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激光写入Janus 石墨烯/凯夫拉纤维织物用于智能防护服。

Laser Writing of Janus Graphene/Kevlar Textile for Intelligent Protective Clothing.

机构信息

Key Laboratory of Organic Optoelectronics and Molecular Engineering of the Ministry of Education, Department of Chemistry, Tsinghua University, Beijing 100084, People's Republic of China.

Academy of Arts & Design, Tsinghua University, Beijing 100084, People's Republic of China.

出版信息

ACS Nano. 2020 Mar 24;14(3):3219-3226. doi: 10.1021/acsnano.9b08638. Epub 2020 Mar 4.

Abstract

Protective clothing plays a vital role in safety and security. Traditional protective clothing can protect the human body from physical injury. It is highly desirable to integrate modern wearable electronics into a traditional protection suit to endow it with versatile smart functions. However, it is still challenging to integrate electronics into clothing through a practical approach while keeping the intrinsic flexibility and breathability of textiles. In this work, we realized the direct writing of laser-induced graphene (LIG) on a Kevlar textile in air and demonstrated the applications of the as-prepared Janus graphene/Kevlar textile in intelligent protective clothing. The C═O and N-C bonds in Kevlar were broken, and the remaining carbon atoms were reorganized into graphene, which can be ascribed to a photothermal effect induced by the laser irradiation. Proof-of-concept devices based on the prepared graphene/Kevlar textile, including flexible Zn-air batteries, electrocardiogram electrodes, and NO sensors, were demonstrated. Further, we fabricated self-powered and intelligent protective clothing based on the graphene/Kevlar textile. The laser-induced direct writing of graphene from commercial textiles in air conditions provides a versatile and rapid route for the fabrication of textile electronics.

摘要

防护服在安全保障方面发挥着重要作用。传统防护服可以保护人体免受物理伤害。将现代可穿戴电子产品集成到传统防护服中,赋予其多功能智能功能,这是非常可取的。然而,通过实际方法将电子产品集成到服装中,同时保持纺织品的固有灵活性和透气性仍然具有挑战性。在这项工作中,我们实现了激光诱导石墨烯(LIG)在空气中的 Kevlar 纺织品上的直接书写,并展示了制备的 Janus 石墨烯/Kevlar 纺织品在智能防护服中的应用。Kevlar 中的 C═O 和 N-C 键被打破,剩余的碳原子重新组织成石墨烯,这可以归因于激光照射引起的光热效应。基于制备的石墨烯/Kevlar 纺织品的概念验证设备,包括柔性锌空气电池、心电图电极和 NO 传感器,也进行了演示。此外,我们基于石墨烯/Kevlar 纺织品制造了自供电和智能防护服。在空气条件下从商业纺织品中激光诱导直接书写石墨烯为纺织品电子产品的制造提供了一种通用且快速的途径。

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