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一种基于可穿戴比色汗液 pH 传感器的智能纺织品,用于健康状态诊断。

A wearable colorimetric sweat pH sensor-based smart textile for health state diagnosis.

机构信息

Department of Mechanical Engineering Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.

Department of Nano-manufacturing Technology Korea Institute of Machinery and Materials, Daejeon 34103, Republic of Korea.

出版信息

Mater Horiz. 2023 Oct 2;10(10):4163-4171. doi: 10.1039/d3mh00340j.

Abstract

Sweat pH is an important indicator for diagnosing disease states, such as cystic fibrosis. However, conventional pH sensors are composed of large brittle mechanical parts and need additional instruments to read signals. These pH sensors have limitations for practical wearable applications. In this study, we propose wearable colorimetric sweat pH sensors based on curcumin and thermoplastic-polyurethane (C-TPU) electrospun-fibers to diagnose disease states by sweat pH monitoring. This sensor aids in pH monitoring by changing color in response to chemical structure variation from enol to di-keto form H-atom separation. Its chemical structure variation changes the visible color due to light absorbance and reflectance changes. Furthermore, it can rapidly and sensitively detect sweat pH due to its superior permeability and wettability. By O plasma activation and thermal pressing, this colorimetric pH sensor can be easily attached to various fabric substrates such as swaddling and patient clothing surface modification and mechanical interlocking of C-TPU. Furthermore, the diagnosable clothing is durable and reusable enough to neutral washing conditions due to the reversible pH colorimetric sensing performance by restoring the enol form of curcumin. This study contributes to the development of smart diagnostic clothing for cystic fibrosis patients who require continuous sweat pH monitoring.

摘要

汗液 pH 值是诊断疾病的重要指标,例如囊性纤维化。然而,传统的 pH 传感器由易碎的大型机械部件组成,需要额外的仪器来读取信号。这些 pH 传感器在实际可穿戴应用方面存在局限性。在这项研究中,我们提出了基于姜黄素和热塑性聚氨酯(C-TPU)的可穿戴比色汗液 pH 传感器,通过汗液 pH 值监测来诊断疾病状态。该传感器通过响应化学结构从烯醇形式到二酮形式的 H-原子分离变化来改变颜色,从而辅助 pH 值监测。其化学结构变化会因光吸收和反射的变化而改变可见颜色。此外,由于其优异的渗透性和润湿性,它可以快速灵敏地检测汗液 pH 值。通过 O 等离子体激活和热压,这种比色 pH 传感器可以很容易地附着在各种织物基底上,如襁褓和患者衣物上,通过恢复姜黄素的烯醇形式,可以实现表面改性和 C-TPU 的机械互锁,从而具有可诊断性的衣物具有足够的耐用性和可重复使用性,可耐受中性洗涤条件。这项研究为需要持续汗液 pH 值监测的囊性纤维化患者开发智能诊断服装做出了贡献。

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