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Fabrication of Graphene Based Durable Intelligent Personal Protective Clothing for Conventional and Non-Conventional Chemical Threats

机译:常规和非传统化学威胁的石墨烯耐用智能个人防护服的制造

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摘要

Conventional or non-conventional chemical threat is gaining huge attention due to its unpredictable and mass destructive effects. Typical military protective suits have drawbacks such as high weight, bulky structure, and unpredictable lifetime. A durable, light, and scalable graphene e-fabric was fabricated from CVD-grown graphene by a simple co-lamination method. The sheet resistance was below 1 kΩ/sq over the wide surface area even after 1000 bending cycles. A graphene triboelectric nanogenerator showed the peak VOC of 68 V and the peak ICC of 14.4 μA and 1 μF capacitor was charged successfully in less than 1 s. A wearable chemical sensor was also fabricated and showed a sensitivity up to 53% for nerve chemical warfare agents (GD). DFT calculations were conducted to unveil the fundamental mechanisms underlying the graphene e-fabric sensor. Additionally, protection against chemical warfare agents was tested, and a design concept of graphene-based intelligent protective clothing has been proposed.
机译:由于其不可预测和大规模的破坏性效应,常规或非常规化学威胁正在受到巨大的关注。典型的军用防护服具有高重量,庞大的结构和不可预测的寿命等缺点。通过简单的共层压方法制造耐用的,光和可缩放的石墨烯E-织物。即使在1000次弯曲循环之后,薄层电阻也在宽表面积上方在宽表面积下方1kΩ/ sq。石墨烯摩擦纳米能器显示,68V的峰值VOC,14.4μA和1μF电容器的峰值ICC成功以小于1s加入。还制作可穿戴化学传感器,并且敏感性高达53%的敏感性,可用于神经化学造成疣状剂(GD)。进行DFT计算以推出石墨烯E-织物传感器底层的基本机制。此外,还测试了对化学造成化学造成的化学造成药剂的保护,并提出了基于石墨烯的智能防护服的设计理念。

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