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    BAI Ruyan, ZHANG Shuai, ZHANG Kunlei, LI Delei, ZHANG Xi, LIU Tingzhi, LIU Yi, HU Rong, YANG Yunhui. Study on the Preparation of CRP-Immunosensor Using Pt/COF-LZUI as Immobilization Matrix and Pd NPs/MnO2 as Marker[J]. PHYSICAL TESTING AND CHEMICAL ANALYSIS PART B:CHEMICAL ANALYSIS, 2017, 53(10): 1129-1135. DOI: 10.11973/lhjy-hx201710003
    Citation: BAI Ruyan, ZHANG Shuai, ZHANG Kunlei, LI Delei, ZHANG Xi, LIU Tingzhi, LIU Yi, HU Rong, YANG Yunhui. Study on the Preparation of CRP-Immunosensor Using Pt/COF-LZUI as Immobilization Matrix and Pd NPs/MnO2 as Marker[J]. PHYSICAL TESTING AND CHEMICAL ANALYSIS PART B:CHEMICAL ANALYSIS, 2017, 53(10): 1129-1135. DOI: 10.11973/lhjy-hx201710003

    Study on the Preparation of CRP-Immunosensor Using Pt/COF-LZUI as Immobilization Matrix and Pd NPs/MnO2 as Marker

    • Covalent organic framework material (COF-LZUI) was synthesized by the solvent thermal method and Pt-metal was deposited on it by electrochemical reduction of Pt(Ⅳ) to give Pt/COF-LZUI, which was used as immobilization matrix for CRP. Nanoparticles of MnO2, composite nanoparticles of Pd NPs/MnO2 and Pd NPs/MnO2 marked CRP were prepared separately as described in literatures. The above mentioned materials were used to modify GCE giving the sandwich immunosensor for CRP as specified in the procedure of preparation. The structure and crystallization of COF-LZUI were characterized by MAS NMR and XRD, and the morphology of COF-LZUl, Pt/COF-LZUl, Pd NPs/MnO2 nano-composites were characterized by TEM. Its electrochemical behavior and response to H2O2 were studied by cyclic voltammetry and chronoamperometry (i-t). Linearity range of the sensor found was 1-150 μg·L-1 and value of detection limit (3σ) was 0.33 μg·L-1.
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