Xia Lian, Huang Andi, Niu Xiaojuan, Wu Zhen, Tang Yue, Zhou Jianli, Wu Yuangen
Key Laboratory of Plant Resource Conservation and Germplasm Innovation in Mountainous Region (Ministry of Education), College of Life Sciences/Institute of Agro-bioengineering, Guizhou University, Guiyang 550025, China.
Guizhou Province Key Laboratory of Fermentation Engineering and Biopharmacy, School of Liquor and Food Engineering, Guizhou University, Guiyang 550025, China.
Sci Total Environ. 2024 Nov 15;951:175559. doi: 10.1016/j.scitotenv.2024.175559. Epub 2024 Aug 15.
The detrimental growth of water pollutants such as heavy metals has become a life-threatening problem in the modern era. Challenges remain in the development of rapid and accurate methods for detecting pentavalent arsenic [As(V)] in environmental water. The octahedral MnO nanoparticles (NPs) did not display excellent laccase-mimicking catalytic activity, whereas the adsorbed As(V) on the surface significantly enhanced the catalytic activity. Meanwhile, the quinone imine generated from the substrates 2,4-dichlorophenol (2,4-DP) and 4-aminoantipyrine (4-AAP) catalyzed by octahedral MnO NPs further quenched the carbon dots fluorescence. Thus, it is possible to establish a fast and accurate dual-mode sensor for detecting As(V). The developed dual-mode method of As(V) detection has good sensitivity and selectivity. The limit of detection for As(V) in colorimetric mode is 6.96 μg·L, whereas in the fluorescent mode, it is as low as 2.56 μg·L. Moreover, the detection data obtained by the dual-mode method can be validated by each other, thereby ensuring the dependability of the sensing system. The constructed dual-mode method with merits of sensitivity, speed and accuracy can offer a powerful tool for As(V) detection in environmental water. Furthermore, the application of laccase-mimicking activity in dual-mode detection provides new strategies for other environmental hazard detection.
在现代,重金属等水污染物的有害增长已成为一个危及生命的问题。在开发快速准确检测环境水中五价砷[As(V)]的方法方面,挑战依然存在。八面体MnO纳米颗粒(NPs)并未表现出优异的模拟漆酶催化活性,而其表面吸附的As(V)显著增强了催化活性。同时,由八面体MnO NPs催化底物2,4 -二氯苯酚(2,4 - DP)和4 -氨基安替比林(4 - AAP)生成的醌亚胺进一步淬灭了碳点荧光。因此,有可能建立一种快速准确的双模式传感器来检测As(V)。所开发的As(V)检测双模式方法具有良好的灵敏度和选择性。比色法检测As(V)的检测限为6.96 μg·L,而荧光法的检测限低至2.56 μg·L。此外,双模式方法获得的检测数据可以相互验证,从而确保传感系统的可靠性。构建的具有灵敏度、速度和准确性优点的双模式方法可为环境水中As(V)的检测提供有力工具。此外,模拟漆酶活性在双模式检测中的应用为其他环境危害检测提供了新策略。