Graphene Synthesis and Scale-Up
Methods for producing high-quality graphene and graphene derivatives from lab to pilot scale.
- ▸CVD Growth and Transfer
- ▸Liquid-Phase Exfoliation
- ▸Graphene Oxide and Reduced Graphene Oxide
Carbon Nanotubes and One-Dimensional Carbon
Fundamentals, processing and applications of single- and multi-walled carbon nanotubes.
- ▸CNT Growth and Chirality Control
- ▸CNT Fibers, Films and Yarns
- ▸Dispersion and Functionalization
MXenes and 2D Carbides/Nitrides
Synthesis, surface chemistry, stability and device integration of MXenes and related 2D phases.
- ▸Etching and Delamination Routes
- ▸Surface Terminations and Chemistry
- ▸MXene Films and Heterostructures
Transition Metal Dichalcogenides
Electronic, optical and catalytic properties of MoS2, WS2, WSe2 and related 2D semiconductors.
- ▸Monolayer Growth and Phase Control
- ▸Excitons, Valley Physics and Photonics
- ▸TMD Devices and Contacts
Diamond, Nanodiamond and sp3 Carbon
Advanced diamond and nanodiamond materials for quantum, biomedical, thermal and mechanical uses.
- ▸CVD Diamond Films
- ▸Nanodiamond Functionalization
- ▸Color Centers and Quantum Applications
Fullerenes, Carbon Dots and Molecular Carbon
Small carbon nanostructures with tunable optical, electronic and chemical properties.
- ▸Carbon Dots and Photoluminescence
- ▸Fullerene Chemistry and Devices
- ▸Molecular Carbon Architectures
2D Heterostructures and van der Waals Assembly
Design and fabrication of stacked, twisted and hybrid 2D material systems.
- ▸Twistronics and Moiré Materials
- ▸Vertical and Lateral Heterostructures
- ▸Transfer, Alignment and Encapsulation
Defect Engineering and Doping
Intentional defects, dopants and strain as tools for tailoring nanoscale material behavior.
- ▸Vacancies, Edges and Grain Boundaries
- ▸Heteroatom Doping
- ▸Strain and Lattice Engineering
Advanced Characterization of Nanomaterials
Microscopy, spectroscopy and in situ methods for understanding structure-property relationships.
- ▸Electron Microscopy and Atomic Imaging
- ▸Raman, XPS and Optical Spectroscopy
- ▸In Situ and Operando Characterization
Computational Design and Materials Informatics
Theory, simulation and data-driven methods for carbon and 2D material discovery.
- ▸DFT and Atomistic Modeling
- ▸Molecular Dynamics and Multiscale Models
- ▸AI-Guided Materials Discovery
Energy Storage: Batteries and Supercapacitors
Carbon, nanomaterial and 2D electrodes for high-performance electrochemical storage.
- ▸Lithium, Sodium and Multivalent Batteries
- ▸Supercapacitors and Hybrid Capacitors
- ▸Flexible and Structural Energy Storage
Catalysis and Electrocatalysis
Nanostructured catalysts for clean energy conversion and chemical production.
- ▸Hydrogen Evolution and Oxygen Reactions
- ▸CO2 Reduction and Nitrogen Chemistry
- ▸Single-Atom and Dual-Atom Catalysts
Sensors and Biosensors
Chemical, biological and physical sensors enabled by high-surface-area nanomaterials.
- ▸Gas and Environmental Sensors
- ▸Biointerfaces and Diagnostic Platforms
- ▸Wearable and Flexible Sensors
Flexible, Printed and Wearable Electronics
Solution-processable carbon and 2D inks for next-generation electronic systems.
- ▸Conductive Inks and Coatings
- ▸Stretchable Interconnects and Electrodes
- ▸Wearable Device Integration
Nanoelectronics and Devices
Device physics and fabrication strategies for low-dimensional electronic components.
- ▸2D Transistors and Logic
- ▸Memristors and Neuromorphic Devices
- ▸Interconnects and Thermal Management
Photonics and Optoelectronics
Light emission, detection and modulation using carbon and atomically thin materials.
- ▸Photodetectors and Image Sensors
- ▸Light Emitters and Quantum Emitters
- ▸Plasmonics and Nonlinear Optics
Thermal Transport and Heat Management
High-conductivity and thermal-interface materials for electronics, aerospace and energy systems.
- ▸Graphene and CNT Thermal Interfaces
- ▸Phonon Engineering in 2D Materials
- ▸Thermoelectric Nanomaterials
Structural Composites and Lightweight Materials
Reinforced polymers, ceramics and metals using carbon and 2D nanofillers.
- ▸Polymer Nanocomposites
- ▸Ceramic and Metal Matrix Composites
- ▸Damage, Fatigue and Durability
Porous Carbons and Adsorbent Materials
Activated carbons, carbon aerogels and porous frameworks for separation and storage.
- ▸Activated Carbons and Biochars
- ▸Carbon Aerogels and Foams
- ▸Gas Capture and Separation
Environmental and Water Applications
Nanomaterial-enabled remediation, purification and sustainable environmental technologies.
- ▸Membranes and Filtration
- ▸Pollutant Adsorption and Degradation
- ▸Environmental Fate and Safety
Biomedical and Health Applications
Carbon and 2D nanomaterials for imaging, therapy, diagnostics and biointerfaces.
- ▸Drug Delivery and Therapeutics
- ▸Bioimaging and Diagnostic Nanoprobes
- ▸Biocompatibility and Nanotoxicology
Sustainable Manufacturing and Green Chemistry
Lower-impact synthesis, processing and circular design of carbon and nanomaterials.
- ▸Low-Waste Synthesis Routes
- ▸Biomass-Derived Carbon Materials
- ▸Recycling and End-of-Life Strategies
Standards, Metrology and Reproducibility
Measurement protocols, reference materials and reporting practices for reliable research.
- ▸Material Classification and Nomenclature
- ▸Benchmarking and Round-Robin Testing
- ▸Data Reporting and FAIR Practices
Industrial Translation and Scale-Up
Pathways from research materials to manufacturable products and commercial applications.
- ▸Pilot Production and Quality Control
- ▸Application Readiness and Reliability
- ▸Techno-Economic Assessment
Safety, Ethics and Responsible Innovation
Safe development, governance and societal considerations for advanced nanomaterials.
- ▸Occupational Exposure and Handling
- ▸Risk Assessment and Regulation
- ▸Responsible Innovation and Public Trust
Surface Functionalization and Interface Chemistry
Chemical modification strategies for tuning dispersibility, compatibility and performance.
- ▸Covalent Functionalization
- ▸Non-Covalent Assembly
- ▸Interface Engineering in Devices
Magnetic, Spintronic and Topological Materials
Emerging quantum and spin phenomena in carbon-based and 2D material systems.
- ▸2D Magnets and Magnetic Heterostructures
- ▸Spin Transport in Graphene and 2D Systems
- ▸Topological and Correlated Phases
Mechanical Behavior at the Nanoscale
Strength, fracture, friction and deformation of carbon and 2D nanomaterials.
- ▸Nanoscale Fracture and Toughening
- ▸Nanotribology and Lubrication
- ▸Nanoindentation and In Situ Mechanics
Membranes, Separation and Ion Transport
Selective transport through carbon, graphene oxide, MXene and other 2D membranes.
- ▸Ion Sieving and Desalination
- ▸Gas Separation Membranes
- ▸Electrochemical Transport Interfaces
Emerging 2D Materials Beyond Graphene
New families of atomically thin materials and hybrids with novel functions.
- ▸hBN, Phosphorene and Xenes
- ▸MBenes, MOFs and COFs in 2D Form
- ▸Hybrid Organic-Inorganic 2D Materials
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