Via redox flow battery optimization for grid-scale seasonal energy storage
flow batteries
energy storage
renewable grid
electrolyte engineering
ion-exchange membranes
Optimizing backside power delivery networks for perovskite-silicon tandem cells in megacity-scale solutions
backside power delivery
perovskite-silicon tandem
megacity energy
photovoltaic optimization
grid integration
For biodegradable electronics, what are the optimal materials for transient neural interfaces?
biodegradable electronics
neural interfaces
transient materials
medical implants
sustainable technology
Via catalyst discovery algorithms for sustainable chemical manufacturing processes
catalyst discovery
AI algorithms
green chemistry
sustainable manufacturing
industrial catalysis
Anticipating 2035 energy grid demands using decentralized renewable microgrids
energy grid forecasting
renewable microgrids
decentralized power
2035 energy demand
smart grids
Within attosecond timeframes: capturing electron dynamics in photosynthetic molecules
attosecond physics
photosynthesis
electron dynamics
ultrafast spectroscopy
quantum biology
Considering 10,000-year material stability for deep geological nuclear waste storage
nuclear waste storage
material degradation
geological repositories
long-term stability
radioactive containment
Optimizing perovskite-silicon tandem solar cells with backside power delivery networks for 2025 deployment
perovskite-silicon tandem
backside power delivery
solar efficiency
scalable photovoltaics
2025 commercialization
Employing electrocatalytic CO2 conversion for sustainable ethylene production in modular reactors
electrocatalysis
CO2 conversion
ethylene production
modular reactors
renewable energy
Optimizing geothermal fracking innovations for 2024-2026 energy grid integration
geothermal fracking
renewable energy
grid integration
subsurface engineering
sustainability
Employing AI-optimized renewable grids for decentralized energy distribution in urban microgrids
AI
renewable energy
microgrids
urban sustainability
decentralized distribution
Using waste-heat thermoelectrics for passive cooling in high-performance computing systems
waste-heat recovery
thermoelectrics
passive cooling
data centers
energy efficiency