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首页> 外文期刊>Biomacromolecules >Mussel-Inspired Self-Healing Double-Cross-Linked Hydrogels by Controlled Combination of Metal Coordination and Covalent Cross-Linking
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Mussel-Inspired Self-Healing Double-Cross-Linked Hydrogels by Controlled Combination of Metal Coordination and Covalent Cross-Linking

机译:贻贝鼓励自愈双交联水凝胶通过控制的金属配位和共价交联组合

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Mussel-inspired hydrogels held together by reversible catecholato-metal coordination bonds have recently drawn great attention owing to their attractive self-healing, viscoelastic and adhesive properties together with their pH-responsive nature. A major challenge in these systems is to orchestrate the degree of catechol oxidation that occurs under alkaline conditions in air and has a great impact on the aforementioned properties because it introduces irreversible covalent cross-links to the system, which stiffens the hydrogels but consume catechols needed for self-healing. Herein, we present a catechol-based hydrogel design that allows for the degree of oxidative covalent cross-linking to be controlled. Double cross-linked hydrogels with tunable stiffness are constructed by adding the oxidizable catechol analogue, tannic acid, to an oxidation-resistant hydrogel construct held together by coordination of the dihydroxy functionality of 1-(2'-carboxyethyl)-2-methyl-3-hydroxy-4-pyridinone to trivalent metal ions. By varying the amount of tannic acid, the hydrogel stiffness can be customized to a given application while retaining the self-healing capabilities of the hydrogel's coordination chemical component.
机译:通过可逆的儿茶醇 - 金属协调键在一起举办的贻贝风格的水凝胶最近引起了它们具有吸引力的自我愈合,粘弹性和粘合性能与其pH响应性的粘性性质。这些系统中的主要挑战是协调在空气中碱性条件下发生的儿茶酚氧化程度,并且对上述性质产生很大影响,因为它引入了系统的不可逆的共价交联,这使得水凝胶变硬但需要消耗所需的儿茶酚为了自我修复。在此,我们提出了一种基于儿茶酚的水凝胶设计,其允许控制氧化的共价交联的程度。具有可调节刚度的双交联水凝胶通过将可氧化的儿茶酚(2'-羧乙基)-2-甲基-3的二羟基官能团加入耐氧化水凝胶构建体,通过配制耐氧化的儿茶酚类类似物,单烷酸,以通过配制耐氧化水凝胶构建体。(2'-羧乙基)-2-甲基-3 -Hydroxy-4-吡啶酮至三价金属离子。通过改变单宁酸的量,水凝胶刚度可用于给定的应用,同时保留水凝胶的配位化学成分的自愈能力。

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