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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A novel reversible fluorescent probe for the highly sensitive detection of nitro and peroxide organic explosives using electrospun BaWO4 nanofibers
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A novel reversible fluorescent probe for the highly sensitive detection of nitro and peroxide organic explosives using electrospun BaWO4 nanofibers

机译:一种新型可逆荧光探针,用于使用Electrowis Bawo4纳米纤维的高敏感检测硝基和过氧化物有机炸药

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摘要

Fabrication of highly stable, reversible, and efficient portable sensors for the detection of explosives for safety and security is challenging due to the robustness of the currently available detection tools, limiting their mass deployment to the explosion prone areas. This paper reports a new direction towards the sensing of nitro- and peroxide-based explosives using highly stable rare-earth-doped BaWO4 nanofibers with remarkable sensitivity and reversibility. BaWO4 nanofibers doped with Tb3+ and Eu3+ ions are fabricated through a sol-gel electrospinning process, and their emission characteristics and application as a fluorescent probe for the sensing of 2-nitrotoluene and H2O2, explosive taggants representing a broad class of explosives, are studied in detail. Scheelite structured BaWO4 nanofibers exhibit excellent luminescence characteristics, and the rare-earth ion doping in the polycrystalline BaWO4 nanofibers is tailored to achieve blue, green, red, and white light emissions. These nanofibers are extremely sensitive to 2-nitrotoluene and H2O2 with rapid response time, and sensitivity is observed within the range of 1-400 ppb and 1-10 ppm, towards 2-nitrotoluene and H2O2, respectively. The fluorescence quenching of BaWO4 nanofibers in the presence of 2-nitrotoluene and H2O2 is exponential with the quenching constants up to 1.73 x 10(6) and 2.73 x 10(4) L mol(-1), respectively, which are significantly higher than those of most of the fluorescent probes based on metal-organic frameworks and conjugated organic materials. After exposing to 2-nitrotoluene, the luminescence of the nanofibers is retained completely upon heating at 120 degrees C for 10 min and the sensory response is retained as fresh nanofibers, and currently available fluorescent explosive sensors could not achieve such a recovery. The high sensitivity and selectivity of scalable rare-earth-doped BaWO4 nanofibers provide a new platform for the simultaneous detection of two classes of explosives.
机译:由于目前可用的检测工具的鲁棒性,对安全性和安全性的爆炸物进行高度稳定,可逆和有效的便携式传感器的制造是挑战,这限制了他们的群众部署到爆炸易发的区域。本文报告了使用高度稳定的稀土掺杂Bawo4纳米纤维对硝基和过氧化物基炸药感测的新方向,具有显着敏感性和可逆性。通过溶胶 - 凝胶静电纺丝工艺制造掺杂有Tb3 +和Eu3 +离子的Bawo4纳米纤维,以及它们作为荧光探针的发射特性和应用于2-硝基甲苯二烯和H2O2的荧光探针,研究了代表广泛爆炸物的爆炸性标签。细节。白酸盐结构Bawo4纳米纤维具有出色的发光特性,多晶Bawo4纳米纤维中的稀土离子掺杂,以实现蓝色,绿色,红色和白色光排放。这些纳米纤维对2-硝基甲苯和H 2 O 2非常敏感,具有快速的响应时间,并且分别观察到1-400ppb和1-10ppm,朝向2-硝基甲苯和H2O2的敏感性。在2-硝基甲苯乙烯和H 2 O 2存在下Bawo4纳米纤维的荧光猝灭是指数的,淬火常数分别为1.73×10(6)和2.73×10(4)L mol(-1),其显着高于基于金属 - 有机骨架和共轭有机材料的大多数荧光探针的那些。在暴露于2-硝基甲甲苯后,在120℃下加热10分钟后完全保留纳米纤维的发光,并且感觉响应保留为新鲜纳米纤维,并且目前可用的荧光爆炸传感器无法实现这种恢复。可扩展的稀土掺杂Bawo4纳米纤维的高灵敏度和选择性提供了一种同时检测两类炸药的新平台。

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