Badawi Nujud M, Bhatia Mamta, Ramesh S, Ramesh K, Kuniyil Mufsir, Shaik Mohammed Rafi, Khan Mujeeb, Shaik Baji, Adil Syed F
Centre for Ionics, Department of Physics, Faculty of Science, Universiti Malaya, Kuala Lumpur 50603, Malaysia.
Department of Physics, Acharya Narendra Dev College, University of Delhi, Delhi 110019, India.
Polymers (Basel). 2023 Jan 22;15(3):571. doi: 10.3390/polym15030571.
Hydrogel electrolytes for energy storage devices have made great progress, yet they present a major challenge in the assembly of flexible supercapacitors with high ionic conductivity and self-healing properties. Herein, a smart self-healing hydrogel electrolyte based on alginate/poly (3,4-ethylenedioxythiophene):poly(styrenesulfonate) (alginate/PEDOT:PSS)(A/P:P) was prepared, wherein HSO was employed as a polymeric initiator, as well as a source of ions. PEDOT:PSS is a semi-interpenetrating network (IPN) that has been used in recent studies to exhibit quick self-healing properties with the H₂SO₃ additive, which further improves its mechanical strength and self-healing performance. A moderate amount of PEDOT:PSS in the hydrogel (5 mL) was found to significantly improve the ionic conductivity compared to the pure hydrogel of alginate. Interestingly, the alginate/PEDOT:PSS composite hydrogel exhibited an excellent ability to self-heal and repair its original composition within 10 min of cutting. Furthermore, the graphite conductive substrate-based supercapacitor with the alginate/PEDOT:PSS hydrogel electrolyte provided a high specific capacitance of 356 F g at 100 mV/s g. The results demonstrate that the A/P:P ratio with 5 mL PEDOT:PSS had a base sheet resistance of 0.9 Ω/square. This work provides a new strategy for designing flexible self-healing hydrogels for application in smart wearable electronics.
用于储能设备的水凝胶电解质已取得了重大进展,但在组装具有高离子电导率和自修复性能的柔性超级电容器方面仍面临重大挑战。在此,制备了一种基于海藻酸钠/聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(海藻酸钠/PEDOT:PSS)(A/P:P)的智能自修复水凝胶电解质,其中HSO用作聚合引发剂以及离子源。PEDOT:PSS是一种半互穿网络(IPN),在最近的研究中已被用于在添加H₂SO₃时表现出快速自修复性能,这进一步提高了其机械强度和自修复性能。与纯海藻酸盐水凝胶相比,发现水凝胶中适量的PEDOT:PSS(5 mL)能显著提高离子电导率。有趣的是,海藻酸钠/PEDOT:PSS复合水凝胶在切割后10分钟内表现出优异的自修复能力并能恢复其原始组成。此外,具有海藻酸钠/PEDOT:PSS水凝胶电解质的基于石墨导电基底的超级电容器在100 mV/s g时提供了356 F g的高比电容。结果表明,含有5 mL PEDOT:PSS的A/P:P比例具有0.9 Ω/平方的基片电阻。这项工作为设计用于智能可穿戴电子产品的柔性自修复水凝胶提供了一种新策略。