Zhang Wanglong, Zhang Yiwei, Dai Yu, Xia Fan, Zhang Xiaojin
State Key Laboratory of Biogeology and Environmental Geology, Engineering Research Center of Nano-Geomaterials of Ministry of Education, Faculty of Materials Science and Chemistry, China University of Geosciences, Wuhan 430074, China.
J Mater Chem B. 2022 Feb 2;10(5):757-764. doi: 10.1039/d1tb02599f.
Strong hydrogel adhesion requires the synergy of adhesion and cohesion. Gradient adhesive-tough hydrogels can balance adhesion and cohesion, however, their construction is still a challenging task. Here, we used ethylenediaminetetraacetic acid (EDTA) on-side coordination-induced diffusion chelating Ca to form an adhesive surface in a polyacrylamide/alginate-calcium (PAAm/Alg-Ca) tough hydrogel as a facile method for the construction of gradient adhesive-tough hydrogels. The adhesion energy of a gradient adhesive-tough hydrogel to skin is increased by 128% compared with PAAm/Alg-Ca tough hydrogels and the elongation at break is two times higher than that of PAAm/Alg hydrogels. In addition, gradient adhesive-tough hydrogels also exhibit wide linear sensitivity (the gauge factor (GF) = 0.196 (0% < < 400%); GF = 0.260 (400% < < 650%)) as a wearable strain sensor to monitor human motions. This work provides a versatile strategy for the design of gradient adhesive-tough hydrogels and also provides a practical model for the development of wearable strain sensors.
强水凝胶粘附需要粘附力和内聚力的协同作用。梯度粘附-坚韧水凝胶可以平衡粘附力和内聚力,然而,其构建仍然是一项具有挑战性的任务。在此,我们使用乙二胺四乙酸(EDTA)单侧配位诱导扩散螯合钙,在聚丙烯酰胺/海藻酸钙(PAAm/Alg-Ca)坚韧水凝胶中形成粘附表面,作为构建梯度粘附-坚韧水凝胶的简便方法。与PAAm/Alg-Ca坚韧水凝胶相比,梯度粘附-坚韧水凝胶对皮肤的粘附能提高了128%,断裂伸长率比PAAm/Alg水凝胶高两倍。此外,梯度粘附-坚韧水凝胶作为可穿戴应变传感器用于监测人体运动时,还表现出宽线性灵敏度(应变系数(GF)=0.196(0%<应变<400%);GF = 0.260(400%<应变<650%))。这项工作为梯度粘附-坚韧水凝胶的设计提供了一种通用策略,也为可穿戴应变传感器的开发提供了一个实用模型。