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由异质结构介导的适用于极端环境的低共熔凝胶,用于表皮传感器和水下通信。

Extreme-environment-adapted eutectogel mediated by heterostructure for epidermic sensor and underwater communication.

作者信息

Chai Chunxiao, Ma Lin, Chu Yiran, Li Wenwen, Qian Yuzhen, Hao Jingcheng

机构信息

Key Laboratory of Colloid and Interface Chemistry (Shandong University), Ministry of Education, Jinan 250100, China.

Key Laboratory of Colloid and Interface Chemistry (Shandong University), Ministry of Education, Jinan 250100, China; Shandong Laboratory of Yantai Advanced Materials and Green Manufacturing, Yantai 264000, China.

出版信息

J Colloid Interface Sci. 2023 May 15;638:439-448. doi: 10.1016/j.jcis.2023.01.147. Epub 2023 Feb 3.

Abstract

In recent years, gel-based ion conductor has been widely considered in wearable electronics because of the favorable flexibility and conductivity. However, it is of vital importance, yet rather challenging to adapt the gel for underwater and dry conditions. Herein, an anti-swelling and anti-drying, intrinsic conductor eutectogel is designed via a one-step radical polymerization of acrylic acid and 2, 2, 2‑trifluoroethyl methacrylate in binary deep eutectic solvents (DESs) medium. On the one hand, the synergistic effects of hydrophilic/hydrophobic heteronetworks can elicit the integrity stability of eutectogel in liquid environment. It is proved that both the mechanical property and conductivity are maintained after immersing in different salt, alkaline and acid solution and organic solvent for one month. On the other hand, the eutectogel inherits well conductivity (93 mS/m), anti-drying and antibacterial properties from DESs. Based on the above features, the resulting eutectogel can be assembled as smart sensor for stable information transmission in air and underwater with fast response time (1 s), high sensitivity (Gauge factor = 1.991) and long-time reproducibility (500 cycles, 70 % strain). Considering the simple preparation and integration of multiple functions, the binary cooperative complementary principle can provide insights into the development of next-generation conductive soft materials.

摘要

近年来,基于凝胶的离子导体因其良好的柔韧性和导电性而在可穿戴电子产品中得到广泛关注。然而,使凝胶适应水下和干燥条件至关重要,但颇具挑战性。在此,通过丙烯酸和甲基丙烯酸2,2,2-三氟乙酯在二元低共熔溶剂(DESs)介质中一步自由基聚合,设计出一种抗溶胀和抗干燥的本征导体低共熔凝胶。一方面,亲水/疏水异质网络的协同效应可引发低共熔凝胶在液体环境中的完整性稳定性。经证明,将其浸入不同的盐溶液、碱性和酸性溶液以及有机溶剂中一个月后,其机械性能和导电性均可保持。另一方面,低共熔凝胶继承了DESs良好的导电性(93 mS/m)、抗干燥和抗菌性能。基于上述特性,所得低共熔凝胶可组装成智能传感器,用于在空气和水下稳定地传输信息,具有快速响应时间(1 s)、高灵敏度(应变系数=1.991)和长期可重复性(500次循环,70%应变)。考虑到制备简单且具备多种功能,二元协同互补原理可为下一代导电软材料的开发提供思路。

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