1. Introduction (Overview) to Advanced 2D Materials Used in Industry. 2. Advanced Material and Other 2D Materials a Comparative Investigation. 3. Confirmation of Non-Debye character in SmFeO3 doped PbTiO3 characterizing by CIS technique. 4. Characterization techniques used for advanced materials describing physical, mechanical, thermal & biocompatibility properties. 5. Characterization techniques associated with investigation of fundamental properties of advanced material and other 2D materials. 6. Characterization of Non-Debye Behavior and Hopping Mechanism in PbTiO3-NdFeO3 Multiferroic Using Complex Impedance Spectroscopy. 7. Nanoscale Design and Probing of Advanced Materials. 8. Investigation associated with graphene oxide related to biotechnology and medicine for cancer treatment. 9. Advanced 2D Material-based Miniaturized Devices for Biomedical Applications. 10. Advanced Materials Synthesis by Top-Down Approach and Bottom-Up Approaches. 11. Challenges and Advances in 2d Materials Production and Its Characterization.
Advanced Materials: Production, Characterization and Multidisciplinary Applications is focused on novel approaches for production of graphene and other 2D materials along with characterization techniques, discussing a wide range of applications in multidisciplinary areas of science and engineering.
Advanced materials are engineered to exhibit novel properties that confer superior performance in comparison with conventional materials. The performance of advanced materials is associated with toughness, hardness, and durability that can be used for high technological applications such as semiconductors, biomaterials, smart materials, or nanomaterials.
Advanced Materials: Production, Characterization and Multidisciplinary Applications is focused on novel approaches for production of graphene and other 2D materials along with characterization techlĂ(