Peng Lin, Su Yaotian, Yang Xiaoping, Sui Gang
State Key Laboratory of Organic-Inorganic Composites, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
State Key Laboratory of Organic-Inorganic Composites, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
J Colloid Interface Sci. 2023 May 15;638:313-323. doi: 10.1016/j.jcis.2023.01.128. Epub 2023 Feb 2.
Carbon nanotubes (CNTs) usually served as conductive and reinforcing nanofillers for making nanocomposites have never been reported to play a role in accelerating fabrication of hydrogels. Herein, we report an important discovery that by involving CNTs and liquid metal (LM) to form a complex (LM@CNTs), multifunctional hydrogels are rapidly prepared from vinyl monomers without heating or adding any initiators and crosslinkers. Study results demonstrate that LM@CNTs not only performs as both initiator and crosslinker for synthesizing hydrogels, but also dramatically reduces the polymerization duration from 3 days to minute levels, compared with that of only LM involved in hydrogel fabrication. Specifically, the complex initiates (<60 s) and crosslinks (<8min) monomers to form the high-performance hydrogels, which significantly reduces energy consumptions. The resulting polyacrylic acid (PAA) hydrogel possesses super stretchability (∼1200 %), high tensile strength (0.96 MPa), outstanding strain sensitivity (Gauge factor = 15.40 at 300-500 % strain), and excellent adhesion to various substrate surfaces. Additionally, the injectable molding performance will benefit the mass production of the hydrogels, which exhibits great potential for applications of wearable flexible sensors. This study provides an environmentally friendly, rapid polymerization, and energy-saving strategy by effectively applying nano-fillers for viable fabrication and application of multifunctional hydrogels.
通常用作制备纳米复合材料的导电和增强纳米填料的碳纳米管,从未被报道过在加速水凝胶制备中发挥作用。在此,我们报告一项重要发现:通过引入碳纳米管和液态金属(LM)形成复合物(LM@CNTs),无需加热或添加任何引发剂和交联剂,即可从乙烯基单体快速制备多功能水凝胶。研究结果表明,LM@CNTs不仅作为合成水凝胶的引发剂和交联剂,而且与仅参与水凝胶制备的LM相比,显著将聚合时间从3天缩短至分钟级别。具体而言,该复合物引发(<60秒)并交联(<8分钟)单体以形成高性能水凝胶,这显著降低了能量消耗。所得的聚丙烯酸(PAA)水凝胶具有超拉伸性(~1200%)、高拉伸强度(0.96MPa)、出色的应变敏感性(在300 - 500%应变下应变系数 = 15.40)以及对各种基材表面的优异粘附性。此外,可注射成型性能将有利于水凝胶的大规模生产,这在可穿戴柔性传感器应用中具有巨大潜力。本研究通过有效应用纳米填料为多功能水凝胶的可行制备和应用提供了一种环境友好、快速聚合且节能的策略。