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Light‐Liquid Selective Filter‐Mounted Nanowire‐Networked Polyurethane Fiber for an Ultraviolet Sensor
Author(s) -
Lim Taekyung,
Jung SangMi,
Kang Youngsoo,
Ju Sanghyun
Publication year - 2019
Publication title -
advanced materials interfaces
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.671
H-Index - 65
ISSN - 2196-7350
DOI - 10.1002/admi.201901015
Subject(s) - materials science , ultraviolet , nanowire , fiber , transmittance , optoelectronics , polyurethane , optical fiber , bending , nanotechnology , composite material , optics , physics
Fiber‐sensor‐based real‐time monitoring of the degree of exposure of the human body to ultraviolet (UV) rays is one of the technologies in the field of smart healthcare‐based wearable devices. With the development of wearable UV sensors, it is essential to build technologies with stable durability and excellent sensing capabilities for continuous movement and with water, sweat, and external contaminants. In this study, a fiber sensor is investigated that can stably detect UV intensity even when exposed to liquids such as water. The device consists of SnO 2 nanowires, which are sensitive to UV intensity, arranged on a polyurethane (PU) fiber in a random network pattern, with the aim to minimize the amount of current change caused by various tensile and compressive stresses encountered by the wearable sensor. To prevent the distortion of the measured current that may occur in the semiconductor sensing channel as a result of external water exposure, a (1 H ,1 H ,2 H ,2 H ‐heptadecafluorodec‐1‐yl) phosphonic acid (HDF‐PA)‐coated Al 2 O 3 nanoparticles (NPs) with a UV transmittance of 77% are coated on the networked SnO 2 nanowire channel. The SnO 2 nanowire‐networked PU fiber covered with the HDF‐PA coated Al 2 O 3 NPs is confirmed to be sensitive only to UV, without reacting to external water under various bending conditions.

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