Hydrophilic Metal Chelates: The Future of Multifunctional Therapeutics: Revolutionizing Biomedical Materials: Development some Schiff Base Complexes with Multitherapeutic Power

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Bol Unlocking the power of smart molecular design, this study unveils a new generation of hydrophilic Schiff base metal complexes with extraordinary biomedical potential. Engineered through sustainable synthesis, these Cu(II), Fe(III), VO(II), and Pd(II) complexes combine structural precision, stability, and bioactivity in one versatile platform. Advanced spectroscopic, thermal, and DFT analyses confirm their tailored architectures and strong coordination behavior, while biological screening reveals exceptional antimicrobial, antioxidant, and anticancer properties-with Pd(II) complexes emerging as standout performers. Backed by DNA-binding and molecular docking studies, these multifunctional materials promise to revolutionize future therapeutic, diagnostic, and catalytic applications. Merging computational intelligence with green chemistry, this research opens new horizons for next-generation metallodrugs and biocompatible materials designed for performance, precision, and impact.

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Unlocking the power of smart molecular design, this study unveils a new generation of hydrophilic Schiff base metal complexes with extraordinary biomedical potential. Engineered through sustainable synthesis, these Cu(II), Fe(III), VO(II), and Pd(II) complexes combine structural precision, stability, and bioactivity in one versatile platform. Advanced spectroscopic, thermal, and DFT analyses confirm their tailored architectures and strong coordination behavior, while biological screening reveals exceptional antimicrobial, antioxidant, and anticancer properties-with Pd(II) complexes emerging as standout performers. Backed by DNA-binding and molecular docking studies, these multifunctional materials promise to revolutionize future therapeutic, diagnostic, and catalytic applications. Merging computational intelligence with green chemistry, this research opens new horizons for next-generation metallodrugs and biocompatible materials designed for performance, precision, and impact.

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Pagina's: 292, Paperback, LAP LAMBERT Academic Publishing


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Merk LAP LAMBERT Academic Publishing
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  • 9786209404986
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