可穿戴计算机
荧光
纳米技术
Mercury(编程语言)
织物
材料科学
水溶液
污染物
多孔性
化学
环境化学
计算机科学
复合材料
有机化学
嵌入式系统
物理
程序设计语言
量子力学
作者
Dong Zhang,Yuchong Zhang,Wei Lü,Xiaoxia Le,Ping Li,Lei Huang,Jiawei Zhang,Jintao Yang,Michael J. Serpe,Daoding Chen,Tao Chen
标识
DOI:10.1002/admt.201800201
摘要
Abstract In some industrial districts, abuse discharge of waste water has resulted in serious Hg 2+ pollution in seafood, grain, and even drinking water. In order to protect people from mercury(II)‐polluted food and water, many solid‐state fluorescent Hg 2+ ‐sensing materials are developed in terms of facile operation. However, one primary challenging issue is the restricted sensitivity caused by hindered slow diffusion of aqueous testing samples inside these conventional hydrophobic, dense, and rigid film materials. Herein, robust hydrophilic fluorescent hydrogel‐coated flexible paper/textile film chemosensors are reported. Their design relies on a specific chemical reaction between Hg 2+ and the grafted thiourea moieties to induce remarkable “green‐to‐blue” emission color change. Thanks to their hierarchical porous structures fixed by interwoven paper/textile fibers, these flexible chemosensors allow fast capillary‐force‐driven mercury(II) diffusion into the hydrophilic hydrogel matrix, thus enabling visual detection of nearly nM‐level Hg 2+ . On this basis, robust fluorescent hydrogel‐coated wearable sensing gloves are fabricated for the first time, which significantly facilitate infield visual detection and effectively protect operators far from the toxic Hg 2+ ‐polluted samples. These developed flexible wearable sensing systems might not only hold great potential applications in mercury(II) detection, but also inspire the development of next‐generation sensing apparatus for other food and environmental pollutants.
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