Keyphrases
Mesoporous Metals
100%
Metal Powder
100%
Multi-material
100%
Selective Laser Sintering
100%
Localized Surface Plasmon Resonance
100%
Metal 3D Printing
55%
Nanoporous Metals
44%
Ligament
33%
Metal AM Processes
33%
3D Printing Technology
22%
Nanopowder
22%
Laser Processing
22%
3D Printing
22%
Order of Magnitude
22%
Pore Formation
22%
Biomedicine
22%
Nanotechnology
22%
Low Temperature
22%
Proposed Work
22%
Metal 3D Printer
11%
Low-temperature Welding
11%
Bulk Properties
11%
Processing Temperature
11%
Nano-enabled
11%
Laser Sintering
11%
2D Materials
11%
Feedstock Materials
11%
3D Printed Parts
11%
Process Structure
11%
High Power Laser
11%
Interfacial Strength
11%
Laser Energy Density
11%
Heat Source Temperature
11%
Dealloying
11%
Metal-polymer
11%
Ni-Cu Alloy
11%
Inter-particle
11%
Pore Coarsening
11%
Pore Size Control
11%
Nanoscale Properties
11%
Bio-inspired Design
11%
Metal Sintering
11%
Light-matter Interaction
11%
Multi-material 3D Printing
11%
High-temperature Metal
11%
Two-field
11%
Adatoms
11%
Densification
11%
Sintering Temperature
11%
Thermal Processing
11%
Structure Mapping
11%
Laser Exposure
11%
Alloy Powder
11%
Thermal Energy Demand
11%
Formation Theory
11%
Scaling Laws
11%
Crystallites
11%
Mechanical Strength
11%
Filament Feedstock
11%
High-temperature Processing
11%
Energy Catalysis
11%
Ligament Length
11%
High-temperature Polymers
11%
Chemical Dealloying
11%
Nanoscale Phenomena
11%
Knowledge Barriers
11%
0D Materials
11%
Enhanced Optical Absorption
11%
Morphology Transition
11%
Microstructural Morphology
11%
Nanoscale Objects
11%
Optical Properties
11%
Metal Joining
11%
Metal Alloys
11%
Nanosize
11%
Morphological Evolution
11%
Surface Plasmon Resonance
11%
Nanomaterials
11%
Welding Characteristics
11%
AM Technologies
11%
Laser Source
11%
Metal Nanostructures
11%
Thermal Properties
11%
Non-equilibrium Conditions
11%
Heat Generation
11%
Weld Metal
11%
Welding Strength
11%
Sintering Process
11%
Cost down
11%
Powder Bed Fusion
11%
Gas-atomized
11%
1D Materials
11%
Consumer Applications
11%
Fundamental Limits
11%
Powder Feedstock
11%
Material Science
Surface Plasmon
100%
Selective Laser Sintering
100%
Three Dimensional Printing
100%
Powder
40%
Mechanical Strength
30%
Sintering
30%
Feedstock
30%
Nanocrystalline Material
20%
Dealloying
20%
Thermal Property
10%
Energy Density
10%
Nickel-Copper Alloys
10%
Powder Bed Fusion
10%
Coarsening
10%
Sintering Temperature
10%
Two-Dimensional Material
10%
Alloy
10%
Optical Property
10%
Laser Source
10%
Thermoplastics
10%
Catalysis
10%
Crystallite
10%