Catalyst discovery algorithms for sustainable megayear material degradation prediction
catalyst discovery
material degradation
AI simulation
extreme environments
sustainability
Optimizing transition metal dichalcogenide channels for next-generation smartphone integration
TMDCs
smartphone processors
energy efficiency
2D materials
nanoscale engineering
Employing self-healing materials for megacity-scale infrastructure solutions by 2032
self-healing polymers
urban infrastructure
sustainability
smart cities
material science
Focusing on 2023 breakthroughs in high-temperature superconducting hydrides under ambient pressure
superconductivity
hydride materials
quantum materials
energy infrastructure
high-pressure physics
With transition metal dichalcogenide channels for ultra-low-power electronics
TMDs
nanoelectronics
energy-efficient devices
2D materials
semiconductor physics
In attojoule energy regimes: Harvesting ambient vibrations with piezoelectric metamaterials
attojoule harvesting
piezoelectric metamaterials
ambient energy
mechanical rectifiers
nanoscale vibrations
Enhancing perovskite-silicon tandem cell stability with 50-year durability requirements for space applications
perovskite-silicon tandem cells
space photovoltaics
durability testing
encapsulation materials
degradation mechanisms
Microwave-assisted synthesis of quantum dots for attojoule energy regime optoelectronic devices
microwave synthesis
quantum dots
attojoule energy
optoelectronics
nanomaterials
Optimizing superconducting qubit coherence at Josephson junction frequencies with novel materials
Josephson junctions
superconducting qubits
quantum coherence
materials science
cryogenic engineering
Using waste-heat thermoelectrics for industrial energy recovery and decarbonization
waste-heat recovery
thermoelectrics
industrial decarbonization
energy efficiency
sustainable manufacturing
For solid-state battery breakthroughs using solvent-free processing techniques
solid-state batteries
solvent-free processing
energy storage
manufacturing innovation
battery safety
Scaling perovskite solar cells with plasma-enhanced atomic layer deposition for defect passivation
perovskite solar cells
atomic layer deposition
plasma processing
thin-film defects
renewable energy