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ABSTRACT SUBMISSION

Deadline for Abstract Submission October 15, 2025

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Select Symposium Session

16th Ceramics Congress


CA-1 - Advances in powder synthesis and processing
CA-2 - Advanced molecular-level processing of functional nanomaterials
CA-3 - Polymer-derived ceramics
CA-4 - Microwave processing
CA-5 - Novel sintering approaches - Spark Plasma, Flash Sintering, Laser Sintering, Cold Sintering
CA-6 - Inorganic Functionally Graded Materials
CA-7 - SHS ceramics
CA-8 - The glass ceramics route
CA-9 - Bio-inspired and bio-enabled processing
CA-10 - Other special processing routes
CB-1 - Recent advances in additive manufacturing technologies for ceramics, glasses and composites
CB-2 - New additive manufacturing approaches, including multi-material and hybrid printing technologies
CB-3 - Development of novel feedstock formulations
CB-4 - Characterization of printed ceramics
CB-5 - Novel applications and validation of AM ceramic components
CB-6 - Design for AM
CC-1 - Interface science for integration of inorganic materials
CC-2 - Innovations in joining methods and materials
CC-3 - Engineering applications 
CD-1 - Thin film deposition techniques and film growth
CD-2 - Multifunctional thin films and coatings
CD-3 - Hard and wear-resistant coatings
CD-4 - Protective coatings in oxidizing, high-temperature, and harsh environments
CE-1 - Novel processing, microstructural and morphological control of porous ceramics, synthesis of porous ceramics (nano to macro), including Additive Manufacturing
CE-2 - Adsorption, capillary phenomena, molecular thermodynamics of fluids and intermolecular interactions within the porous network
CE-3 - Structure and functional, mechanical and thermal properties of porous ceramics; structure/transport/functional properties relationships
CE-4 - Advances in the characterization of the porous structure (adsorption and intrusion porosimetry, thermophotometry, high resolution microscopy, image analysis, scattering techniques, computed tomography, etc.)
CE-5 - Modeling and simulation of porous structure and properties
CE-6 - Progress in applications of porous ceramics
CF-1 - Synthesis and processing
CF-2 - Corrosion, oxidation, and testing
CF-3 - Mechanical, thermal and optical properties
CF-4 - Characterization, analysis, and simulation
CG-1 - Process development and advanced manufacturing
CG-2 - Mechanical properties, performance and applications
CG-3 - Functional properties and applications
CG-4 - Theoretical and computational studies
CH-1 - Synthesis and structure, morphology and chemistry of MXenes and their composites and hybrids
CH-2 - Property characterization 
CH-3 - Applications
CH-4 - Theory, computational modelling, data science and new directions for MXenes
CI-1 - Innovative nano- and heterostructured functional materials for renewable energy applications
CI-2 - Recent developments in photoactive materials 
CI-3 - Green hydrogen production, storage and utilization
CJ-1 - Synthesis, processing and microstructure
CJ-2 - Properties
CJ-3 - Structural and functional applications
CK-1 - Dielectrics and microwave materials
CK-2 - Ferroelectric, piezoelectric, pyroelectric, and ferroelastic ceramics
CK-3 - Thermoelectric ceramics
CK-4 - Caloric ceramics
CK-5 - Semiconducting and fast ion-conducting ceramics
CK-6.1 - Theory and modeling of single phase and composite multiferroics
CK-6.2 - Non-oxide, organic-inorganic and 5-d oxide multiferroics
CK-6.3 - Advances in materials synthesis and processing
CK-6.4 - Multiferroic nanostructures, self-assembly and nanocomposites
CK-6.5 - Magnetoelectric characterization and electric field control of magnetization
CK-6.6 - Domain walls and dynamics of multiferroics
CK-6.7 - New effects
CK-6.8 - Devices and applications
CL-1 - Fundamentals
CL-2 - Material design and device development
CL-3 - Applications
CM-1 - Photonic nanomaterials and nanostructures for photonics and energy
CM-2 - Luminescent and chromogenic ceramics and glass systems
CM-3 - Electro-optical magneto-optical and piezoelectric materials
CM-4 - Laser materials
CM-5 - Inorganic optical fibers
CM-6 - Photons management
CM-7 - Advances in fabrication and characterization techniques
CM-8 - Ongoing applications and forecasts
CN-1 - Green and sustainable silicate ceramics
CN-2 - Glasses, glazes and pigments
CN-3 - Innovative processing
CO-1 - Raw materials
CO-2 - Product testing and quality control
CO-3 - Specialized refractory applications
CO-4 - Modelling and simulation of the process and materials
CO-5 - Refractory failure analysis
CO-6 - Refractory materials for novel or advanced applications
CO-7 - Refractory education needs (producers, end-users and academia)
CO-8 - Refractory materials and manufacturing process changes related to global decarbonization
IC-1.A - Production and properties of reinforcements, preforms, and matrix materials
IC-1.B - Interfaces / Interphase
IC-1.C - Processing and fabrication of MMCS, CMCS, and C/C composites
IC-1.D - Ultrahigh Temperature Ceramic Composites (UHTCCs) and Laminated Composite Structures
IC-1.E - Property, modeling and characterization
IC-1.F - Composites for thermal management 
IC-1.G - Applications
IC-2 - 10th International Conference
Science and Engineering of Novel Superconductors
IC-2.A - Structure, dimensionality, physical chemistry and general properties
IC-2.B - Properties of superconductors (of any type)
IC-2.C - Mechanisms (for normal and superconducting states)
IC-2.D - Vortex lattice physics
IC-2.E - Synthesis and processing
IC-2.F - Power applications
IC-2.G - Low-power applications and superconducting electronics
IC-2.H - Topological Superconductivity & Spin-Orbit Effects
IC-2.I - Superconductivity in two-dimensional and layered materials
IC-3.A - Advances in biomaterials: synthesis, processing, characterization, functionalization, finalization
IC-3.B - Regenerative engineering and translational medicine
IC-3.C - New therapeutics and intelligent drug/biomolecule/gene delivery systems
IC-3.D - Bio-imaging and theranostics
IC-3.E - Clinical translations
Special Session IC-3.F - State-of-the-art Biomaterials and Bioelectronics for Next Generation Implantable Neural Interfaces


10th Forum on New Materials


FA-1 - Advances in intermediate and high temperature structural materials: stainless steels, CSEF steels, ODS alloys, superalloy, intermetallics, aluminides, oxide and non-oxide ceramics, ceramic-or-metal-matrix composites, other emerging materials
FA-2 - Membranes for oxygen separation; Adsorbents for CO2 capture
FA-3 - Joining; Coatings (metallic, TBC, EBC) and claddings; Repair
FA-4 - Damage mechanisms and properties: creep, fatigue, oxidation, corrosion, erosion, wear…
FA-5 - New designs and advanced manufacturing routes for components
FA-6 - Reliability and in-service performance  
FA-7 - Improved or new materials. Materials to enable fuel flexibility. Injector systems
FA-8 - Catalysts for water-gas shift and catalysts for fuel production
FA-9 - Membranes for H2 separation and CO2 selective membranes
FA-10 - High temperature seals for membrane moduli assembly
FA-11 - High temperature corrosion-resistant gas sensors
FA-12 - Component lifetime, in-service performance, case studies
FB-1 - Pre-combustion
FB-2 - During-combustion
FB-3 - Post-combustion
FB-4 - Direct air capture  
FB-5 - Catalytic conversion
FB-6 - Photocatalytic conversion
FB-7 - Electrochemical and photo electrochemical conversion
FB-8 - Photo-thermal and photochemical conversion 
FB-9 - Bioconversion 
FB-10 - CO2 mineralization
FC-1 - Fossil fuel reforming
FC-2 - Biomass gasification
FC-3 - Advanced coal gasification
FC-4 - Photocatalysis and photoelectrochemistry
FC-5 - Thermochemical water splitting
FC-6 - Renewable electrolysis
FC-7 - High-temperature electrolysis and hybrid cycles
FC-8 - Photobiological and photo-biomimetic
FC-9 - System design and market/environmental considerations  
FC-10 - Gaseous and cryogenic storage
FC-11 - Compression and liquefaction
FC-12 - Metal hydrides
FC-13 - Complex hydrides
FC-14 - Chemical hydrides and liquid carriers
FC-15 - High surface-area sorbent materials
FC-16 - Tank design, safety and market considerations
FD-1 - Solid Oxide Fuel Cells (SOFCs) and Electrolysers (SOECs)
FD-2 - Proton-conducting Polymer Electrolyte Membrane Fuel Cells (PEMFCs) and Electrolysers (PEMWEs)
FD-3 - Alkaline and Anion-Excahnge Electrolyte Membrane Fuel Cells (AFCs, AEMFCs) and Electrolysers (AELs, AEMWEs)
FD-4 - Direct Fuel Cells & e-Fuels production
FD-5 - State-of-the-art application engineering and demonstrations
FE-1 - Batteries
FE-2 - Supercapacitors
FF-1 - Thin-film photovoltaics
FF-2 - III-V solar cells
FF-3 - Organic, dye sensitised and nanoparticle phovoltaics
FF-4 - Multiple energy level devices
FF-5 - Excited state enhanced solar cells
FF-6 - Advanced light trapping for photovoltaic devices
Special Session FF-7 - State-of-the Art Development of Concentrated Photovoltaics
FG-1 - Development of new/ improved TES media; thermal, physical and chemical properties and performance optimization; advances in methods for testing and characterization for:
FG-2 - Nano, -micro- and-macro encapsulation methods
FG-3 - Kinetics of reactions, reversibility, cycle repeatability, energy density and heat transfer processes in solid-gas, solid-liquid, solid-solid and liquid-gas systems
FG-4 - Selection criteria for TES media and for structural and containment materials such as tanks and pipelines working in extreme environments
FG-5 - Multiscale modelling, numerical models, experimental validations
FG-6 - Relevant-scale prototyping for sensible, latent and thermochemical storage
FG-7 - TES in renewable energy systems
FG-8 - TES in buildings
FG-9 - TES in industry
FG-10 - Novel thermal energy storage concepts and expected trends
FH-1 - Developments in concentrators and heat collecting elements
FH-2 - Thermal energy storage materials, media and systems
FH-3 - Solar production of hydrogen, fuels and chemicals
FH-4 - Solar thermal methods and materials for decarbonization of industrial processes
FH-5 - Computational modelling and high throughput data screening of novel structural and functional materials for CST technology
FH-6 - Advanced in-situ and ex-situ testing of materials and components (mechanical, thermal, optical, corrosion, stability, durability, aging…)
FH-7 - CST prospects in a rapid changing and competitive energy world
FI-1 - New materials synthesis, membrane processing and shaping, characterization
FI-2 - Physical chemistry of membranes
FI-3 - Membranes and separators in electrochemical energy systems (fuel cell, electrolyser, battery...)
FI-4 - Membranes for gas separation and toward production of synthetic fuels (CO2, H2, NH3…)
FI-5 - Water purification and desalination membranes
FI-6 - Catalytic membranes
FI-7 - Membrane actuators
FJ-1 - Advanced concepts for the design of photo/electro-functional materials
FJ-2 - Understanding fundaments of charge-induced processes and charge transport
FJ-3 - Design approaches for advanced applications
FK-1 - Thermoelectric materials research & characterization
FK-2 - Device research and modeling
FK-3 - Converter technologies and applications
FL-1 - Theory, simulation and modeling of caloric materials
FL-2 - Preparation and characterization of caloric materials (bulk, nanostructured, composites)
FL-3 - Functional characterization of caloric materials
FL-4 - Devices for solid state refrigeration, heat pumps and other energy related applications
FM-1 - Mechanism of triboelectrification and piezoelectric effects
FM-2 - High-entropy energy harvesting materials
FM-3 - Nanogenerators and self-powered systems: processing (deposition, surface modification, patterning, soft and flexible technologies); nanogenerators/energy storage units’ hybridization; electrical circuits for power management: energy harvesting and conversion efficiency
FM-4 - Cutting-edge applications
FN-1 - Material design and processing 
FN-2 - Processes for optoelectronic and photonic applications 
FN-3 - Characterization of electro-optical-structural properties
FN-4 - Device architectures and system integration
FO-1 - Electrochemical energy conversion/storage and fuel cells
FO-2 - Gas production/capture/separation/storage/ utilization (e.g CO2, H2)
FO-3 - Solar technologies (photovoltaics, solar thermal, solar fuels)
FO-4 - Thermal energy storage
FO-5 - Small scale energy harvesting, nanogenerators, self-powered devices
FO-6 - Thermoelectric and caloric systems
FO-7 - Nuclear technologies (fission, fusion, waste management)
FO-8 - High and low-power superconductivity and energy-efficient unconventional information technologies (e.g. novel materials for neuromorphic and quantum computing)
FP-1 - Solar technologies (photovoltaics, solar fuels, solar thermal)
FP-2 - Electrochemical energy systems (batteries, supercapacitors, fuel cells)
FP-3 - Catalysts for energy conversion and storage
FP-4 - Materials for production, capture, separation, storage, and utilization of gases
FP-5 - Thermal energy storage
FP-6 - Thermoelectrics, energy harvesting materials and nanogenerators
FP-7 - Permanent magnets for electric generators and motors
FP-8 - Nuclear materials for fission and fusion: fuels, plants, and waste
FP-9 - Data science and artificial intelligence for materials development
FQ-1 - Chemical and Bio-Sensing Fundamentals and Applications
FQ-2 - Enzyme-free Electrochemical Sensors Based on Hybrid Nanostructures
FQ-3 - Ecofriendly and Natural dyes for Optical Sensing
FQ-4 - Heterostructures-based Sensors for Environmental and Biomedical Applications
FQ-5 - Innovation in Sustainable Materials for Chemical Sensing
FQ-6 - AI - Enhanced Sensing Technologies: Transforming Sensor Capabilities
FR-1 - Classes of materials for electronic devices with biological materials
FR-2 - Biomaterials and their synthesis, structure, chemical modifications and characterizations
FR-3 - Biocatalysts and their applications
FR-4 - Innovative tools for bioremediation and biomedicine
IC-4.A - Advances in memory and memristive technologies for computing: materials synthesis, device fabrication, advanced characterization and modelling
IC-4.B - Devices for neuromorphic and unconventional computing: from devices to applications
IC-4.C - Bioinspired information processing at the edge of biology
IC-5.A - Structural materials for nuclear fission and fusion applications
IC-5.B - Materials for first wall components of nuclear fusion systems
IC-5.C - Functional materials
IC-5.D - Nuclear fuel materials
IC-5.E - Modeling fundamental radiation effects
IC-5.F - Materials modelling and database
IC-5.G - Crosscutting materials issues, present status, challenges and directions for nuclear fission and fusion science and technology
Focused Session IC-5.H - Materials Issues in Radioactive Nuclear Waste Treatment and Disposal

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