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基于 MXene 涂层纺织品的用于个人加热系统、电磁干扰屏蔽和压力感应的黏附、多功能和可穿戴电子设备。

Adhesive, multifunctional, and wearable electronics based on MXene-coated textile for personal heating systems, electromagnetic interference shielding, and pressure sensing.

机构信息

School of Physics and Optoelectric Engineering, Guangdong University of Technology, Guangzhou Higher Education Mega Center, Guangzhou 510006, China.

School of Physics and Optoelectric Engineering, Guangdong University of Technology, Guangzhou Higher Education Mega Center, Guangzhou 510006, China.

出版信息

J Colloid Interface Sci. 2023 Jan 15;630(Pt A):23-33. doi: 10.1016/j.jcis.2022.09.003. Epub 2022 Sep 23.

Abstract

Adhesion between flexible devices and skin surface facilitates portability of devices and reliable signal acquisition from human body, which is essential for medical therapy devices or monitoring systems. Here, we utilize a simple, cost-effective, and scalable layer-by-layer dip-coating method to fabricate a skin-adhesive multifunctional textile-based device, consisting of three parts: low-cost and easily available airlaid paper (AP) substrate, conductive MXene sensitive layer, and adhesive polydimethylsiloxane (PDMS). The adhesive layer of lightly cross-linked PDMS enables the device to form conformal contact with skin even during human joint bending. The smart textile device exhibits excellent electro-thermal and photo-thermal conversion performance with good cycling stability and tunability. Furthermore, the textile electronics show good electromagnetic interference (EMI) shielding properties due to the good electrical conductivity, as well as sensitive and stable pressure sensing properties for human motion detection. Consequently, this efficient strategy provides a possible way to design multifunctional and wearable electronic textiles for medical applications.

摘要

柔性设备与皮肤表面之间的黏附力有助于设备的便携性以及从人体可靠地获取信号,这对于医疗治疗设备或监测系统来说是至关重要的。在这里,我们利用一种简单、经济高效且可扩展的层层浸涂方法,制造出一种由三部分组成的、具有皮肤黏附性的多功能纺织基设备:低成本且易于获得的气流成网纸 (AP) 基底、导电 MXene 敏感层和黏附性聚二甲基硅氧烷 (PDMS)。轻度交联的 PDMS 黏附层使设备即使在人体关节弯曲时也能与皮肤形成贴合接触。智能纺织设备表现出优异的电热和光热转换性能,具有良好的循环稳定性和可调节性。此外,由于良好的导电性,以及对人体运动检测的敏感和稳定的压力感应性能,纺织电子产品还具有良好的电磁干扰 (EMI) 屏蔽性能。因此,这种高效策略为设计用于医疗应用的多功能可穿戴电子纺织品提供了一种可能的途径。

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