10th International Conference on Materials Science and Engineering (MSE 2026)
May 30 ~ 31, 2026, Virtual Conference
Scope & Topics
10th International Conference on Materials Science and Engineering (MSE 2026) offers a premier global platform for researchers, scientists, engineers, and industry professionals to share their latest findings, innovations, and insights across the full spectrum of materials science and engineering. As the field continues to expand rapidly—driven by advances in computation, nanotechnology, energy systems, sustainability, and emerging functional materials—MSE 2026 provides an essential forum for discussing both the theoretical foundations and practical applications that shape the future of materials research.
The conference aims to foster meaningful dialogue on the impacts, challenges, methodologies, and breakthroughs that define modern materials science. By bringing together experts from academia, research institutions, and industry, MSE 2026 encourages collaboration, knowledge exchange, and the development of new interdisciplinary partnerships that advance the field.
Authors are invited to contribute high quality submissions, including original research articles, case studies, experimental investigations, review papers, and industrial experience reports.
Topics of interest include, but are not limited to, the following
Materials Theory, Computation & AI Driven Materials Discovery
- Materials Theory, Computation & Integrated Materials Design
- Density Functional Theory (DFT) & First Principles Modelling
- Machine Learning & AI for Materials Discovery
- Generative AI & Diffusion Models for Materials Design
- Autonomous Laboratories & Self Driving Materials Research
- High Throughput Materials Screening & Materials Genome Approaches
- Multiscale & Multiphysics Modelling of Materials
- Computational Thermodynamics & Phase Field Modelling
- AI Accelerated Simulations & Surrogate Modelling
- Materials Data Infrastructure, FAIR Data & Digital Materials Platforms
Nanomaterials, 2D Materials & Quantum Materials
- Nanomaterials, Nanoparticles & Nanocomposites
- 2D Materials (Graphene, MXenes, TMDs)
- van der Waals Heterostructures & Moiré Materials
- Quantum Materials, Topological Materials & Quantum Dots
- Quantum Defects & Color Centers
- Materials for Quantum Computing, Qubits & Quantum Sensing
- Nanoscale Characterization & Manipulation
- Self Assembly & Bottom Up Nanofabrication
Biomaterials, Soft Matter & Bio Inspired Materials
- Biomaterials, Tissue Engineering & Regenerative Medicine
- Bio inspired, Bio mimetic & Bio functional Materials
- Hydrogels, Soft Matter & Responsive Materials
- Materials for Drug Delivery & Medical Devices
- Biodegradable, Sustainable & Green Biomaterials
- Organic Bioelectronics & Ionotronic Materials
- Organ on Chip Materials & Bio microfluidics
Metals, Alloys, Ceramics & Polymers
- Advanced Metals & High Entropy Alloys
- High Entropy Ceramics, Oxides, Carbides & Nitrides
- Lightweight Structural Alloys
- Ceramics, Glasses & Functional Ceramic Composites
- Polymers, Elastomers & High Performance Polymer Composites
- Bio based, Recyclable & Circular Polymers
- Polymer Upcycling & Sustainable Plastics
- Additive Manufacturing of Metals, Ceramics & Polymers
Composites, Hybrid Materials & Multifunctional Systems
- Fiber Reinforced & Hybrid Composites
- Nano reinforced & Hierarchical Composites
- Multifunctional & Smart Composite Systems
- Aerospace, Automotive & Defense Composites
- Structural Health Monitoring Materials
Electronic, Photonic, Magnetic & Quantum Device Materials
- Materials for Electronics, Semiconductors & Microelectronics
- Wide Bandgap & Harsh Environment Electronic Materials (GaN, SiC)
- Photonic, Optoelectronic & Plasmonic Materials
- Perovskite Materials for Solar Cells, LEDs & Detectors
- Magnetic Materials, Spintronics & Magnonics
- Ferroelectric, Piezoelectric & Multiferroic Materials
- Superconductors & Quantum Device Materials
- Neuromorphic, Memristive & Brain Inspired Materials
- Materials for AI Hardware & Edge Computing
Energy, Sustainability & Environmental Materials
- Materials for Solar, Hydrogen & Renewable Energy
- Perovskite Solar Cells & Stability Engineering
- Solid State Electrolytes & Next Generation Battery Materials
- Lithium Metal, Sodium Ion & Multivalent Batteries
- Fuel Cells, Catalysts & Electrochemical Materials
- CO₂ Reduction, Nitrogen Reduction & Green Ammonia Catalysts
- Thermoelectric & Phase Change Materials
- Carbon Capture, Environmental Remediation & Water Purification Materials
- Sustainable, Green & Circular Materials
- Low Carbon Construction & Cementitious Materials
Materials Processing, Manufacturing & Scale Up
- Materials Synthesis & Processing Techniques
- Thin Films, Coatings & Surface Engineering
- Additive Manufacturing & 3D/4D Printing
- In situ Monitoring, Digital Twins & Autonomous Manufacturing
- Advanced Casting, Forming & Joining Processes
- In situ & Operando Processing Techniques
Mechanical Behavior, Durability & Failure Analysis
- Mechanical Properties & Deformation Mechanisms
- Fracture, Fatigue, Wear & Creep
- Corrosion, Oxidation & Degradation Mechanisms
- Extreme Environment Materials (High T, Radiation, Hypersonic)
- Radiation Resistant & Nuclear Materials
- Reliability Engineering & Lifetime Prediction
- Materials for Space, Lunar & Martian Environments
Surfaces, Interfaces & Advanced Characterization
- Surfaces, Interfaces & Interfacial Phenomena
- Catalytic Interfaces & Surface Chemistry
- Advanced Microscopy, Spectroscopy & Diffraction Techniques
- In situ, Operando & 4D Characterization
- Ultrafast & Time Resolved Materials Characterization
- Tribology & Surface Mechanics
Smart, Functional & Emerging Materials
- Smart, Responsive & Stimuli Adaptive Materials
- Shape Memory Materials & Mechanical Metamaterials
- Programmable Matter & Active Matter
- Flexible, Stretchable & Wearable Materials
- Ionic, Polymer & Solid State Electrolytes
- Soft Robotics Materials & Actuators
Cultural Heritage & Art Conservation Materials
- Art Conservation Science
- Materials Degradation in Cultural Heritage
- Analytical Techniques for Heritage Materials
- Preservation Technologies & Sustainable Conservation
Paper Submission
Authors are invited to submit papers through the conference Submission System by April 25, 2026. Submissions must be original and should not have been published previously or be under consideration for publication while being evaluated for this conference. The proceedings of the conference will be published by The proceedings of the conference will be published by International Journal of Advances in Materials Science and Engineering (IJAMSE) (Confirmed).
Selected papers from MSE 2026, after further revisions, will be published in the special issue of the following journals.
Important Dates
| Submission Deadline | : | April 25, 2026 |
| Authors Notification | : | May 21, 2026 |
| Final Manuscript Due | : | May 25, 2026 |
Co - Located Event
***** The invited talk proposals can be submitted to mse@mse2026.org