Blending ancient materials science with nanotechnology for self-healing concrete
biomimetic materials
nanocomposites
construction tech
historical analogs
fracture mechanics
In artificial photosynthesis, enhancing efficiency via bioengineered quantum dot hybrids
quantum dots
biohybrid systems
solar fuel
photoelectrochemistry
synthetic biology
At picometer precision, manipulating molecular bonds with ultrafast laser pulse shaping
femtochemistry
bond-selective control
coherent light-matter interaction
attosecond physics
molecular dynamics
Optimizing drug discovery pipelines with computational retrosynthesis and AI-driven reaction prediction
computational retrosynthesis
drug discovery
AI prediction
synthetic pathways
pharmaceutical optimization
Picocubic reaction chambers for single-molecule enzymology under femtoliter confinement
single-molecule biophysics
microfluidics
enzyme kinetics
femtoliter chambers
nanofabrication
Anticipating 22nd century energy needs through attojoule-scale nanodevice optimization
attojoule energy
nanotechnology
future computing
energy efficiency
quantum limits
Reimagining Victorian-era inventions with modern nanotechnology for biomedical applications
Victorian technology
nanotechnology
biomedical devices
historical engineering
material science
Blending ancient Roman concrete formulations with carbon nanotube reinforcement for modern infrastructure
ancient materials
nanotechnology
self-healing concrete
carbon nanotubes
Roman engineering
Designing DNA origami nanostructures for targeted delivery of CRISPR components to specific cell types
DNA nanotechnology
CRISPR delivery
precision medicine
gene editing
biomolecular engineering
Blending ancient Roman concrete techniques with modern nanotechnology for durable infrastructure
self-healing concrete
archaeological materials
nanocomposites
sustainable construction
ancient engineering
Exploring the potential of directed self-assembly of block copolymers for nanoscale manufacturing
nanotechnology
self-assembly
block copolymers
nanofabrication
materials science
Through mechanochemical reactions, how can we synthesize pharmaceuticals with minimal solvent use?
mechanochemistry
pharmaceutical synthesis
green chemistry
solvent-free reactions
drug manufacturing