Wen Jie, Zhang Xiaopeng, Pan Mingwang, Yuan Jinfeng, Jia Zhanyu, Zhu Lei
Institute of Polymer Science and Engineering, School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin 300130, China.
Hebei Key Laboratory of Functional Polymers, Hebei University of Technology, Tianjin 300130, China.
Polymers (Basel). 2020 Jan 19;12(1):239. doi: 10.3390/polym12010239.
Commonly synthetic polyethylene glycol polyurethane (PEG-PU) hydrogels possess poor mechanical properties, such as robustness and toughness, which limits their load-bearing application. Hence, it remains a challenge to prepare PEG-PU hydrogels with excellent mechanical properties. Herein, a novel double-crosslinked (DC) PEG-PU hydrogel was fabricated by combining chemical with physical crosslinking, where trimethylolpropane (TMP) was used as the first chemical crosslinker and polyphenol compound tannic acid (TA) was introduced into the single crosslinked PU network by simple immersion process. The second physical crosslinking was formed by numerous hydrogen bonds between urethane groups of PU and phenol hydroxyl groups in TA, which can endow PEG-PU hydrogel with good mechanical properties, self-recovery and a self-healing capability. The research results indicated that as little as a 30 mg·mL TA solution enhanced the tensile strength and fracture energy of PEG-PU hydrogel from 0.27 to 2.2 MPa, 2.0 to 9.6 KJ·m, respectively. Moreover, the DC PEG-PU hydrogel possessed good adhesiveness to diverse substrates because of TA abundant catechol groups. This work shows a simple and versatile method to prepare a multifunctional DC single network PEG-PU hydrogel with excellent mechanical properties, and is expected to facilitate developments in the biomedical field.
通常情况下,合成聚乙二醇聚氨酯(PEG-PU)水凝胶的机械性能较差,如坚固性和韧性,这限制了它们的承重应用。因此,制备具有优异机械性能的PEG-PU水凝胶仍然是一项挑战。在此,通过化学交联与物理交联相结合制备了一种新型的双交联(DC)PEG-PU水凝胶,其中三羟甲基丙烷(TMP)用作第一种化学交联剂,通过简单的浸泡过程将多酚化合物单宁酸(TA)引入单交联的PU网络中。第二种物理交联是由PU的氨基甲酸酯基团与TA中的酚羟基之间的大量氢键形成的,这可以赋予PEG-PU水凝胶良好的机械性能、自我恢复能力和自愈能力。研究结果表明,低至30 mg·mL的TA溶液可将PEG-PU水凝胶的拉伸强度和断裂能分别从0.27 MPa提高到2.2 MPa,从2.0 KJ·m提高到9.6 KJ·m。此外,由于TA含有丰富的邻苯二酚基团,DC PEG-PU水凝胶对多种基材具有良好的粘附性。这项工作展示了一种简单通用的方法来制备具有优异机械性能的多功能DC单网络PEG-PU水凝胶,并有望促进生物医学领域的发展。