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用于痕量重金属离子灵敏电化学检测的碳载X型锰酸盐(X = Ni、Zn和Cu)纳米复合材料

Carbon-supported X-manganate (XNi, Zn, and Cu) nanocomposites for sensitive electrochemical detection of trace heavy metal ions.

作者信息

Lei Peng, Zhou Ying, Zhao Shan, Dong Chuan, Shuang Shaomin

机构信息

School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan 030006, China.

Institute of Environmental Science, Shanxi University, Taiyuan 030006, China.

出版信息

J Hazard Mater. 2022 Aug 5;435:129036. doi: 10.1016/j.jhazmat.2022.129036. Epub 2022 Apr 30.

Abstract

Heavy metal ion pollution has always been a stringent problem facing the global environment. Therefore, the detection of heavy metal ions has been extremely important and challenging. An efficient and simple method for the preparation of carbon-supported X-manganate (XNi, Zn, and Cu) nanocomposites was explored for the individual and simultaneous electrochemical detection of Pb(II) and Hg(II). The metallic salt solutions were mixed with graphene to form the precursors through a hydrothermal reaction, and calcined in the air to obtain the final products. The structure and morphology of the synthesized NiMnO-graphene (NMO-GR), ZnMnO-graphene (ZMO-GR), and CuMnO-graphene (CMO-GR) nanocomposites were characterized by various methods, and NMO-GR showed more excellent electrochemical performances by square wave anodic stripping voltammetry (SWASV) than ZMO-GR and CMO-GR. NMO-GR provided a large specific surface area, abundant reaction sites, and good electrical conductivity, thereby enhancing its electrochemical performance. The electrochemical sensor based on NMO-GR displayed the widest linear ranges (1.4-7.7 μM for Pb(II) and 0.7-6.7 μM for Hg(II)) and with the lowest detection limits (0.050 μM for Pb(II) and 0.027 μM for Hg(II)) than ZMO-GR and CMO-GR. This study offered a new way to simultaneously detect Pb(II) and Hg(II), and greatly expanded its application in the field of electrochemistry.

摘要

重金属离子污染一直是全球环境面临的一个严峻问题。因此,重金属离子的检测极其重要且具有挑战性。本文探索了一种高效简便的制备碳负载X型锰酸盐(X为Ni、Zn和Cu)纳米复合材料的方法,用于单独和同时电化学检测Pb(II)和Hg(II)。将金属盐溶液与石墨烯通过水热反应混合形成前驱体,并在空气中煅烧以获得最终产物。采用多种方法对合成的NiMnO-石墨烯(NMO-GR)、ZnMnO-石墨烯(ZMO-GR)和CuMnO-石墨烯(CMO-GR)纳米复合材料的结构和形貌进行了表征,通过方波阳极溶出伏安法(SWASV)测试发现NMO-GR比ZMO-GR和CMO-GR具有更优异的电化学性能。NMO-GR具有较大的比表面积、丰富的反应位点和良好的导电性,从而提高了其电化学性能。基于NMO-GR的电化学传感器对Pb(II)和Hg(II)显示出比ZMO-GR和CMO-GR更宽的线性范围(Pb(II)为1.4 - 7.7 μM,Hg(II)为0.7 - 6.7 μM)以及更低的检测限(Pb(II)为0.050 μM,Hg(II)为0.027 μM)。该研究为同时检测Pb(II)和Hg(II)提供了一种新方法,并极大地拓展了其在电化学领域的应用。

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