Advanced Nanostructured Thin Films for Biomedical Applications
- 1st Edition - October 1, 2026
- Latest edition
- Editors: Mariana Amorim Fraga, Spandan Maiti, William Chiappim, Patricia L. Schilardi
- Language: English
Advanced Nanostructured Thin Films for Biomedical Applications provides a comprehensive resource for understanding both theoretical first principles and computational modeli… Read more
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- Provides a comprehensive overview of the design, synthesis, first principles studies, computational modeling, and functionalization of nanostructured thin films, including both fundamental principles and advanced techniques
- Explores common challenges such as biocompatibility, stability, and scalability, with strategies and solutions to address these issues
- Describes how nanostructured thin films and self-assembled monolayers (SAMs) are utilized in various biomedical applications
1. Defining the Micro-Nano Scale in Thin Films for Biomedical Applications: Background and Introduction
2. Nanostructured Thin Films: Organic, Inorganic, and Hybrid Materials
3. Synthesis and Fabrication Methods of Nanostructured Thin Films
4. Functionalization Techniques for Nanostructured Thin Films
5. Characterization Methods for Nanostructured Thin Films
6. In Vitro Cytocompatibility Studies of Nanostructured Thin Films for Biomedical Applications
Part II: Biomedical Applications
7. Nanostructured Coatings for Implants
8. Surface Engineering of Thin Films for Biomedical Devices
9. Biomimetics in Thin Film Design
10. Thin-Film Transistors for Wearable Biomedical Devices
Part III: Addressing Challenges
11. Bridging the Gap of Biomedical Thin Films: From Film Research to Clinical Applications
12. Durability and Chemical Resistance of Nanostructured Thin Films
13. Developing Relevant Testing for Biomedical Thin Film Devices
14. Fabrication Challenges of Nanostructured Biomedical Devices
Part IV: Theoretical Studies and Computational Modelling
15. Computational Modelling of Thin Films for Biomedical Applications
16. Theoretical Approaches to Thin Film Fabrication and Processing
Part V: Future Directions and Emerging Trends
17. Metallic Glasses for Biological Applications: Opportunities from Laser Surface Texturing
18. Impact of Silsesquioxane-Containing Ultra-Thin Polymer Films on Metal Oxide Gas Sensors for Biomarker Detection
19. Near-Term Commercial Applications of Nanostructured Thin Films in Biomedicine
20. Emerging Applications of Nanostructured Thin Films as Sensors and Actuators in Biomedical Fields
- Edition: 1
- Latest edition
- Published: October 1, 2026
- Language: English
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Mariana Amorim Fraga
Mariana Amorim Fraga is a Professor in the Electrical Engineering Program, Mackenzie Presbyterian University, São Paulo, Brazil. Her research interests focus mainly on the synthesis and characterization of nanomaterials for the development of sensors, electronic devices, and energy technologies.
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Spandan Maiti
Spandan Maiti is an Associate Professor in the Bioengineering Department and the Mechanical Engineering and Materials Science Department of the University of Pittsburgh, United States. His research is focused on computational biomechanics and biomaterials, and multiscale and multiphysics techniques applied to physical and biological systems.
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William Chiappim
William Chiappim is an Assistant Professor in the Physics Department at Universidade Estadual Paulista Júlio de Mesquita Filho, São Paulo, Brazil. His research centers on the physics of fluids, and the physics of plasmas and electrical discharges.
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