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An Efficient Probe for Rapid Detection of Cyanide in Water at Parts per Billion Levels and Naked‐Eye Detection of Endogenous Cyanide
Authors:Dr Namita Kumari  Dr Satadru Jha  Prof Dr Santanu Bhattacharya
Institution:1. Department of Organic Chemistry, Indian Institute of Science, Bangalore 560012 1 (India), Fax: (+91)?080‐2360‐0529;2. Department of Chemistry, Sikkim Manipal Institute of Technology, Majitar, East‐Sikkim 737136 (India);3. Chemical Biology Unit, Jawaharlal Nehru Centre of Advanced Scientific Research, Bangalore (India)
Abstract:A new molecular probe based on an oxidized bis‐indolyl skeleton has been developed for rapid and sensitive visual detection of cyanide ions in water and also for the detection of endogenously bound cyanide. The probe allows the “naked‐eye” detection of cyanide ions in water with a visual color change from red to yellow (Δλmax=80 nm) with the immediate addition of the probe. It shows high selectivity towards the cyanide ion without any interference from other anions. The detection of cyanide by the probe is ratiometric, thus making the detection quantitative. A Michael‐type addition reaction of the probe with the cyanide ion takes place during this chemodosimetric process. In water, the detection limit was found to be at the parts per million level, which improved drastically when a neutral micellar medium was employed, and it showed a parts‐per‐billion‐level detection, which is even 25‐fold lower than the permitted limits of cyanide in water. The probe could also efficiently detect the endogenously bound cyanide in cassava (a staple food) with a clear visual color change without requiring any sample pretreatment and/or any special reaction conditions such as pH or temperature. Thus the probe could serve as a practical naked‐eye probe for “in‐field” experiments without requiring any sophisticated instruments.
Keywords:colorimetric probes  cyanide  Michael addition  oxidation  sensors
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