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基于聚合物微纳线阵列的可穿戴医疗器件用紫外光探测器

Ultraviolet Photodetectors Based on Polymer Microwire Arrays toward Wearable Medical Devices.

机构信息

Medical School of Chinese PLA, Chinese PLA General Hospital, Beijing 100853, China.

Department of Orthopedics, the Fourth Medical Centre, Chinese PLA General Hospital, Beijing 100048, China.

出版信息

ACS Appl Mater Interfaces. 2022 Sep 14;14(36):41257-41263. doi: 10.1021/acsami.2c04169. Epub 2022 Aug 31.

DOI:10.1021/acsami.2c04169
PMID:36044649
Abstract

Polymer micro/nanoarchitectures have attracted intense interest for wearable medical applications due to their excellent mechanical flexibility, solution processability, and tunable optoelectronic properties. Based on polymer micro/nanostructures, high-performance ultraviolet (UV) photodetectors can not only functionalize the accurate image sensing but also sustain the biocomfortable flexible devices for real-time health monitoring. The main challenges are focused on the integration of medical wearable devices, which requires large-scale assembly of polymer micro/nanostructures with controlled morphology and strict alignment. Herein, we utilized a confined assembly system through the cautious regulation for the growth of high-quality polymer 1D arrays. UV photodetectors based on these polymer microwire arrays perform a high on/off ratio of 137 and responsivity of 19.1 mA W. Polymer microarray photodetectors facilitate the scale-up fabrication of 14 × 18 multiplexed image sensors for highly accurate capturing the signals of Arabic numerals "1," "2," and "3." Flexible UV photodetectors based on these arrays present excellent flexibility and bending durability, maintaining 97% of their original on/off ratio after 4000 cycles with a 10 mm bending radius. UV photodetection signals were also collected from the attached flexible devices on the back skin of the mouse, demonstrating the great potential in wearable medical photodetection.

摘要

聚合物微/纳结构由于其优异的机械柔韧性、溶液加工性和可调谐的光电性能,在可穿戴医疗应用中引起了极大的关注。基于聚合物微/纳结构,高性能的紫外(UV)光电探测器不仅可以实现精确的图像感应功能,还可以支持生物舒适的柔性器件,用于实时健康监测。主要的挑战集中在医疗可穿戴设备的集成上,这需要大规模组装具有受控形态和严格对准的聚合物微/纳结构。在这里,我们利用受限的组装系统,通过仔细调控高质量聚合物一维阵列的生长来实现这一点。基于这些聚合物微丝阵列的 UV 光电探测器表现出 137 的高开关比和 19.1 mA W 的响应率。聚合物微阵列光电探测器有利于大规模制造 14×18 复用图像传感器,以高度精确地捕捉阿拉伯数字“1”、“2”和“3”的信号。基于这些阵列的柔性 UV 光电探测器具有出色的柔韧性和弯曲耐久性,在半径为 10 毫米的情况下弯曲 4000 次后,仍保持 97%的原始开关比。还从附着在小鼠背部皮肤的柔性设备上收集了 UV 光电检测信号,展示了在可穿戴医疗光电检测中的巨大潜力。

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