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A multifunctional metal-biopolymer coordinated double network hydrogel combined with multi-stimulus responsiveness, self-healing, shape memory and antibacterial properties

机译:多功能金属 - 生物聚合物协调双网络水凝胶与多刺激反应性,自愈,形状记忆和抗菌性能相结合

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摘要

Outfitted with abundant hydrogen bonding and coordination active groups, carboxymethyl chitosan (CMC) possesses a class of naturally occurring ligands for coordination with metal ions, establishing its excellent potential for various fields. Herein, by incorporating the naturally derived CMC into a thermally reconfigurable agarose (Agar) gel medium, a novel type of metal-biopolymer coordinated double network hydrogel (DN gel) was successfully fabricated via the strong coordination interactions. The interpenetrated CMC was confirmed to retain its excellent chelating abilities within the bulk gel matrix, which resulted in a series of metal-coordinated DN gels through spontaneous self-associative complexation with metal ions such as Cu2+, Zn2+, Ni2+, Co2+, Fe3+, and Cr3+. Moreover, these two types of physical cross-links are functionally independent and reversible, which enables the programming of the hydrogel with multi-functionality, including pH-regulated shape memory behavior, multi-staged self-healing properties and durable antibacterial activities. Thus, we believe that the successful preparation of such a coordination-driven DN gel will lead to the development of biopolymer-based multifunctional hydrogels, as well as provide new insight into nanocomponent assembly and soft electronic biosensing systems for biomedical applications.
机译:羧甲基壳聚糖(CMC)具有丰富的氢键和配位活性组,具有一类与金属离子配位的一类天然存在的配体,建立其各种田地的优异潜力。这里,通过将天然衍生的CMC掺入热可重构的琼脂糖(琼脂)凝胶培养基中,通过强配制相互作用成功制造了一种新型的金属 - 生物聚合物配位双网络水凝胶(DN凝胶)。确认渗透性CMC以保留其在散装凝胶基质中的优异的螯合能力,这通过与金属离子如Cu2 +,Zn2 +,Ni2 +,CO2 +,Fe3 +,以及CR3 +。此外,这两种类型的物理交联在功能上独立和可逆,这使得水凝胶的编程能够具有多官能度,包括pH调节的形状记忆行为,多分阶段的自我愈合性能和耐用的抗菌活性。因此,我们认为,这种协调驱动的DN凝胶的成功制备将导致基于生物聚合物的多功能水凝胶的发育,并为生物医学应用提供新的洞察纳米组装和软电子生物传感系统。

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