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A self-powered active antibacterial system controlled by human motions

机译:由人类运动控制的自我激活的活性抗菌系统

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Pathogenic bacteria that give rise to diseases every year is a major health concern around the world. In recent years, tellurium-based nanomaterials have been approved as new and efficient antibacterial agents. In this research, we developed a new approach to directly grow tellurium (Te NWs) onto commercial carbon fiber fabrics and demonstrated that it remain the good antibacterial effect. In addition, we also showed that when connecting the as-prepared carbon fiber fabrics to a triboelectric nanogenerator, a self-powered antibacterial system was constructed. During the operation of triboelectric nanogenerator, the generated electricity contributed to electroporation of bacteria and electrolysis of Te NWs. These factors resulted in a combination effect and consequently kill the bacteria in an efficient way. Upon increasing the amplitude and frequency of electric output, the self-powered active antibacterial system exhibited more enhanced performance to inhibit the bacteria growth. These results indicate that the as-prepared carbon fiber fabrics and self-powered antibacterial system can be integrated with clothing products in the near future.
机译:每年引起疾病的病原细菌是世界各地的重大健康问题。近年来,基于碲的纳米材料已被批准为新的高效抗菌剂。在这项研究中,我们开发了一种新的方法,可以将碲(Te NWS)直接生长在商业碳纤维织物上,并证明它仍然是良好的抗菌作用。此外,我们还表明,当将AS制备的碳纤维织物连接到摩擦纳米料族剂时,构建了一种自给自足的抗菌系统。在摩擦电纳米液的运行过程中,所产生的电力有助于电穿孔和Te NWS的电解。这些因素导致组合效果,从而以有效的方式杀死细菌。在增加电输出的幅度和频率时,自我动力的活性抗菌系统表现出更高的性能来抑制细菌生长。这些结果表明,在不久的将来,可以在型碳纤维织物和自给自足抗菌系统与服装产品集成。

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