Department of Chemistry, Vinayaka Missions Kirupananda Variyar Arts and Science College, Vinayaka Missions Research Foundation (Deemed to Be University), Salem, 636308, India.
Nanomaterials and Solar Energy Conversion Laboratory, Department of Chemistry, National Institute of Technology, Tiruchirappalli, 620015, India.
Environ Res. 2023 Jul 15;229:115940. doi: 10.1016/j.envres.2023.115940. Epub 2023 Apr 18.
Long-term exposure to the highly toxic heavy metal arsenic can harm ecological systems and pose serious health risks to humans. Arsenic pollutant in water and the food chain must be addressed, and active prompt detection of As(III) is essential. The development of an effective detection method for As(III) ions is urgently needed to slow the alarming growth of arsenic pollution in the environment and safeguard the well-being of future generations. This study presents the results of our exhaustive investigation into cubic CsPbBr single crystals, the glassy carbon (GC) electrode modification with CsPbBr single crystals prepared by direct solvent evaporation, as well as our observations of the material's remarkable electrocatalytic properties and exceptional anti-interference sensing of As(III) ions in neutral pH media. The developed CsPbBr/GC is exceptionally useful for the ultra-sensitive and specific identification of arsenic in water, exhibiting a detection limit of 0.381 μmol/L, a rapid response across a defined range of 0.1-25 μmol/L, and an ultra-sensitivity of 0.296 μA/μmolL. CsPbBr/GCE (prepared without a specific reagent) is superior to other modified electrodes used as sensors in electrocatalytic activity, detection limit, analytical sensitivity, and stability response.
长期暴露于高毒性重金属砷会对生态系统造成危害,并对人类健康构成严重威胁。必须解决水中和食物链中的砷污染物,并积极快速地检测 As(III)。迫切需要开发一种有效的 As(III)离子检测方法,以减缓环境中砷污染的惊人增长,保障子孙后代的福祉。本研究全面研究了立方 CsPbBr 单晶,通过直接溶剂蒸发制备的 CsPbBr 单晶修饰玻碳 (GC) 电极,以及观察到材料对中性 pH 介质中 As(III)离子的显著电催化性能和出色的抗干扰感应。开发的 CsPbBr/GC 非常适用于水中砷的超灵敏和特异性识别,检测限为 0.381 μmol/L,在 0.1-25 μmol/L 的定义范围内快速响应,超灵敏度为 0.296 μA/μmolL。CsPbBr/GCE(未使用特定试剂制备)在电催化活性、检测限、分析灵敏度和稳定性响应方面优于用作传感器的其他修饰电极。