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Grafting of terbium(iii) complexes onto layered rare-earth hydroxide nanosheets to fabricate novel optical fiber temperature sensors

机译:嫁接的铽(iii)复合物到分层稀土氢氧化物nanosheets制造新颖的光纤温度传感器

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摘要

Optical sensors of temperature possess the unique advantages of contactless measurement and large-scale imaging. Developments have been rapidly made in optical fiber sensors due to their high sensitivity, short response time, and electromagnetic immunity, and being easy to handle and light weight. Therefore, novel optical sensors of temperature based on optical fibers were fabricated to explore their application in special environments, such as poisonous, sparkless, currentless, and gelid ones. The present study is the first report of successful intercalation of neutral Y(iii) complexes in situ into the gallery of Y/Eu binary layered rare-earth hydroxides by hydrothermal processing without replacing the nitrate ions. The swollen layered rare-earth hydroxides were then exfoliated into ultrathin nanosheets approximate to 2 nm thick through dispersion in formamide. Grafting of Tb(iii) complexes onto the exfoliated nanosheets yielded novel temperature sensor films 100 nm thick, which exhibited color emissions from green to pink tunable through temperatures ranging from 77 to 360 K under ultraviolet excitation. Due to the highly sensitive and temperature-dependent emission, an optical fiber-based temperature sensor was fabricated by employing these novel allochroic films, which showed luminescence that could reversibly undergo repeated thermocycles. These optical fiber sensors have the potential to open up new fields in material functionalities via nanostructure manipulation and functionalized optical fiber engineering.
机译:光学传感器的温度具有独特的非接触式测量和的优点大规模的成像。迅速在光纤传感器由于灵敏度高,响应时间短,电磁免疫力,容易处理和重量轻。基于光纤传感器的温度装配式探索他们的应用程序特殊环境,如有毒,无火花,无流的,冷漠的。本研究是第一个报道的成功夹层的中性Y (iii)原位复合物画廊的Y /欧盟二进制分层稀土氢氧化物的热液处理没有代替硝酸离子。层状稀土氢氧化物剥落成超薄nanosheets近似通过分散在甲酰胺2 nm厚。嫁接的结核病(iii)复合物在剥落nanosheets小说产生了温度传感器的电影& 100纳米厚,表现出颜色的排放从绿色变成粉红色通过温度可调从77年到360 K下紫外线激发。与温度有关的排放,一个光光纤温度传感器是捏造的雇佣这些变色的电影,小说显示发光可以可逆地接受thermocycles重复。传感器有可能开辟新的领域通过纳米结构材料的功能操作和功能化光纤工程。

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