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高强度且可自愈的明胶/聚丙烯酰胺双网络水凝胶。

High strength and self-healable gelatin/polyacrylamide double network hydrogels.

作者信息

Yan Xiaoqiang, Chen Qiang, Zhu Lin, Chen Hong, Wei Dandan, Chen Feng, Tang Ziqing, Yang Jia, Zheng Jie

机构信息

School of Materials Science and Engineering, Henan Polytechnic University, Jiaozuo, 454003, China.

出版信息

J Mater Chem B. 2017 Oct 7;5(37):7683-7691. doi: 10.1039/c7tb01780d. Epub 2017 Aug 14.

DOI:10.1039/c7tb01780d
PMID:32264369
Abstract

Double network (DN) hydrogels composed of two different polymer networks with strong asymmetry are excellent structural platforms to integrate different mechanical properties into a single material. However, simultaneously achieving high strength and self-healing properties in DN hydrogels still remains a challenge. In this work, we design and synthesize Gelatin/Polyacrylamide (Gelatin/PAAm) DN gels by combining thermo-reversible and physically crosslinked gelatin as the first network and covalently crosslinked PAAm as the second network. The optimized Gelatin/PAAm DN gels demonstrated high mechanical properties (E of 84 kPa, σ of 0.268 MPa, ε of 40.69 mm mm and W of 6.01 MJ m), large hysteresis (up to 1012 kJ m at λ = 30), and rapid self-recovery properties (∼87% toughness recovery at room temperature). These superior properties were largely attributed to effective energy dissipation via the rupture of the first gelatin network. Most interestingly, Gelatin/PAAm DN gels without any chemical crosslinkers in the second network enabled the achievement of both high mechanical strength and fast self-healing properties. By modulating the heating temperatures and healing times, the healed Gelatin/PAAm gels could achieve 53% healing efficiency at a physiological temperature range, which greatly expands their uses for biomedical applications. The combination of high strength, self-recovery, and self-healing properties makes Gelatin/PAAm gels promising candidates for further development and use as thermoresponsive biomaterials under physiological conditions.

摘要

由两个具有强烈不对称性的不同聚合物网络组成的双网络(DN)水凝胶是将不同机械性能整合到单一材料中的优异结构平台。然而,在DN水凝胶中同时实现高强度和自愈合性能仍然是一个挑战。在这项工作中,我们通过将热可逆且物理交联的明胶作为第一网络与共价交联的聚丙烯酰胺(PAAm)作为第二网络相结合,设计并合成了明胶/聚丙烯酰胺(Gelatin/PAAm)DN凝胶。优化后的Gelatin/PAAm DN凝胶表现出高机械性能(弹性模量为84 kPa,拉伸强度为0.268 MPa,伸长率为40.69 mm/mm,韧性为6.01 MJ/m)、大滞后性(在拉伸比λ = 30时高达1012 kJ/m)和快速自恢复性能(室温下约87%的韧性恢复)。这些优异性能很大程度上归因于通过第一个明胶网络的破裂实现的有效能量耗散。最有趣的是,在第二网络中没有任何化学交联剂的Gelatin/PAAm DN凝胶能够同时实现高机械强度和快速自愈合性能。通过调节加热温度和愈合时间,愈合后的Gelatin/PAAm凝胶在生理温度范围内可实现53%的愈合效率,这极大地扩展了它们在生物医学应用中的用途。高强度、自恢复和自愈合性能的结合使Gelatin/PAAm凝胶成为在生理条件下作为热响应生物材料进一步开发和应用的有前途的候选材料。

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