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About this Symposium

Meeting MS&T26: Materials Science & Technology
Symposium Controlled Synthesis, Processing, and Applications of Structural and Functional Nanomaterials
Sponsorship ACerS Basic Science Division
ACerS Electronics Division
ACerS Energy Materials and Systems Division
ACerS Engineering Ceramics Division
Organizer(s) Haitao Zhang, University of North Carolina at Charlotte
Gurpreet Singh, Kansas State University
Kathy Lu, University of Alabama Birmingham
Edward P. Gorzkowski, Naval Research Laboratory
Michael Naguib, Tulane University
Sanjay Mathur, University of Cologne
Wonmo Kang, Arizona State University
Babak Anasori, Purdue University
Oliver Diwald, Universitaet Salzburg
Hyunjoo Choi, Kookmin University
Scope Nanostructured materials (nanoparticles, nanowires, nanosheets, etc.) show great promise to enable a broad range of new applications as well as improve existing technologies because of their unique size-dependent physical and chemical properties. These include materials for energy applications (e.g., catalysts for sustainable hydrogen generation, electrodes for fuel cells and batteries, etc.), semiconductors for optical and optoelectronic applications including solar cells, piezoelectric and ferroelectrics for sensors, biomaterials for medical applications, high strength nanocomposites for structural applications, extreme environment materials for harsh conditions, etc. However, many barriers still exist in understanding and controlling the processing of nanostructured materials. Novel nanostructure designs are critically needed at all stages of nanoscale material formation processes to enable unique performances, low cost, and green engineering. Great challenges also remain on the composition and morphology control of multi-component functional nanomaterials.

This symposium will focus on the following general topics: 1) Synthesis, growth mechanism study, and structural characterization to preserve and improve nanoscale dimension, structure, and properties with tunability for different applications; 2) Novel design and understanding of the assembly and fabrication technologies for multi-component and hierarchical nanostructures; and 3) Theoretical, computational, and machine learning study of the material design, growth behavior, and property prediction in 0D to 2D materials.
Focused topics include, but are not limited to, nanostructures in energy applications, 2D materials, polymer derived ceramic nanostructures, biological and biomedical nanomaterials, high-entropy ceramic nanomaterials, and geoinspired synthesis of nanomaterials, etc.

Abstracts Due 05/19/2026

PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE


Bismuth-Modified Yttrium Iron Garnet Ceramics Development for Nanocrystalline Thick Films
Coir-Hydrated Silica Nanoparticles for Hydrocarbon-Contaminated Soil Remediation and Maize Growth Enhancement
Combinatorial Thickness-Graded Film Growth Via Substrate Tilt Geometry in Pulsed Laser Deposition
Comparative Study of Conventional and Microwave-Assisted Etching for Ti₃C₂ MXene: Effects on Yield and Quality
Controlled Synthesis of Au-TiO2 Nanostructures with Strong Metal-Support Interactions for Selective H2O2 Electrosynthesis
Controlling Graphene Growth and Cu Geometry to Understand Enhanced Electrical Conductivity of Cu/Graphene Composites
Dynamic Dealloying and Restructuring of Bimetallic Nanomaterials Under Electrochemical Conditions
Electronic Structure Engineering of Mo-Based Carbonitride MXenes for Efficient Water Splitting
Electrospun Ce-Doped TiO₂ Self-Supported Nanofiber Mats with Enhanced Photocatalytic Activity
Foundation Models for 2D Materials Growth and Characterization
Functional Materials: Definition, Origin and Improvement of Functionality of Materials
Green Synthesis of MgO Nanoparticles Using Chromolaena Odorata: A Multifunctional Assessment of Antioxidant, Antibacterial, and Photocatalytic Performance
Growth and Transfer of Hematite Thin Films for Pump–Probe Spectroscopy
Interface and Mechanical Properties of Cu Nanocomposites with 1D and 1D-2D Carbon Nanomaterials
Introducing Porosity in Atomic Layer Processing
Investigation of the Local Structure and Chemical Nuances in High Entropy Oxides Using Advanced Electron Microscopy
Laser-Driven Synthesis and Process Control of Functional Nanocarbon from Polymer Precursors
Laser-Induced NanoCarbon Synthesis and Transfer for Conformal Nanocarbon Coatings on Thermally Sensitive Substrates
Laser Induced One-step Patterned Synthesis of Polymer-Derived Ceramics
Luminescent Hydroxyapatite Scaffolds for Osteogenic Differentiation and Bone Remodeling
Multifunctional Ti3C2Tx MXene /Polystyrene Nanocomposite Thin Film for Flexible Electronics
Nanoflower-Like MXene-Derived Oxides for Electrochemical Energy Storage
Phase-Field Modeling of TiO2 Nanocarving Via Reaction with Hydrogen-Bearing Gas
Processing-Property Relationships of Electrospun Undoped and Doped Barium Titanate Fibers
Reliability Assessment of Molybdenum Disulfide-Based Devices Under Sustained Heating Conditions
Scalable Synthesis of Al Nanothermites Via Ultrasonic Ablation and a Modified Pechini Route
Size-Dependent Electromechanical Behavior of Axially Continuous Graphene-Copper (ACGC) Composite Wires
Size Effects on Interfacial Thermodynamics of Oxide Nanoparticles and Nanoceramics
Synergistic Design of Structural and Functional Nanocomposites Via pALD and EC-PAS
Time-Dependent Mechanical Behavior of Nanoporous Gold Depending on Ligament Size
Unraveling MAX Phase Etching: Chemical Interactions, Lattice Response, and Front Propagation
Unusual Dislocation Dynamics in Core-Shell Nanostructures


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