Wearable design for occupational safety of Pb2+ water pollution monitoring based on fluorescent CDs

IF 1.1 4区 工程技术 Q3 MATERIALS SCIENCE, TEXTILES Autex Research Journal Pub Date : 2022-12-23 DOI:10.2478/aut-2022-0029
Han Chen, Han Xu, Yudian Zhang, Shi-you Gu, Dandan Wang
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Abstract

Abstract The indiscriminate discharge of industrial and domestic wastewater leads to the pollution of production, living, and landscape waters with heavy metals, including Pb2+. To protect people working in environments with risk of water pollution by Pb2+, the Pb2+ chemosensor based on fluorescent carbon dots (CDs) was designed in this study. Based on quenching of the fluorescence of CDs via electron or energy transfer between Pb2+ and CDs, the sensor induces a significant “dark blue to light blue” fluorescence burst color change under the naked eye. Results suggest that the fluorescence intensity of CDs positively correlated with the concentrations of Pb2+ (R2 = 0.823–0.986), which is conducive to the detection of Pb2+-containing wastewater by CDs. On this basis, we integrated CD fluorescent sensors into wearable gloves via a mediated coating method. With no additional burden (off-site, long lead times, high cost, etc.), the designed wearable gloves enable front loading of the detection window for Pb2+-contaminated water to protect the wearer from poisoning. Eight watershed environmental occupants reported a 57.42% reduction in occupational anxiety after using our safety gloves. We believe that the proposed flexible and stable wearable sensing system will not only have great potential applications in Pb2+ field detection but also stimulate the development of other environmental pollution sensing devices.
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基于荧光cd的Pb2+水污染监测职业安全可穿戴设计
摘要工业废水和生活废水的随意排放导致生产、生活和景观水体受到重金属污染,其中包括Pb2+。为了保护工作在Pb2+水污染危险环境中的人们,设计了基于荧光碳点(CDs)的Pb2+化学传感器。该传感器通过Pb2+与CDs之间的电子或能量转移使CDs的荧光猝灭,在肉眼下诱导出明显的“深蓝色到浅蓝色”荧光爆发颜色变化。结果表明,CDs的荧光强度与Pb2+浓度呈正相关(R2 = 0.823-0.986),有利于CDs对含Pb2+废水的检测。在此基础上,我们通过介导涂层方法将CD荧光传感器集成到可穿戴手套中。设计的可穿戴手套没有额外的负担(异地,交货时间长,成本高等),可以在Pb2+污染水的检测窗口前加载,以保护佩戴者免受中毒。8名流域环境居住者报告说,使用我们的安全手套后,职业焦虑减少了57.42%。我们相信,所提出的灵活稳定的可穿戴传感系统不仅在Pb2+现场检测方面具有巨大的应用潜力,而且还将促进其他环境污染传感设备的发展。
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来源期刊
Autex Research Journal
Autex Research Journal MATERIALS SCIENCE, TEXTILES-
CiteScore
2.80
自引率
9.10%
发文量
40
审稿时长
>12 weeks
期刊介绍: Only few journals deal with textile research at an international and global level complying with the highest standards. Autex Research Journal has the aim to play a leading role in distributing scientific and technological research results on textiles publishing original and innovative papers after peer reviewing, guaranteeing quality and excellence. Everybody dedicated to textiles and textile related materials is invited to submit papers and to contribute to a positive and appealing image of this Journal.
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