Hybrid Phosphates for Therapeutics and Optics

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Bol This book explores the development of hybrid phosphates as multifunctional materials bridging structural chemistry, drug design, and optics. Beginning with a comprehensive classification of organic-inorganic hybrids, it introduces the principles of crystallography and their role in understanding structure-property relationships. Detailed case studies highlight the synthesis and characterization of organophosphate single crystals, including advanced techniques such as SCXRD, SEM/EDX, Hirshfeld surface analysis, and spectroscopic methods. Computational approaches, molecular orbital analysis, density of states, electrostatic potential mapping, and docking simulations are presented to reveal electronic structure, intermolecular interactions, and potential biological activity. The book further examines dielectric and optical properties, antifungal activity, and structure-guided therapeutic applications. By combining crystallographic insights, theoretical modeling, and experimental studies, this volume provides a unique resource for researchers in materials science, crystallography, and pharmaceutical chemistry seeking to exploit hybrid phosphates for therapeutic and optical innovations.

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This book explores the development of hybrid phosphates as multifunctional materials bridging structural chemistry, drug design, and optics. Beginning with a comprehensive classification of organic-inorganic hybrids, it introduces the principles of crystallography and their role in understanding structure-property relationships. Detailed case studies highlight the synthesis and characterization of organophosphate single crystals, including advanced techniques such as SCXRD, SEM/EDX, Hirshfeld surface analysis, and spectroscopic methods. Computational approaches, molecular orbital analysis, density of states, electrostatic potential mapping, and docking simulations are presented to reveal electronic structure, intermolecular interactions, and potential biological activity. The book further examines dielectric and optical properties, antifungal activity, and structure-guided therapeutic applications. By combining crystallographic insights, theoretical modeling, and experimental studies, this volume provides a unique resource for researchers in materials science, crystallography, and pharmaceutical chemistry seeking to exploit hybrid phosphates for therapeutic and optical innovations.


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