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Öğe Phytochemicals/Plant Extracts as Corrosion Inhibitors for Magnesium in H2SO4Solutions(CRC Press, 2024) Berdimuradov, Khasan; Kholikov, Abduvali; Akbarov, Khamdam; Berdimurodov, Elyor; Ibrahimi, Brahim El; Tuzun, Burak; Es-Soufi, HichamThis chapter provides a comprehensive overview of utilizing phytochemicals and plant extracts as green, sustainable corrosion inhibitors for magnesium metal in contact with sulfuric acid (H2SO4) solutions. It begins by highlighting the importance of effective corrosion inhibition for magnesium alloys across industrial applications. The role of phytochemicals as corrosion inhibitors is then discussed, including their extraction from plant sources, adsorption mechanisms, structural effects, and comparative advantages over traditional inhibitors. Key topics covered include phytochemical characterization techniques, quantitative structure–activity relationship modeling, optimization strategies, case studies demonstrating their inhibition efficacy, and challenges associated with their large-scale production and application. The environmental and economic benefits of phytochemicals over conventional inhibitors are emphasized. This chapter concludes by underscoring the promise of phytochemicals as an emerging alternative for efficient and eco-friendly corrosion protection of magnesium alloys in acidic conditions across industries. © 2024 selection and editorial matter, Chandrabhan Verma, Ashish Kumar, and Abhinay Thakur; individual chapters, the contributors. All rights reserved.Öğe Utilization of Encapsulated Corrosion Inhibitors in the Biomedical Industry(CRC Press, 2024) Berdimuradov, Khasan; Berdimurodov, Elyor; Brahim, El Ibrahimi; Tuzun, Burak; Es-Soufi, Hicham; Mallick, Sadhucharan; Borikhonov, BakhtiyorEncapsulated corrosion inhibitors have garnered significant interest as a means to improve the corrosion protection of biomedical devices and materials. These systems encapsulate corrosion inhibitors within protective matrices, providing enhanced corrosion protection, controlled release and targeted delivery, and improved biocompatibility. This chapter discusses the release mechanisms of encapsulated corrosion inhibitors, including passive and stimuli-responsive mechanisms, and factors affecting their release from encapsulation systems. The advantages and challenges of encapsulated corrosion inhibitors in biomedical applications are also explored, along with emerging trends, technologies, and potential research directions. Encapsulated corrosion inhibitors hold great promise for enhancing the performance, longevity, and biocompatibility of biomedical devices and materials, but further research and development are required to fully exploit their potential in practical applications. © 2025 selection and editorial matter, Ashish Kumar and Abhinay Thakur.