Conference Tracks

Tracks spanning graphene, nanotubes, 2D crystals and nanodevices

The scientific programme is organised into focused tracks. Submit your abstract to the track that best fits your work.

01

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
02

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
03

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
04

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
05

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
06

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
07

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
08

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
09

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
10

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
11

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
12

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
13

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
14

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
15

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
16

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
17

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
18

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
19

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
20

Environmental and Water Applications

Nanomaterial-enabled remediation, purification and sustainable environmental technologies.

  • ▸Membranes and Filtration
  • ▸Pollutant Adsorption and Degradation
  • ▸Environmental Fate and Safety
21

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
22

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
23

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
24

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
25

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
26

Surface Functionalization and Interface Chemistry

Chemical modification strategies for tuning dispersibility, compatibility and performance.

  • ▸Covalent Functionalization
  • ▸Non-Covalent Assembly
  • ▸Interface Engineering in Devices
27

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
28

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
29

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
30

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
Call for Papers

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March 10–12, 2027 · Amsterdam

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