1. Introduction 1.1 Background of Biocompatible Nanocomposites 1.2 Objective and Scope of Study 1.3 Importance in Advanced Materials Science 2. Fundamentals of Nanocomposites 2.1 Definition and Classification 2.2 Historical Development 2.3 Key Properties and Characteristics 3. Biocompatibility in Materials Science 3.1 Criteria for Biocompatibility 3.2 Testing and Evaluation Methods 3.3 Importance in Biomedical Applications 4. Types of Biocompatible Nanocomposites 4.1 Metal-Based Nanocomposites 4.2 Polymer-Based Nanocomposites 4.3 Carbon-Based Nanocomposites 4.4 Hybrid Nanocomposites 5. Synthesis and Fabrication Techniques 5.1 Chemical Vapor Deposition 5.2 Sol-Gel Process 5.3 Electrospinning 5.4 3D Printing Techniques 6. Applications in Biomedical Fields 6.1 Drug Delivery Systems 6.2 Tissue Engineering Scaffolds 6.3 Biosensors 6.4 Implants and Prosthetics 7. Environmental and Sustainable Considerations 7.1 Lifecycle Analysis of Nanocomposites 7.2 Green Synthesis Methods 7.3 Reduction of Environmental Impact 8. Future Perspectives and Challenges 8.1 Emerging Trends in Research 8.2 Overcoming Technical Barriers 8.3 Potential for Commercialization 8.4 Ethical and Regulatory Concerns
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