在极端环境中用于应变传感和 triboelectric nanogeneration 的 anisotropic 导电性 eutectogels
Bingyan Guo1, Shaoshuai He2, Linfa Li1
1School of Chemical Engineering and Technology, Tianjin University, Tianjin 300350, China.
Journal of colloid and interface science
|November 1, 2024
概括
研究人员使用定向结和溶剂替代方法开发出强,坚固和导电的异性质欧特基凝. 这些先进的材料为可穿戴电子产品和传感器提供出色的防和防干性能.
科学领域:
- 材料科学 材料科学 材料科学
- 聚合物化学 聚合物化学
- 纳米技术纳米技术
背景情况:
- 导电性水凝对于灵活的电子产品至关重要,但面临着溶剂损失和结等挑战.
- 自然组织的生物模拟启发了新的材料设计,以提高性能.
研究的目的:
- 开发一种异型导电强,坚固的eutectogels.
- 为了克服电子应用传统水凝的局限性.
主要方法:
- 与溶剂替代 (DFSS) 战略集成的定向结.
- 制造基于异型聚乙烯酒精的eutectogels (PVA-M-DES).
主要成果:
- 实现了高的机械强度 (6.31 MPa),性 (20.75 MJ m−3),和导电性 (0.17 S m−1).
- 证明了出色的抗和抗干燥能力.
- 准备好的eutectogels具有异型的结构,机械和电气特性.
结论:
- 通过DFSS方法,可以获得具有卓越性能的先进的异性异性欧特基凝.
- 这些eutectogels适用于应变传感器和 triboelectric纳米发电机.
- 潜在的应用包括可穿戴电子产品,医疗保健,能源采集和人机接口.
相关概念视频
Strain and Elastic Modulus
9.3K
The quantity that describes the deformation of a body under stress is known as strain. Strain is given as a fractional change in either length, volume, or geometry under tensile, volume (also known as bulk), or shear stress, respectively, and is a dimensionless quantity. The strain experienced by a body under tensile or compressive stress is called tensile or compressive strain, respectively. In contrast, the strain experienced under bulk stress and shear stress is known as volume and shear...
9.3K
Electrostatic Boundary Conditions in Dielectrics
2.1K
When an electric field passes from one homogeneous medium to another, crossing the boundary between the two mediums imparts a discontinuity in the electric field. This results in electrostatic boundary conditions that depend on the type of mediums the field propagates through.
Consider a case where both the mediums across a boundary are two different dielectric materials. Recall that the electric field and electric displacement are proportional and related through the material's permittivity....
Consider a case where both the mediums across a boundary are two different dielectric materials. Recall that the electric field and electric displacement are proportional and related through the material's permittivity....
2.1K
Elastic Strain Energy for Shearing Stresses
628
As discussed in previous lessons, strain energy in a material is the energy stored when it is elastically deformed, a concept crucial in materials science and mechanical engineering. This energy results from the internal work done against the cohesive forces within the material. When a material undergoes shearing stress and corresponding shearing strain, the strain energy density, which is the energy stored per unit volume, is calculated. Within the elastic limit, where the stress is...
628


