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A ‘chromogenic’ and ‘fluorogenic’ bis-Schiff base sensor for rapid detection of hydrazine both in solution and vapour phases

机译:“发色”和“发色”双席夫碱传感器,可快速检测溶液和气相中的肼

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A novel, convenient and rapid method has been developed, for the first time, for visual detection of hydrazine exploiting a simple, cost-effective Schiff base ligand, L as a fluorescenta€“colorimetric probe. The sensing behaviour is based on hydrogen bonding recognition. The probe could selectively distinguish hydrazine with an OFFa€“ON fluorescence signal change and the visible colour change from yellow to colourless at room temperature within 10 seconds. It exhibits exclusive selectivity towards hydrazine over different amines, metal cations and anions. The sensitivity of the fluorescence based assay (0.1 ??M or 3.2 ppb) for hydrazine is far below the TLV (threshold limit value) set by the World Health Organization (WHO) and United States Environmental Protection Agency (USEPA). DFT and TDDFT calculations were performed on the molecule of L in order to get the structural information and to get better insight into the sensing mechanism. The probe can be successfully used for vapour-phase discrimination of hydrazine by the TLC plate technique and it shows good practical applicability in the detection of hydrazine in water and urine samples.
机译:首次开发出一种新颖,便捷,快速的方法,通过使用简单,经济高效的席夫碱配体L作为荧光比色探针,对肼进行视觉检测。感测行为基于氢键识别。该探针可以在10秒内在室温下通过OFFa-ON荧光信号变化和可见颜色从黄色到无色的选择性区分肼。它对不同的胺,金属阳离子和阴离子表现出对肼的排他选择性。基于荧光的肼检测方法(0.1?M或3.2 ppb)的灵敏度远低于世界卫生组织(WHO)和美国环境保护署(USEPA)设定的TLV(阈值限值)。对L分子进行了DFT和TDDFT计算,以获取结构信息并更好地了解传感机制。该探针可通过TLC平板技术成功地用于肼的气相相鉴别,在水和尿液样品中的肼检测中显示出良好的实用性。

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