4.7 Article

Selective and fast growth of CdS nanocrystals on zinc (II) metal-organic framework architectures for photoelectrochemical response and electrochemical immunosensor of foot-and-mouth disease virus

期刊

MICROCHEMICAL JOURNAL
卷 174, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.microc.2021.107038

关键词

Cadmium sulfide; Zinc metal organic frameworks; Selective growth; Electrochemical immunosensor; Foot-and-mouth disease virus

资金

  1. National Natural Science Foundation of China [22004034]
  2. Natural Science Foundation of Hunan Province (China) [2020JJ5226, 2020JJ4346]
  3. Scientific Research Foundation of Hunan Provincial Education Department (China) [19C0905, 20K063]
  4. Foundation of Hunan Provincial Key Laboratory of Crop Germplasm Innovation and Resource Utilization [18KFXM09]
  5. Science Foundation of Hunan Agricultural University [540499818007, 18QN03]
  6. Foundation of key Laboratory of Jiangxi Province for Persistent Pollutants Control and Resources Recycle [ES202180064]

向作者/读者索取更多资源

A sensitive electrochemical immunosensor based on Zn-MOF has been developed for detecting foot-and-mouth disease virus (FMDV), with a low detection limit and good selectivity, reproducibility, and stability. The method of in situ growth of CdS nanocrystalline on a Zn-MOF device structure opens up new possibilities for future optoelectronic applications.
The integration of cadmium sulfide (CdS) and metal organic frameworks (MOFs) has shown promise in applications such as photocatalysis and sensing. Herein, a sensitive electrochemical immunosensor based on a room temperature, simple and fast aqueous synthetic strategy of in-situ selective growth nanocystalline CdS on zinc metal organic framework (CdS@Zn-MOF) is reported. We investigated the possibility of growth CdS on various MOFs, synthesizing by electrosynthesis or solution phase syntheses with different metal ions (e.g. Zn2+, Cu2+, Fe3+, Co2+, Zr4+) and organic ligands (e.g. 1,3,5-benzenetricarboxylic acid, 2-methylimidazole, 1,4-benzenedicarboxylic acid, 2-aminoterephthalic acid). This simple experiment process proved that CdS nanocrystalline can selectively grow on varied structures Zn-MOFs with different organic ligands. The synthesis, characterization and mechanisms involved in the formation of this composite material was explored carefully and thoroughly. The unique properties of this composite presented a promising photoelectrochemical and electrochemical applications. Therefore, a sensitive Zn-MOF-labeled amperometric immunosensor based on this strategy for the detection of foot-and-mouth disease virus (FMDV) was developed. The logarithm FMDV concentration was range from 0.5 fg mL(-1) to 5 ng mL(-1) with a low detection limit of 0.05 fg mL(-1). Moreover, this proposed sensor with good selectivity, acceptable reproducibility, and stability was successfully applied to detect FMDV in actual blood sample. Furthermore, this method of growth the CdS nanocrystalline in situ on a Zn-MOF device structure or platform also provides a new horizon for future optoelectronic applications.

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