Self-reduction assisted MXene/Silver composite Tencel cellulose-based fabric with electrothermal conversion and NIR photothermal actuation
Han Li, Yinuo Pan, Zhaoqun Du
- 发表年份
- 2022
- 引用次数
- 2
- 访问权限
- 开放获取
摘要
Abstract Smart e-textiles, which are capable of wireless transmission, signal conversion and energy transduction, have the capability to provide added values and be more versatile. However, there are still many challenges in fabricating a flexible and durable smart fabric with high-level multifunctional integration. Herein, a novel two-dimensional material, Ti 3 C 2 T x MXene, and zero-dimensional material, silver nanoparticles (AgNPs) were coupled to fabricate a smart Tencel fabric with electrical and light versatility. By self-reduction reaction, silver nitrate can be reduced to AgNPs because the existence of reductant, MXene, enabling flexible conductive points and paths for fabric. Benefiting from excellent hydrophilicity and rich terminals of MXene, the interface bonding force was enough to get a uniform fabric. Because of the enhanced electrical conductivity of MXene/AgNPs, the MXene/silver nanoparticles (MS) Tencel fabric exhibited excellent electrothermal property (57.1℃ at 30s heating time under 6.0 V voltage) as well as thermal sensing performance, and can serve as an element of array heating devices. In addition, the MS fabric also has photothermal (maximal bending angle was 149° at 31s) capability due to the conversion of near-infrared (NIR) light by MXene, enabling photothermal actuator resulting from thermal expansion of encapsulated Ecoflex layer. With thermal and NIR sensitive capabilities, the MS Tencel fabric performed thermal sensation and has the potential in thermal sensitive robots.
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