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Metamaterials
The Office of Naval Research's Metamaterials program supports basic research on optical and acoustic metamaterials to control light and sound propagation over a large frequency range.
Computer-Aided Materials Design (CAMD)
The Office of Naval Research's Computer-Aided Materials Design (CAMD) program funds research projects in materials design.
Materials & Processes for Additive Manufacturing
The Office of Naval Research's Materials & Processes for Additive Manufacturing (AM) program is focused on exploring new and novel approaches in developing and understanding AM materials and manufacturing processes for naval applications.
Extraordinary Materials for Extreme Conditions
The Office of Naval Research's Extraordinary Materials for Extreme Conditions program aims to support basic and applied research efforts to design, discover and develop novel materials/structures with unique properties (Physical, Mechanical and Chemical etc.) for extreme operating conditions through employing traditional as well as novel - synthesis routes, processing, characterization techniques and modeling/simulation tools.
Electrochemical Materials
The Office of Naval Research's Electrochemical Materials program is focused on developing a fundamental understanding of charge (electron and ion) storage, transport and transfer mechanisms, and applying that knowledge to inform the development of materials, materials architectures and devices that address Navy and Marine Corps application power and energy needs.
Dielectric Materials and Films
Dielectric Films for Capacitors is an Office of Naval Research program.
Functional Polymeric and Organic Materials
The Office of Naval Research's Functional Polymeric and Organic Materials program is focused on exploring the inherent strengths/properties of organic and polymeric materials to bring new capability to the Navy.
Organic Photovoltaics
The Organic Photovoltaics program is part of the Office of Naval Research's Sea Warfare and Weapons Department.
Polymer Matrix Composites (PMC)
The Office of Naval Research's Polymer Matrix Composites (PMC) program has invested significantly in developing new structural fibers with better thermo-oxidative resistance, new non-toxic resins systems and sandwich cores with enhanced resistance to fire and its propagation, new additives to improve PMC inter-laminar properties, and new resin infusion models and processing tools for improving product quality and lowering manufacturing costs.
Propulsion Materials
The Office of Naval Research's Propulsion Materials program involves, in part, the kinetics and thermodynamics of materials interactions and materials stability under marine operating environments and temperatures.