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Microscopic acid dissociation and complex formationof polyacryloyllysine

机译:微观酸解离和聚丙烯酰赖氨酸的络合物形成

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In general, aminocids exists in protonated and deprotonated forms in acidic and basic regions, respectively. While there is coexistence of zwitterionic and neutral forms in neutral pH-region. Such a behavior that distribution of microscopic forms depends on pH values is one of the characteristics of amphoteric compounds. Microscopic acid dissociation of the amphoteric polymer having both amino and carboxyl groups is of interest in connection of bioactive polymers. There is no report on microscopic acid dissociation of synthetic polymers in spite of many works on macroscopic acid dissociation of polyelectrolytes. In addition, Polyamino acids are expected to have excellent complexing ability because of a synergistic effect of amino and carboxyl groups. This paper deals with microscopic acid dissociation and complexation of polyacryloyllysine (PAK) and isobutyryllysine (IBK) that is a model compound of PAK.
机译:通常,氨基酸在酸性和碱性区域分别以质子化和去质子化形式存在。在中性pH区域中,两性离子和中性形式同时存在。微观形式的分布取决于pH值的这种行为是两性化合物的特征之一。具有氨基和羧基的两性聚合物的微观酸解离与生物活性聚合物有关。尽管有许多关于聚电解质的宏观酸解离的工作,但没有关于合成聚合物的微观酸解离的报道。另外,由于氨基和羧基的协同作用,预期聚氨基酸具有优异的络合能力。本文研究了聚丙烯酸赖氨酸(PAK)和异丁酰赖氨酸(IBK)的微观酸解离和络合,PAK是模型化合物。

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