrogels.Thermal cross-linking of films cast from various amounts of organic cosolvents was found to increase with increased level of cosolvent up to a solvation level of 17% (w/w) and to be more efficient than for films prepared without cosolvent.Rheological studies revealed that gel modulus increased and gel time decreased with increasing cross-linker content and that gelation kinetics were consistent with a process having an activation energy of 103 kJ/mol.Swelling of hydrogels indicated that,even at high elvels of hydration,the increased molecular mobility of reactants allowed for efficient network formation in a concentration-dependent manner.The extent of solvation via equilibrium swelling correlated well with degradative properties of chitosan networks in the presence of Chitinase (E.C.3.2.1.14) from Streptomyces griseus with stability increasing with decreasing swelling (i.e.,increased cross-linking).
机译:水溶性,封端的二异氰酸酯用于在不同程度的溶剂化(包括水合)下交联壳聚糖以形成水凝胶。发现各种量的有机助溶剂流延的薄膜的热交联程度随着助溶剂含量的增加而增加。流变学研究表明,随着交联剂含量的增加,凝胶模量增加,凝胶时间减少,流变学研究表明,其胶合度为17%(w / w),比不使用助溶剂制备的膜更有效。活化能为103 kJ / mol。水凝胶的溶胀表明,即使在高水合条件下,反应物分子迁移率的提高也允许以浓度依赖的方式有效地形成网络。通过平衡溶胀的溶剂化程度与链霉菌的几丁质酶(EC3.2.1.14)存在下壳聚糖网络的降解特性,稳定性增加减少的溶胀(即,增加的交联)。

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