Acoustic seminar | 11 September 2026

 
Dr. Maxim Arsentev
Branch of B. P. Konstantinov PNPI of National Research Center "Kurchatov Institute"
Multifunctional Materials for Acoustics, Spintronics, Quantum Computing, and Energy Conversion and Storage
Abstract

Multifunctional Materials for Acoustics, Spintronics, Quantum Computing, and Energy Conversion and Storage. Generalized crystallography serves as a universal tool to map structure-property links across disciplines, optimizing lattice composites for acoustic and vibration comfort in automotive engineering (PAO KAMAZ) and designing novel metamaterials for catalyst carriers, MOFs, and photovoltaics. The framework further accelerates energy and quantum applications by tailoring battery cathodes and spin qubits.

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2. Sysoev, E. et al. Influence of Architectural Scaling of Gyroid Lattices on the Coupled Acoustic and Mechanical Performance of Polyurethane-Filled Interpenetrating Phase Composites. Advanced Engineering Materials (2026). DOI: 10.1002/adem.71176.
3. Boev, A. O. et al. Origin of surface segregation in LiCoO₂: A DFT+U study. Physical Review Materials 8, 055403 (2024). DOI: 10.1103/PhysRevMaterials.8.055403.
4. Arsentev, M. et al. TiS₃ Magnesium Battery Material: Atomic-Scale Study of Maximum Capacity and Structural Behavior. The Journal of Physical Chemistry C 121, 15509–15515 (2017). DOI: 10.1021/acs.jpcc.7b01575.
5. Arsentev, M. Y. et al. Crystal Chemical Analysis Used to Predict the Mechanical Properties of Nanoporous Materials. Chemistry of Materials 38, 276–286 (2026). DOI: 10.1021/acs.chemmater.5c02377.