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使用透明铜纳米线电极的柔性摩擦纳米发电机:能量收集、人体活动感应和材料识别。

Flexible triboelectric nanogenerators using transparent copper nanowire electrodes: energy harvesting, sensing human activities and material recognition.

机构信息

Wellcome/EPSRC Centre for Interventional and Surgical Sciences, UCL, London, W1W 7TS, UK.

Nanoengineered Systems Laboratory, UCL Mechanical Engineering, London, WC1E 7JE, UK.

出版信息

Mater Horiz. 2023 Jul 31;10(8):3124-3134. doi: 10.1039/d3mh00404j.

Abstract

Triboelectric nanogenerators (TENGs) have emerged as a promising green technology to efficiently harvest otherwise wasted mechanical energy from the environment and human activities. However, cost-effective and reliably performing TENGs require rational integration of triboelectric materials, spacers, and electrodes. The present work reports for the first time the use of oxydation-resistant pure copper nanowires (CuNWs) as an electrode to develop a flexible, and inexpensive TENG through a potentially scalable approach involving vacuum filtration and lactic acid treatment. A ∼6 cm device yields a remarkable open circuit voltage () of 200 V and power density of 10.67 W m under human finger tapping. The device is robust, flexible and noncytotoxic as assessed by stretching/bending maneuvers, corrosion tests, continuous operation for 8000 cycles, and biocompatibility tests using human fibroblast cells. The device can power 115 light emitting diodes (LEDs) and a digital calculator; sense bending and motion from the human hand; and transmit Morse code signals. The robustness, flexibility, transparency, and non-cytotoxicity of the device render it particularly promising for a wide range of energy harvesting and advanced healthcare applications, such as sensorised smart gloves for tactile sensing, material identification and safer surgical intervention.

摘要

摩擦纳米发电机(TENG)作为一种很有前途的绿色技术,能够有效地从环境和人类活动中获取原本被浪费的机械能。然而,具有成本效益且性能可靠的 TENG 需要合理整合摩擦材料、隔离层和电极。本工作首次报道了使用抗氧化纯铜纳米线(CuNWs)作为电极,通过一种潜在的可扩展方法,即真空过滤和乳酸处理,开发出一种柔性且廉价的 TENG。一个 ∼6 cm 的器件在人体手指敲击下可产生高达 200 V 的开路电压()和 10.67 W m 的功率密度。该器件具有很强的耐用性、灵活性和非细胞毒性,可通过拉伸/弯曲操作、腐蚀测试、8000 次连续运行以及使用人成纤维细胞的生物相容性测试来评估。该器件可驱动 115 个发光二极管(LED)和一个数字计算器;感知人手的弯曲和运动;并传输莫尔斯电码信号。该器件的耐用性、灵活性、透明度和非细胞毒性使其非常有前途应用于各种能量收集和先进的医疗保健应用,例如用于触觉感应、材料识别和更安全的手术干预的带传感器的智能手套。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00bf/10389064/fa27fcf432a0/d3mh00404j-f1.jpg

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