AI Article Synopsis

  • - The study investigates the creation of Ni-based composite electrochemical coatings (CECs) enhanced with multilayer graphene oxide (GO) through microwave processing, focusing on their electrodeposition and structural characteristics.
  • - Analysis using X-ray and scanning electron microscopy shows that incorporating GO leads to fine-grained coatings, resulting in a significant increase in microhardness—1.40 times greater than nickel without GO.
  • - The corrosion resistance of nickel CECs was tested in a 0.5 M HSO solution, revealing that the modified coatings exhibit a corrosion rate approximately 1.70 times lower than the unmodified versions, attributed to the even distribution of GO and its impermeability to corrosive substances.

Article Abstract

Within the framework of this study, Ni-based composite electrochemical coatings (CECs) modified with multilayer graphene oxide (GO) processed using microwave radiation have been deposited. The process of these coatings' electrodeposition in the potentiodynamic mode has been studied. The structure of Ni-GO and Ni-GO (MW) CECs has been studied using X-ray phase analysis (XPA) and scanning electron microscopy (SEM).It has been shown that the addition of GO into a nickel deposit contributes to the formation of uniform fine-grained coatings. As a result, the microhardness of the Ni-GO (MW) CECs increases by 1.40 times compared to Ni without GO. The corrosion-electrochemical behavior of nickel CECs in 0.5 M HSO solution was researched. It was established that the corrosion rate of the nickel-GO (MW) CEC in 3.5% NaCl decreases by about 1.70 times in contrast to unmodified nickel coatings. This effect is due to the absence of agglomeration of the graphene oxide in the volume of the nickel matrix and the impermeability of GO particles to the corrosive environment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10537176PMC
http://dx.doi.org/10.3390/mi14091747DOI Listing

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