Anand Thangaraj, Sahoo Suban K
Department of Applied Chemistry, SV National Institute of Technology (SVNIT), Surat-395007, India.
Phys Chem Chem Phys. 2019 Jun 5;21(22):11839-11845. doi: 10.1039/c9cp00002j.
A new optical chemosensor N1 was designed and synthesized by condensing 4-chloro-7-nitrobenzofurazan with 2-aminophenylbenzimidazole. In CH3OH : H2O (1 : 1, v/v) medium, sensor N1 exhibited high selectivity and sensitivity towards Cu2+ and Hg2+ ions by showing a distinct colour change from pale yellow to pink due to the internal charge transfer occurring between the sensor N1 and the Cu2+/Hg2+ ions upon complexation in 1 : 1 stoichiometry. Also, the binding of Cu2+ and Hg2+ ions with N1 resulted in new absorption bands at 540 nm and 375 nm with the concurrent disappearance of the sensor absorption bands at 485 nm and 321 nm. Using the spectral changes of N1, the concentrations of Cu2+ and Hg2+ ions can be detected down to 1.23 × 10-7 M and 4.70 × 10-7 M, respectively. Further, the colour change of N1 in the presence of Cu2+/Hg2+ ions was integrated with a smartphone colour-scanning app to measure the red-green-blue (RGB) colour intensity, and a cost-effective method was developed for the on-site detection of Cu2+/Hg2+ ions. Finally, the practicability of sensor N1 to quantify Cu2+ and Hg2+ ions in real water samples was successfully validated by using both the UV-vis spectrophotometer and the smartphone.
通过将4-氯-7-硝基苯并呋喃与2-氨基苯基苯并咪唑缩合,设计并合成了一种新型光学化学传感器N1。在CH3OH : H2O(1 : 1,v/v)介质中,传感器N1对Cu2+和Hg2+离子表现出高选择性和灵敏度,由于在1 : 1化学计量比络合时传感器N1与Cu2+/Hg2+离子之间发生内部电荷转移,溶液颜色从淡黄色明显变为粉红色。此外,Cu2+和Hg2+离子与N1的结合在540 nm和375 nm处产生了新的吸收带,同时传感器在485 nm和321 nm处的吸收带消失。利用N1的光谱变化,可分别检测低至1.23×10-7 M和4.70×10-7 M的Cu2+和Hg2+离子浓度。此外,将N1在Cu2+/Hg2+离子存在下的颜色变化与智能手机颜色扫描应用程序相结合,以测量红-绿-蓝(RGB)颜色强度,开发了一种经济高效的现场检测Cu2+/Hg2+离子的方法。最后,通过使用紫外可见分光光度计和智能手机,成功验证了传感器N1在实际水样中定量Cu2+和Hg2+离子的实用性。