Sarkar Stephen Don, Uddin Md Mosfeq, Roy Chanchal Kumar, Hossen Md Jahangir, Sujan Majharul Islam, Azam Md Shafiul
Department of Chemistry, Bangladesh University of Engineering and Technology (BUET) Dhaka-1000 Bangladesh
RSC Adv. 2020 Mar 17;10(18):10949-10958. doi: 10.1039/d0ra00678e. eCollection 2020 Mar 11.
The mechanical performances of hydrogels are greatly influenced by the functionality of cross-linkers and their covalent and non-covalent interactions with the polymer chains. Conventional chemical cross-linkers fail to meet the demand of large toughness and high extensibility for their immediate applications as artificial tissues like ligaments, blood vessels, and cardiac muscles in human or animal bodies. Herein, we synthesized a new graphene oxide-based two-dimensional (2D) cross-linker (GOBC) and exploited the functionality of the cross-linker for the enhancement of toughness and stretchability of a poly(acrylic acid) (PAA) hydrogel. The 2D nanosheets of GO were modified in such a way that they could provide multifunctional sites for both physical and chemical bonding with the polymer chains. Carboxylic acid groups at the surfaces of the GO sheets were coupled with the acrylate functional groups for covalent cross-linking, while the other oxygen-containing functional groups are responsible for physical cross-linking with polymers. The GOBC had been successfully incorporated into the PAA hydrogel and the mechanical properties of the GOBC cross-linked PAA hydrogel (PAA-GOBC) were investigated at various compositions of cross-linker. Seven times enhancement in both toughness and elongation at break has been achieved without compromising on the modulus for the as-synthesized PAA-GOBC compared to the conventional ,'-methylenebis(acrylamide) (MBA) cross-linked PAA hydrogel. This facile and efficient way of GO modification is expected to lead the development of a high-performance nanocomposite for cutting-edge applications in biomedical engineering.
水凝胶的机械性能在很大程度上受到交联剂的功能及其与聚合物链的共价和非共价相互作用的影响。传统的化学交联剂无法满足作为人体或动物体内诸如韧带、血管和心肌等人工组织的直接应用对大韧性和高延伸性的需求。在此,我们合成了一种新型的基于氧化石墨烯的二维(2D)交联剂(GOBC),并利用该交联剂的功能来增强聚丙烯酸(PAA)水凝胶的韧性和拉伸性。对GO的二维纳米片进行了改性,使其能够为与聚合物链的物理和化学键合提供多功能位点。GO片表面的羧酸基团与丙烯酸酯官能团偶联以进行共价交联,而其他含氧官能团则负责与聚合物进行物理交联。GOBC已成功掺入PAA水凝胶中,并在不同交联剂组成下研究了GOBC交联的PAA水凝胶(PAA-GOBC)的机械性能。与传统的N,N'-亚甲基双丙烯酰胺(MBA)交联的PAA水凝胶相比,合成的PAA-GOBC在不降低模量的情况下,韧性和断裂伸长率均提高了七倍。这种简便而有效的GO改性方法有望引领高性能纳米复合材料的开发,用于生物医学工程的前沿应用。