Luminescent Metal Nanoclusters: Synthesis, Characterization, and Applications provides a comprehensive accounting of various protocols used for the synthesis of metal nanoclusters, their characterization techniques, toxicity evaluation and various applications and future prospects. The book provides detailed experimental routes, along with mechanisms on the formation of benign metallic clusters using biomaterials and a comprehensive review regarding the preparation, properties and prospective applications of these nano clusters in various fields, including therapeutic applications. Various…mehr
Luminescent Metal Nanoclusters: Synthesis, Characterization, and Applications provides a comprehensive accounting of various protocols used for the synthesis of metal nanoclusters, their characterization techniques, toxicity evaluation and various applications and future prospects. The book provides detailed experimental routes, along with mechanisms on the formation of benign metallic clusters using biomaterials and a comprehensive review regarding the preparation, properties and prospective applications of these nano clusters in various fields, including therapeutic applications. Various methods to protect nanocluster materials to increase their stability are emphasized, including the incorporation of ligands (protein, small molecule, DNA, thiols).
This book addresses a gap in the current literature by bringing together the preparation, characterization and applications of all the possible types of reported metal nanoclusters and their hybrids. It is suitable for materials scientists and engineers in academia and those working in research and development in industry. It may also be of interest to those working in the interdisciplinary nanotechnology community, such as physical chemists.
Produktdetails
Produktdetails
Woodhead Publishing Series in Electronic and Optical Materials
Dr. Thomas is the Vice-Chancellor and a Professor of Polymer Science and Engineering at Mahatma Gandhi University, India. Additionally, he serves as the Director of the School of Energy Materials at the same institution. Dr. Thomas is internationally recognized for his contributions to polymer science and engineering, covering polymer nanocomposites, elastomers, polymer blends, interpenetrating polymer networks, polymer membranes, green composites, nanocomposites, nanomedicine, and green nanotechnology. His groundbreaking inventions in polymer nanocomposites, polymer blends, green bionanotechnological, and nano-biomedical sciences have significantly contributed to the development of new materials in the automotive, space, housing, and biomedical fields. Dr. Thomas has been conferred with Honoris Causa (DSc) by the University of South Brittany, Lorient, France.
Inhaltsangabe
1. General introduction-luminescent metal nanoclusters 2. Methods of synthesis of metal nanoclusters 3. Analytical tools for the characterization and quantification of metal nanoclusters 4. Mass spectrometry and metal nanoclusters 5. Origin of luminescence of metal nanoclusters 6. General purification methods of metal nanoclusters 7. Phosphine and thiol protected metal nanoclusters 8. Polymer- and dendrimer-protected metal nanoclusters 9. DNA-protected metal nanoclusters 10. Peptide-protected metal nanoclusters 11. Protein and enzyme protected metal nanoclusters 12. Alloy nanoclusters-synthesis methods and structural evaluation 13. Self-assembly of metal nanoclusters in colloid science 14. Applications of metallic nanoclusters in bioimaging 15. Biomarker sensing using luminescent metal nanoclusters 16. Environmental applications of luminescent metal nanoclusters 17. Therapeutic applications of metal nanoclusters 18. Stimuli-responsive metal nanoclusters for targeted drug and gene delivery and their biomedical applications 19. Antimicrobial properties of metal nanoclusters 20. Metal nanoclusters as photosensitizers 21. Metal nanoclusters for catalytic applications: synthesis and characterization 22. Metal nanoclusters for energy storage applications 23. Bioavailability, biodistribution, and toxicity of fluorescent metal nanoclusters 24. Luminescent Metal Nanoclusters: Summary and future outlook
1. General introduction-luminescent metal nanoclusters 2. Methods of synthesis of metal nanoclusters 3. Analytical tools for the characterization and quantification of metal nanoclusters 4. Mass spectrometry and metal nanoclusters 5. Origin of luminescence of metal nanoclusters 6. General purification methods of metal nanoclusters 7. Phosphine and thiol protected metal nanoclusters 8. Polymer- and dendrimer-protected metal nanoclusters 9. DNA-protected metal nanoclusters 10. Peptide-protected metal nanoclusters 11. Protein and enzyme protected metal nanoclusters 12. Alloy nanoclusters-synthesis methods and structural evaluation 13. Self-assembly of metal nanoclusters in colloid science 14. Applications of metallic nanoclusters in bioimaging 15. Biomarker sensing using luminescent metal nanoclusters 16. Environmental applications of luminescent metal nanoclusters 17. Therapeutic applications of metal nanoclusters 18. Stimuli-responsive metal nanoclusters for targeted drug and gene delivery and their biomedical applications 19. Antimicrobial properties of metal nanoclusters 20. Metal nanoclusters as photosensitizers 21. Metal nanoclusters for catalytic applications: synthesis and characterization 22. Metal nanoclusters for energy storage applications 23. Bioavailability, biodistribution, and toxicity of fluorescent metal nanoclusters 24. Luminescent Metal Nanoclusters: Summary and future outlook
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