Key Laboratory of Science and Technology of Eco-Textile, College of Chemistry, Chemical Engineering & Biotechnology, Ministry of Education, Donghua University, Shanghai 201620, China.
Key Laboratory of Science and Technology of Eco-Textile, College of Chemistry, Chemical Engineering & Biotechnology, Ministry of Education, Donghua University, Shanghai 201620, China.
Int J Biol Macromol. 2022 Oct 1;218:533-542. doi: 10.1016/j.ijbiomac.2022.07.115. Epub 2022 Jul 25.
Conductive hydrogels have been extensively studied because of flexibility and skin-like capability to be used as biopotential electrodes for wearable health monitoring. However, they may suffer from poor mechanical properties and stability problems when used in practical applications caused by water evaporation. Herein, we prepared self-adhesive, transparent, flexible and robust ionic gels that can conformal contact with the skin used as biopotential electrodes for precise health monitoring. Cellulose based iogels were prepared by dissolving cellulose using [Bmim]Cl at 100 °C followed by in situ Ultraviolet light photopolymerization of acrylic acid by adding a mixture of acrylic acid and 2-hydroxy-2-methylpropiophenone. Cellulose/polyacrylic acid-based ionic gels-2 (BCELIG-2) has a Young's modulus of 0.2 MPa, a strain at break of 226 %, a modulus of elasticity of 0.1 MPa, and a toughness of 22.5 MJ m. Fixing the strain at 40 %, the ionic gels can recover to their original length after ten tensile-unloading cycles. They can accurately detect subtle physical motions such as arterial pulsations, which can provide important cardiovascular information.
导电水凝胶由于具有灵活性和类似皮肤的能力,可作为可穿戴健康监测的生物电位电极而被广泛研究。然而,当它们在实际应用中由于水蒸发而使用时,可能会由于机械性能差和稳定性问题而受到影响。在此,我们制备了自粘性、透明、灵活和坚固的离子凝胶,可作为生物电位电极与皮肤紧密接触,用于精确的健康监测。纤维素基 iogels 通过在 100°C 下使用[Bmim]Cl 溶解纤维素,然后通过添加丙烯酸和 2-羟基-2-甲基苯丙酮的混合物原位紫外线光聚合丙烯酸来制备。纤维素/聚丙烯酸基离子凝胶-2(BCELIG-2)的杨氏模量为 0.2 MPa,断裂应变为 226%,弹性模量为 0.1 MPa,韧性为 22.5 MJ m。将应变固定在 40%,离子凝胶可以在十个拉伸-卸载循环后恢复到原始长度。它们可以准确地检测到细微的物理运动,如动脉搏动,这可以提供重要的心血管信息。