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On-line Ammonia Sensor and Invisible Security Ink by Fluorescent Zwitterionic Spirocyclic Meisenheimer Complex

机译:荧光两性离子螺环迈森海默络合物在线氨传感器和隐形安全墨水

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摘要

Ammonia is not only a highly important gas for civilization but also contribute significantly for climate change and human health hazard. Highly sensitive ammonia sensor has been developed from a fluorescent zwitterionic spirocyclic Meisenheimer complex. Moreover, formation of this Meisenheimer complex can also be utilized for selective as well as naked eye instant detection of nitro aromatic explosive picric acid. The presence of a quaternary nitrogen atom directly attached to the spiro carbon is the unique feature of this Meisenheimer complex. This excellent photoluminescent (PL) Meisenheimer complex has two distinct stimuli responsive sites. One is sensitive towards acid while the other one is towards the base. These two positions can be modulated by adding one equivalent acid and one equivalent base to result two new products which are non fluorescent. One of these two non fluorescent species was found very exciting because of its UV/Vis transparency. Utilizing this concept we have fabricated an on-line sensor for measuring ammonia in dry or humid and condensing sewer air. The sensor was robust against ambient temperature and humidity variation. We have also developed an invisible ink from this Meisenheimer complex, with potential application for security purpose.
机译:氨气不仅是文明的重要气体,而且对气候变化和人类健康危害也有重要贡献。高灵敏度氨传感器是由荧光两性离子螺环迈森海默络合物开发的。此外,该Meisenheimer配合物的形成还可以用于选择性地以及肉眼即时检测硝基芳族爆炸性苦味酸。直接与螺碳相连的季氮原子的存在是该Meisenheimer配合物的独特特征。这种出色的光致发光(PL)迈森海默复合物具有两个不同的刺激反应位点。一个对酸敏感,而另一个对碱敏感。可以通过添加一种当量的酸和一种当量的碱来调节这两个位置,以产生两种新的非荧光产物。发现这两种非荧光物质之一非常令人兴奋,因为它具有UV / Vis透明性。利用这一概念,我们制造了一种在线传感器,用于测量干燥或潮湿的氨以及冷凝的下水道中的氨。该传感器可抵抗环境温度和湿度变化。我们还开发了这种迈森海默(Meisenheimer)建筑群中的隐形墨水,并有可能用于安全目的。

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