Separate formation and growth units prevent carbon contamination on furnace walls, maintaining catalyst activity during serial production.
Segmented fusing agents separate mechanical strength from color control, resolving the trade-off between part integrity and visible spectrum transparency.
A multi-step coating and etching process constructs high aspect ratio nano-pillars using a composite material structure for structural integrity.
Adjusting ion beam energy controls bending direction, eliminating time loss from rotation and repositioning.
Polyhedral metal nanoparticles with R and S regions overcome low optical activity limits in conventional chiral nanostructures.
Liquid crystal elasticity constrains perovskite nanocrystal growth, resolving the trade-off between high quantum efficiency and low synthesis yield.
Microwave synthesis of a graphene-carbon nanotube nanostructure creates transparent conductive layers with high electrical conductivity.
Intrinsic doping creates stable titanium heterometallic MOFs that resist aqueous degradation while enabling visible light photocatalytic activity.
Paper ball-like graphene microspheres absorb impact energy through pleated single-layer structures.
A mechanosynthetic system builds three-dimensional workpieces using atomically precise tips to manipulate individual atoms.
An ultraviolet emrad source extracts carbon atoms from a solid feedlayer to grow long nanotubes without amorphous carbon buildup on the catalyst.
A polydimethylsiloxane microrobot integrates neodymium magnet particles to generate fluid vortices under magnetic fields.