Gul Zarif, Khan Sikandar, Ullah Shaheed, Ullah Hayat, Khan Misbah Ullah, Ullah Munzer, Altaf Ataf Ali
Department of Chemistry, University of Okara, Okara, Punjab, Pakistan.
Department of Chemistry, University of Malakand, Chakdara, Pakistan.
Crit Rev Anal Chem. 2024;54(3):508-528. doi: 10.1080/10408347.2022.2085027. Epub 2022 Jun 7.
Rapid detection of toxic ions has taken great attention in the last few decades due to its importance in maintaining a greener environment for human beings. The extreme toxicity of cyanide (CN) ions is a great environmental concern as its continued industrial use generates interest in facile and sensitive methods for CN ions detection. Since CN ions act as a ligand in coordination chemistry which rapidly coordinates with suitable metals and forms complexes, this ability was mainly explored in its detection. It also attacks the central metal in coordination compounds and gives a fluorimetric response. Coordination compounds behave as a sensor for the detection of important ions like CN ions and have gained great attention due to their facile synthesis, multianalyte detection, clear detection and low detection limit. Recently, considerable efforts have been devoted to the detection and quantification of hazardous multianalyte using a single probe. Cu complexes are the main complexes used for CN ions detection; however, the complexes of many other metals are also used as sensors. Four basic types of interaction have been discussed in coordination compound sensors for CN detection. The performances of different sensors are compared with one another and the sensors which have the lowest detection limit are highlighted. This review comprises the progress made by coordination compounds as sensors for the detection of CN ions in the last six years (2015-2021). To the best of our knowledge, there is no review on coordination compounds as a sensor for CN ions during this period. [Figure: see text].
在过去几十年中,由于快速检测有毒离子对于为人类维持更绿色的环境至关重要,因此受到了极大关注。氰化物(CN)离子的极高毒性是一个重大的环境问题,因为其在工业上的持续使用引发了对简便且灵敏的CN离子检测方法的兴趣。由于CN离子在配位化学中作为配体,能迅速与合适的金属配位并形成配合物,这种能力主要在其检测中得到探索。它还会攻击配位化合物中的中心金属并产生荧光响应。配位化合物作为检测CN离子等重要离子的传感器,因其合成简便、可多分析物检测、检测清晰且检测限低而备受关注。最近,人们致力于使用单一探针检测和定量有害多分析物。铜配合物是用于检测CN离子的主要配合物;然而,许多其他金属的配合物也被用作传感器。在用于CN检测的配位化合物传感器中讨论了四种基本类型的相互作用。对不同传感器的性能进行了相互比较,并突出了检测限最低的传感器。本综述涵盖了配位化合物在过去六年(2015 - 2021年)作为检测CN离子的传感器所取得的进展。据我们所知,在此期间没有关于配位化合物作为CN离子传感器的综述。[图:见正文]