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用于超灵敏纺织压力传感器的可拉伸双捻纤维上爆米花状纳米结构的一步法原位自发生长

One-Step and Spontaneous in Situ Growth of Popcorn-like Nanostructures on Stretchable Double-Twisted Fiber for Ultrasensitive Textile Pressure Sensor.

作者信息

Lan Lingyi, Zhao Fengnian, Yao Yao, Ping Jianfeng, Ying Yibin

机构信息

Laboratory of Agricultural Information Intelligent Sensing, School of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, Zhejiang 310058, China.

Zhejiang A&F University, Hangzhou, Zhejiang 311300, China.

出版信息

ACS Appl Mater Interfaces. 2020 Mar 4;12(9):10689-10696. doi: 10.1021/acsami.0c00079. Epub 2020 Feb 19.

DOI:10.1021/acsami.0c00079
PMID:32028766
Abstract

Highly conductive fibers play an essential role in the development of electronic textiles for wearable devices. Even though great progress has been made recently, big challenges of developing simple and rapid methods to prepare functional fibers with stretchability, high sustainability, and electrical conductivity still remain. Herein, we proposed a simple, rapid, and scalable approach to fabricate stretchable and conductive fibers by growing Au nanostructures on a double-twisted fiber coated with metallic MoS nanosheets. The formation of Au nanostructures with a unique "popcorn"-like shape (namely, Au "nanopopcorn", AuNPC) occurs instantaneously and spontaneously on the surface of MoS-coated fiber, without any additional reducing reagents or heating conditions. Moreover, the overall fabrication process takes less than 5 min, demonstrating the realization of fast fabrication of functional conductive fibers. The obtained fiber with piezoresistive property can be fabricated into a pressure sensor. The unique morphology of AuNPC with a rough surface can significantly enhance the performance of the pressure sensor, with high sensitivity of up to 0.19 kPa and a fast response time of 93 ms. Furthermore, the functional fiber can be woven into electronic textiles with sensing arrays, which has multiple two-dimensional (2D) force mapping properties. Therefore, we envision that this simple, rapid, and scalable method to fabricate conductive functional fibers would show great potential in the field of electronic textiles and wearable devices.

摘要

高导电纤维在可穿戴设备的电子纺织品开发中起着至关重要的作用。尽管最近已经取得了很大进展,但开发简单快速的方法来制备具有拉伸性、高可持续性和导电性的功能纤维仍然面临巨大挑战。在此,我们提出了一种简单、快速且可扩展的方法,通过在涂覆有金属MoS纳米片的双捻纤维上生长金纳米结构来制造可拉伸导电纤维。具有独特“爆米花”状的金纳米结构(即金“纳米爆米花”,AuNPC)在MoS涂层纤维表面瞬间自发形成,无需任何额外的还原剂或加热条件。此外,整个制造过程耗时不到5分钟,证明了功能导电纤维的快速制造得以实现。所获得的具有压阻特性的纤维可制成压力传感器。具有粗糙表面的AuNPC独特形态可显著提高压力传感器的性能,灵敏度高达0.19 kPa,响应时间快至93 ms。此外,功能纤维可编织成具有传感阵列的电子纺织品,具有多种二维(2D)力映射特性。因此,我们设想这种制造导电功能纤维的简单、快速且可扩展的方法在电子纺织品和可穿戴设备领域将显示出巨大潜力。

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