Tough and Stretchable Phenolic‐Reinforced Double Network Deep Eutectic Solvent gels for Multifunctional Sensors with Environmental Adaptability

Author:

Quan Qi1,Fan Chunlin1,Pan Nana1,Zhu Minghao1,Zhang Tao1,Wang Zhe1,Dong Yue1,Wu Yakun1,Tang Miao1,Zhou Xiaoyan1,Chen Minzhi1ORCID

Affiliation:

1. Jiangsu Co‐Innovation Center of Efficient Processing and Utilization of Forest Resources International Innovation Center for Forest Chemicals and Materials Jiangsu Engineering Research Center of Fast‐growing Trees and Agri‐fiber Materials College of Materials Science and Engineering Nanjing Forestry University 210037 Nanjing China

Abstract

AbstractConductive gels are perfect for various sensor applications due to their inherent stretchability, flexibility, and electrical conductivity. However, their poor environmental adaptability and low fracture toughness restrict their potential applications. In this study, resorcinol‐formaldehyde resin (RF) is used for the first time as a rigid network compounded with a flexible polyacrylic acid (PAA) network to successfully prepare a double network (DN) deep eutectic solvent gel (RF/PAA DN gel). The gel has high stress strength (1.04 MPa), compressive strength (10.63 MPa), and toughness (1.07 MJ m−3). The addition of RF significantly improves the mechanical properties and gives the RF/PAA DN gel certain photothermal effects, swelling resistance, and flame retardancy, broadening the scope of use and application of the gel. Importantly, as a multifunctional sensor, it can combine deformation sensing, temperature sensing, optical sensing, humidity sensing, and underwater sensing into one, with a wide range of stimuli responses and excellent sensing properties. Excellent environmental suitability also allows its use in a wide range of temperatures (−20−90 °C), humidity (55%−90% RH), underwater, and in fire conditions. The work provides new ideas for choosing rigid networks and a novel strategy for developing multifunctional sensors with excellent performance in complex environments.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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