▎ 摘 要
The present research has focused on introducing a novel carbon nano-filler modified by stable nano-crystals based on Co-based MOF (called ZIF-9). For improving the GO dispersion, the graphene layers were modified with chitosan (CS-rGO) and then decorated with MOF particles. The fabricated hybrid par-ticles' structures were probed by detailed spectroscopic techniques (i.e., XRD, UV-Vis, Raman, and FT-IR) and the morphology was observed by FE-SEM. The zeta potential and UV-Vis/ICP achievements displayed the pH sensitivity of the constructed ZIF-9@CS-rGOs structure. The solution phase electrochemical explo-rations displayed the ZIF-9@CS-rGO nanoparticles' effectiveness in anodic reaction rate mitigation, pro-viding corrosion resistance around 4100 S.cm2 in the best condition (EIS), and the FE-SEM images have proved that a high compact film generation could result in the steel surface damage control in chlo-ride media. The active protection ability of the ZIF-9@CS-rGO/EP scratched composite was explored by EIS approaches and the scratched line morphology was probed by aiding FE-SEM. Outcomes have dis-played that the scratched composite resistance was raised to 89000 S.cm2 after ZIF-9@CS-rGO inclusion and FE-SEM micrographs have displayed sufficient scratched line surface coverage. Also, the intact ZIF-9@CS-rGO/EP composite coating resistance was improved to 26 MS.cm2, confirming the notable EP path-ways blockage after introducing ZIF-9@Cs-rGO nano-filler.(c) 2022 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.