基于可降解丝纤维素的压阻传感器,用于可穿戴生物监测。

0 MATERIALS SCIENCE, MULTIDISCIPLINARY
Chunlin Pang, Fei Li, Xiaorao Hu, Keyu Meng, Hong Pan, Yong Xiang
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引用次数: 0

摘要

可降解可穿戴电子设备正在引起越来越多的关注,以削弱或消除废弃电子废物的负面影响,并促进无需二次后处理的医疗植入物的发展。尽管人们已经探索了各种用于可穿戴电子设备的可降解材料,但开发具有高传感性能和低成本制造等综合特性的可降解可穿戴电子设备仍具有挑战性。在此,我们开发了一种简便、低成本和环保的方法来制造一种生物相容性和可降解的基于丝纤维素的可穿戴电子设备(SFWE),用于体外监测。玫瑰花瓣模板和空心碳纳米球的结合使制备的 SFWE 具有良好的灵敏度(5.63 kPa-1)、快速响应时间(147 毫秒)和稳定的耐用性(15,000 次循环)。在 1 M NaOH 溶液中观察到了可降解现象,这证实了基于蚕丝纤维的可穿戴电子元件具有可降解特性。此外,已证实制成的 SFWE 具有监测指关节弯曲、肌肉运动和面部表情的能力。这项工作为制造高性能的可穿戴电子设备提供了一种对生态无害且具有成本效益的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Degradable silk fibroin based piezoresistive sensor for wearable biomonitoring.

Degradable silk fibroin based piezoresistive sensor for wearable biomonitoring.

Degradable wearable electronics are attracting increasing attention to weaken or eliminate the negative effect of waste e-wastes and promote the development of medical implants without secondary post-treatment. Although various degradable materials have been explored for wearable electronics, the development of degradable wearable electronics with integrated characteristics of highly sensing performances and low-cost manufacture remains challenging. Herein, we developed a facile, low-cost, and environmentally friendly approach to fabricate a biocompatible and degradable silk fibroin based wearable electronics (SFWE) for on-body monitoring. A combination of rose petal templating and hollow carbon nanospheres endows as-fabricated SFWE with good sensitivity (5.63 kPa-1), a fast response time (147 ms), and stable durability (15,000 cycles). The degradable phenomenon has been observed in the solution of 1 M NaOH, confirming that silk fibroin based wearable electronics possess degradable property. Furthermore, the as-fabricated SFWE have been demonstrated that have abilities to monitor knuckle bending, muscle movement, and facial expression. This work offers an ecologically-benign and cost-effective approach to fabricate high-performance wearable electronics.

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