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13th Ceramics Congress


CA-1 - Advances in powder synthesis and characterisation
CA-2 - Colloidal processing
CA-3 - Shape forming and consolidation mechanisms
CA-4 - Sintering, grain growth and property / microstructure evolution and characterization
CA-5 - Innovation in fabrication and technology
CB-1 - Solution-based processing
CB-2 - Polymer derived ceramics
CB-3 - Microwave processing
CB-4 - Spark Plasma and Flash Sintering
CB-5 - Bio-inspired Processing
CB-6 - Solid Freeform Fabrication
CB-7 - Other non traditional or novel routes
Special Session CB-9
SHS Ceramics
CB-9.1 - Analysis and modeling of SHS processes and structure transformation
CB-9.2 - SHS materials and compounds
CB-9.3 - SHS as alternative technology
CB-9.4 - SHS products characterization, application, industrialization, commercialization
CB-9.5 - SHS-coupled processes
CC-1 - Fundamentals of friction, wear, adhesion, and lubrication
CC-2 - Coatings, surface engineering and nanostructuring
CC-3 - Friction and wear at micro/nanoscale
CC-4 - Biotribology
CC-5 - New theory and computer simulations
CC-6 - Testing and characterization
CC-7 - Tribology applications
CD-1 - Basic issues
CD-2 - Macro-joining
CD-3 - Micro-/nano-joining
CD-4 - Application engineering
CE-1 - Innovative processing of nano- and heterostructures and films of functional materials
CE-2 - Functional metal oxide nano- and heterostructures
CE-3 - Functional materials and sustainability
CF-1 - Synthesis and processing
CF-2 - Oxidation, corrosion, and testing
CF-3 - Mechanical and thermal properties
CF-4 - Characterization and analysis
CG-1 - Transport and electronic properties, ab initio calculations and structural characterization of MAX and MXene phases
CG-2 - Room temperature mechanical properties of the MAX phases
CG-3 - High temperature mechanical, oxidation and thermal properties of the MAX phases
CG-4 - Synthesis and fabrication of MAX and MXene phases and composites
CG-5 - Functional properties and applications of the MAX and MXene phases.
CH-1 - Novel processing and synthesis of porous ceramics (nano to macro)
CH-2 - Physics, chemistry structure and properties of porous systems
CH-3 - Advances in the characterization of the porous structure
CH-4 - Modeling and simulation of porous structures and properties
CH-5 - Applications of porous ceramics
CI-1 - Advances in deposition, surface modification and characterisation techniques
CI-2 - High temperature protective coatings in oxidising and harsh environments
CI-3 - Thermal barrier coatings
CI-4 - Tribological thin films and coatings
CI-5 - Smart and multifunctional thin films and coatings
CI-6 - Modelling and simulation of coatings and films
CJ-1 - Dielectrics and microwave materials
CJ-2 - Ferroelectrics, piezoelectrics, pyroelectrics
CJ-3 - Multiferroics *
CJ-4 - Semiconducting ceramics
CJ-5 - Fast ion-conducting ceramics
CJ-6.1 - New piezomaterials systems, film growth, multilayers, heterostructures, characterisation
CJ-6.2 - Microfabrication, device design
CJ-6.3 - Thin film piezoelectric MEMS / NEMS applications
CK-1 - Magnetic oxide thin films interfaces and heterostructures
CK-2 - Electronic structure and correlation effects
CK-3 - Spin transport and interplay between spin, charge and lattice degree of freedom
CK-4 - Multiferroic and magnetoelectric compounds
CK-5 - Coexistence of superconductivity and magnetism, oxides with diluted magnetic moments
CK-6 - Novel synthesis, characterization and application
CL-1 - Optical materials and photonic structures
CL-2 - Advances in characterization techniques
CL-3 - Light management for active applications
CL-4 - Advances in research and applications
CM-1 - Preparation and characterization
CM-2 - Applications
CN-1 - Functionalized surfaces of silicate ceramics
CN-2 - Sustainability of silicate ceramics manufacturing
CN-3 - New products and challanges for silicate ceramics
CN-4 - Managing the complexity of silicate ceramics
CO-1 - Raw materials
CO-2 - Testing
CO-3 - Product development, selection, design and use
CO-4 - System modeling and simulation; failure analysis
CP-1 - Production and properties of reinforcements, preforms, and matrix materials
CP-2 - Interfaces and interphases
CP-3 - Processing and fabrication of MMCS, CMCS, and C/C composites
CP-4 - Ultrahigh Temperature Ceramic Composites (UHTCCs) and Laminated Composite Structures
CP-5 - Property, modeling and characterization
CP-6 - Composites for thermal management. Applications of inorganic fiber composites


6th Forum on New Materials


FA-1 - Solid Oxide (SOFCs) and Molten Carbonate (MCFCs) Fuel Cells
FA-2 - Proton-conducting (PEFCs) and Alkaline (AFCs) Polymer Electrolyte Fuel Cells
FA-3 - State-of-the-art application engineering and demonstrations
Special Session FA-4 - DURAMET Workshop on Direct Alcohol Fuel Cells (DAFCs)
FB-1 - Hydrogen production
FB-2 - Hydrogen storage
FC-1 - Batteries
FC-2 - Supercapacitors
FD-1 - Theoretical concepts and basic approaches for high efficiency thermal-to-electrical energy conversion
FD-2 - Novel materials for high efficiency thermal-to-electrical energy conversion
FD-3 - Devices technologies and applications for thermoelectrics, thermionics, and thermophotovoltaics
FE-1 - Tailored synthesis of nanostructured materials for photofunctional properties
FE-2 - Advances in fundamental mechanism understanding
FE-3 - Design approaches for advanced applications
FF-1 - Hard magnetic materials
FF-2 - Soft magnetic materials
FF-3 - Magnetocaloric and multifunctional magnetic materials
FF-4 - Magnetic devices and components for energy applications
FG-1 - Wafer-based silicon and high-efficiency solar cells
FG-2 - Thin-film photovoltaics
FG-3 - Emerging technologies and new concepts
Special session FG-4 - Building Integrated Photovoltaics
FH-1 - Fundamentals
FH-2 - Material design and characterization
FH-3 - Device development and applications
FI-1 - Material growth and processing
FI-2 - Electro-optical characterization
FI-3 - Device structures and manufacturing
FJ-1 - Structural components for nuclear fission and fusion applications
FJ-2 - Low activation structural materials for nuclear fusion systems
FJ-3 - Materials for first wall components of nuclear fusion systems
FJ-4 - Functional materials
FJ-5 - Nuclear fuel materials
FJ-6 - Radiation effects
FJ-7 - Materials modelling and database
FJ-8 - Crosscutting materials issues for nuclear fission and fusion systems
FJ-9 - Systems integration and interface design and components
FJ-10.1 - Waste form development, including glass, ceramic, and metallic waste forms
FJ-10.2 - Challenging waste constituents, such as actinides, noble metals, and volatile species
FJ-10.3 - Waste form modeling, performance testing, and advanced characterization techniques
FJ-10.4 - Design and operation of waste immobilization facilities, repository design, requirements, and licensing
FK - 5th International Conference
Novel Functional Carbon Nanomaterials
FK-1 - Growth and processing
FK-2 - Structural characterization
FK-3 - Properties
FK-4 - Applications
FL-1 - Mass and charge transport mechanisms
FL-2 - Role of transport in materials development, properties and behaviour
FL-3 - Role of mass and charge transport in application engineering
FM-1 - Resistance switching memories (ReRAM)
FM-2 - Phase change memories (PCM)
FM-3 - Magnetic, ferroelectric and multiferroic materials for memory devices
FM-4 - Memristive materials, devices and emerging applications
FN - 7th International Conference
Science and Engineering of Novel Superconductors
FN-1 - Materials, structure, physical chemistry and general properties
FN-2 - New superconductors of the pnictides and related families
FN-3 - Properties of superconductors (of any type)
FN-4 - Theory and mechanisms ( for normal and superconducting states)
FN-5 - Vortex lattice physics
FN-6 - Synthesis and processing
FN-7 - Applications
FO-1 - Advances in biomaterials
FO-2 - Enabling tools
FO-3 - Medical diagnostics and imaging
FO-4 - Tissue engineering and regenerative medicine
FO-5 - Targeted delivery, controlled release systems and nanotheranostics
FO-6 - Materials for neural interfaces and implantable neural devices
FO-7 - Progress in implant prosteses
FO-8.1 - Shape-memory and shape-changing polymers for biomedical applications
FO-8.2 - Light-sensitive polymers for biomedical applications
FO-8.3 - Smart composites for biomedical applications
FO-8.4 - Biomedical applications based on degradable, stimuli-responsive polymers
FO-8.5 - Smart, swollen systems for biomedical applications
FO-8.6 - Smart polymers in biomedical applications
FO-9.1 - Sensor technology
FO-9.2 - Smart fabrics and wearables
FO-9.3 - Wearable and implantable sensor systems
FO-9-4 - Energy harvesting and management
FO-9.5 - Antennas, data transmission, signal processing

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