Keyphrases
Laser-induced Graphene
100%
Graphene Oxide Membrane
100%
Non-solvent-induced Phase Separation
100%
Vapor-induced Phase Separation
100%
Microbial Decontamination
100%
Lasing
30%
Separation Property
20%
PES Membrane
20%
Polymeric Membrane
20%
Separation Membrane
20%
Fabrication Conditions
20%
Phase Separation Method
20%
Porous Polymer Membrane
20%
Contact Time
10%
Minor Change
10%
Exposure Time
10%
Graphene Oxide
10%
Antimicrobial Activity
10%
Membrane Properties
10%
Composite Layer
10%
Processing Stages
10%
Cellular Morphology
10%
Applied Voltage
10%
Membrane Formation
10%
Polymeric Structure
10%
CO2 Laser Ablation
10%
Setting Condition
10%
Pore Structure
10%
Substructure
10%
Polymer Concentration
10%
Membrane Pore
10%
Permeability Change
10%
Finger-like
10%
Graphene Foam
10%
Electrically Conductive Membrane
10%
Membrane Fabrication
10%
Casting Solution
10%
Polymer-graphene Composite
10%
Log Removal
10%
Porous Electrode
10%
Separation Architecture
10%
Controlled Separation
10%
Graphitic Materials
10%
Laser Machining
10%
Trimethylaluminum
10%
Separation of Polymers
10%
Membrane Substrate
10%
Laser Settings
10%
Carbon-based Substrates
10%
Engineering
Phase Separation
100%
Microbial
100%
Subsurface
100%
Laser-Induced Graphene
100%
Decontamination
100%
Membranes Separation
20%
Contact Time
10%
Conductive
10%
Graphene Oxide
10%
Processing Step
10%
Applied Voltage
10%
Exposure Time
10%
Polymeric Structure
10%
Laser Irradiation
10%
Log Removal
10%
Membrane Formation
10%
Polymer Concentration
10%
Minor Change
10%
Casting Solution
10%
Porous Electrode
10%
Chemical Engineering
Phase Separation
100%
Graphene
100%
Membranes Separation
18%
Material Science
Laser-Induced Graphene
100%
Polymeric Membrane
40%
Carbon Dioxide
10%
Graphene Oxide
10%
Polymer Composite
10%
Pore Structure
10%