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同时采用双原位溶胶-凝胶技术和自由基共聚反应制备的机械坚固且导电的混合水凝胶电解质。

Mechanically Robust and Electrically Conductive Hybrid Hydrogel Electrolyte Enabled by Simultaneous Dual In Situ Sol-Gel Technique and Free Radical Copolymerization.

机构信息

Key Laboratory of Material Corrosion and Protection of Sichuan Province, College of Materials Science and Engineering, Sichuan University of Science and Engineering, Zigong, 643000, P. R. China.

出版信息

Macromol Rapid Commun. 2024 Nov;45(21):e2400404. doi: 10.1002/marc.202400404. Epub 2024 Jul 31.

DOI:10.1002/marc.202400404
PMID:39083305
Abstract

Mechanically robust and ionically conductive hydrogels poly(acrylamide-co-2-acrylamido-2-methylpropanesulfonate-lithium)/TiO/SiO (P(AM-co-AMPSLi)/TiO/SiO) with inorganic hybrid crosslinking are fabricated through dual in situ sol-gel reaction of vinyltriethoxysilane (VTES) and tetrabutyl titanate (TBOT), and in situ radical copolymerization of acrylamide (AM), 2-acrylamide-2-methylpropanesulfonate-lithium (AMPSLi), and vinyl-SiO. Due to the introduction of the sulfonic acid groups and Li by the reaction of AMPS with LiCO, the conductivity of the ionic hydrogel can reach 0.19 S m. Vinyl-SiO and nano-TiO are used in this hybrid hydrogel as both multifunctional hybrid crosslinkers and fillers. The hybrid hydrogels demonstrate high tensile strength (0.11-0.33 MPa) and elongation at break (98-1867%), ultrahigh compression strength (0.28-1.36 MPa), certain fatigue resistance, self-healing, and self-adhesive properties, which are due to covalent bonds between TiO and SiO, as well as P(AM-co-AMPSLi) chains and SiO, and noncovalent bonds between TiO and P(AM-co-AMPSLi) chains, as well as the organic frameworks. Furthermore, the specific capacitance, energy density, and power density of the supercapacitors based on ionic hybrid hydrogel electrolytes are 2.88 F g, 0.09 Wh kg, and 3.07 kW kg at a current density of 0.05 A g, respectively. Consequently, the ionic hybrid hydrogels show great promise as flexible energy storage devices.

摘要

通过乙烯基三乙氧基硅烷(VTES)和四丁基钛酸酯(TBOT)的双原位溶胶-凝胶反应以及丙烯酰胺(AM)、2-丙烯酰胺-2-甲基丙磺酸锂(AMPSLi)和乙烯基-SiO 的原位自由基共聚,制备了具有无机杂化交联的机械坚固和离子导电水凝胶聚(丙烯酰胺-co-2-丙烯酰胺基-2-甲基丙磺酸锂/二氧化钛/二氧化硅)(P(AM-co-AMPSLi)/TiO/SiO)。由于 AMPS 与 LiCO 反应引入了磺酸基和 Li,离子水凝胶的电导率可达 0.19 S m。乙烯基-SiO 和纳米 TiO 在此杂化水凝胶中用作多功能杂化交联剂和填料。杂化水凝胶表现出高拉伸强度(0.11-0.33 MPa)和断裂伸长率(98-1867%)、超高压缩强度(0.28-1.36 MPa)、一定的耐疲劳性、自修复性和自粘性,这归因于 TiO 和 SiO 之间的共价键,以及 P(AM-co-AMPSLi)链和 SiO 之间的共价键,以及 TiO 和 P(AM-co-AMPSLi)链之间以及有机框架之间的非共价键。此外,基于离子杂化水凝胶电解质的超级电容器的比电容、能量密度和功率密度分别为 2.88 F g、0.09 Wh kg 和 3.07 kW kg,电流密度为 0.05 A g。因此,离子杂化水凝胶作为柔性储能器件具有很大的应用前景。

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