Selective Epitaxial Growth of MOF-on-MOF-Derived Core–Shell Fe2O3/CoFe2O4 Nanocomposites for Efficient Electrochemical Detection of Multiple Heavy Metal Ions

检出限 材料科学 纳米复合材料 电化学 外延 纳米颗粒 水溶液中的金属离子 离子 金属 化学工程 金属有机骨架 选择性 电阻率和电导率 电导率 比表面积 形态学(生物学) 电化学气体传感器 航程(航空) 衍生工具(金融) 纳米晶 纳米技术 微球 无机化学 电极 吸附
作者
Jieli Guo,Shiwei Tu,Limin Li,Xiujing Xing,Wei Xiong,Hao Li
出处
期刊:Industrial & Engineering Chemistry Research [American Chemical Society]
卷期号:64 (39): 19075-19089 被引量:1
标识
DOI:10.1021/acs.iecr.5c02521
摘要

Combining two metal–organic frameworks (MOFs) with different compositions and structures is an effective way to grow MOF-on-MOF materials. MOF-on-MOF-derived Fe2O3/CoFe2O4 nanocomposites were constructed by epitaxial growth method and high-temperature heat treatment. The morphology and structure of Fe2O3/CoFe2O4 were modulated by varying different organic ligands, and their effects on the detection properties of Pb2+, Cu2+, Hg2+, and Cd2+ were explored. Co3O4 microspheres acted as stabilizing seeds, and typical samples of Fe2O3/CoFe2O4-2 nanocomposites showed spherical nanoparticles of the core–shell type with an average diameter of about 55–60 nm. Meanwhile, compared with individual MOF derivatives, the surface of MOF-on-MOF derivative materials had higher electrical conductivity and active surface area by high-temperature heat treatment, thus promoting efficient adsorption of a wide range of heavy metal ions (HMIs). Furthermore, Fe2O3/CoFe2O4-2/GCE exhibited excellent electrochemical detection performance for the simultaneous detection of Pb2+, Cu2+, Hg2+, and Cd2+ with low limit of detection (LOD) of 2.98, 8.56, 4.44, and 5.40 nM, respectively. By two-by-two and three-by-three assays, promoting and inhibiting effects of different HMIs were observed on the target ions. This work is significant for the development of high-performance MOF-on-MOF-derived Fe2O3/CoFe2O4 nanocomposites for real-time environmental monitoring.
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