超小碳纳米点光氧化感应反应对饮用水和地下水中锰的检测与监测

Svetlin Toshev, A. Loukanov
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引用次数: 1

摘要

研究了超小碳纳米点作为饮用水和地下水中锰的敏感传感器的研制。锰对环境的污染通常是由采矿和农业等工业活动造成的。可溶性锰离子对许多生物都是有毒的,甚至可能导致严重的人类疾病。我们使用的感官检测策略是基于光氧化反应,将碳纳米点溶解在酸性溶液中并用紫外照射(波长为365 nm)照射。在这些条件下,纳米颗粒作为光敏剂并产生单线态氧,可以通过作为有机指示剂的3,3 ',5,5 ' -四甲基联苯胺来监测。然而,要进行该反应,必须在反应混合物中引入氧化还原对Mn(II)/Mn(III),该对对电子转移起催化介质的作用。因此,出现3,3 ',5,5 ' -四甲基联苯胺的氧化,导致溶液呈蓝色,吸光度在645 nm处最大。在EDTA的存在下,这种感觉反应的速率显著提高,EDTA作为配体得到了稳定的Mn(III)/EDTA配合物。形成的络合物本身氧化了有机指示剂并引起比色反应。在测试的其他金属离子中,只有锰可以通过提出的感官方法检测到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DETECTION AND MONITORING OF MANGANESE IN DRINKING WATER AND GROUNDWATER THROUGH PHOTO-OXIDATION SENSORY REACTION WITH ULTRASMALL CARBON NANODOTS
The paper focuses on the development of ultra-small carbon nanodots as sensitive sensors for detection and monitoring of manganese in drinking water and groundwater. The environmental contamination with manganese is often a result from industrial activities such as mining and agriculture. The soluble Mn ions are toxic for many organisms and might even cause serious human diseases. The strategy for sensory detection used by us is based on a photo-oxidation reaction, in which the carbon nanodots are dissolved in acidic solution and illuminated with UV irradiation ( = 365 nm). At these conditions the nanoparticles acted as photosensitizer and produced singlet oxygen, which can be monitored by 3,3’,5,5’-tetramethylbenzidine as an organic indicator. However, to proceed this reaction, it is necessary to introduce the redox pair Mn(II)/Mn(III) in the reaction mixture, which plays the role of a catalytic mediator for the electron transfer. Thus, the oxidation of 3,3’,5,5’-tetramethylbenzidine appears, which results in blue colour of the solution with absorbance maximum at 645 nm. The rate of this sensory reaction was significantly enhanced in the presence of EDTA, which was used as a ligand to obtain a stable complex of Mn(III)/EDTA. The formed complex itself oxidised the organic indicator and caused the colorimetric reaction. Among the other metal ions tested, only manganese could be detected by the presented sensory approach.
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