Selcuk University, Science Faculty, Department of Chemistry, Konya, 42250, Turkey.
Giresun University, Faculty of Engineering, Department of Environmental Engineering, Giresun, 28200, Turkey.
Talanta. 2021 Jan 1;221:121639. doi: 10.1016/j.talanta.2020.121639. Epub 2020 Sep 9.
Cyanide released from mostly industrial production is a highly toxic chemical. Its heavy industrial use and transportation increase the danger of human exposure. Since it can often lead to rapid death, selective, sensitive and on-site and rapid monitoring techniques for the detection of cyanide are essential. Therefore, we report an efficient cyanide probe based on thiazolium conjugated HBT-Br derivative. It has striking color change toward cyanide blue to yellow under daylight or colorless to cyan under UV-light. Interaction modes of the probe are based on ESIPT and ICT processes. It is selectively able to react free aqueous cyanide with detection limit of 1.79 μM, lower than physiologically lethal blood levels, >20 μM. Smartphone assisted and test kit applications are able to detect cyanide, qualitatively. Moreover, real samples such as tap or lake water and apricot seeds including cyanide are successfully determined through the present probe. Therefore, the designed probe displays excellent practical potential toward cyanide.
从主要工业生产中释放的氰化物是一种剧毒化学品。其重工业用途和运输增加了人类接触的危险。由于氰化物通常会导致迅速死亡,因此对于检测氰化物的选择性、敏感性、现场和快速监测技术至关重要。因此,我们报告了一种基于噻唑鎓共轭 HBT-Br 衍生物的有效氰化物探针。在日光下,它对氰化物的颜色变化明显,从蓝色变为黄色,在紫外光下,颜色从无色变为蓝色。探针的相互作用模式基于 ESIPT 和 ICT 过程。它能够选择性地与游离水相中的氰化物反应,检测限为 1.79 μM,低于生理致死血浓度,>20 μM。智能手机辅助和测试试剂盒应用能够定性检测氰化物。此外,通过本探针成功地测定了包括氰化物在内的自来水或湖水和杏仁等实际样品中的氰化物。因此,所设计的探针对氰化物具有优异的实际应用潜力。