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- W4382808097 abstract "MXenes, also named two-dimensional transition metal carbides, carbonitride, and nitrides were reported in 2011 and have since increased in popularity in power storage, catalysis, electromagnetic interference shielding wireless communications systems, electronic sensors, and environmental biomedical applications. Mechanical characteristics, elasticity, and robust adhesive nature of MXenes play a critical part in practically most of the emerging applications, with their increased electrical conductivity and electrochemical activity. Hydrogels are of immense attention from researchers because of their many potential uses for them in a variety of applications. MXenes, which are two-dimensional (2D) transition metal carbides/nitrides, offer interesting and practical platforms for the creation of soft materials with a variety of adjustable application-specific characteristics, On the other hand, MXenes’ stability, which is frequently a limiting issue in many MXene-based applications, may be greatly increased by the synthesis of MXenes into hydrogels. Conductive hydrogels are receiving a lot of attention in the field of flexible and wearable soft strain sensors due to their great potential in electronic skins and customized healthcare monitoring. Typical conductive hydrogels that disperse their particles in pure water, on the other hand, will unavoidably freeze at subzero temperatures, reducing their conductivity and mechanical capabilities. Conductive hydrogels, on the other hand, are sometimes restricted by issues such as poor mechanical properties, difficulty in long-term use, and a limited operating temperature range. As a result, a high-strength hydrogel that can be used in a variety of temperatures is sought. Two-Dimensional MXenes possess a variety of fantastic properties, same is true for the hydrogels, but when MXenes are crosslinked with some other phase to form a hydrogel, and once the gelation is accomplished, then the behavior of the produced MXene hydrogel depends either on the sum of the merits of the MXene and hydrogel or come from the synergistic interactions between those parts, opening up a variety of potential uses. The current chapter is focused on the fabrication and structural design of MXene-based hydrogels and their potential applications. Finally, projecting a positive image is described briefly, which will aid researchers in identifying the existing scenario's limitations and generating new strategic goals that focus on producing unique, efficient, and sensitive MXene-based hydrogels." @default.
- W4382808097 created "2023-07-02" @default.
- W4382808097 creator A5023052774 @default.
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- W4382808097 date "2023-01-01" @default.
- W4382808097 modified "2023-09-27" @default.
- W4382808097 title "Fabrication and Structural Design of MXene-Based Hydrogels" @default.
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- W4382808097 doi "https://doi.org/10.1007/978-981-99-2038-9_5" @default.