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Keyphrases
MXene-based Composites
100%
Gram-negative Bacteria
100%
Antibacterial Properties
100%
Antibacterial Ability
100%
Molybdenum
50%
Ti3C2Tx MXene
50%
Physical Damage
50%
Mo2TiC2Tx
50%
MXene Flakes
50%
NanoKnife
50%
Double Transition Metal MXene
50%
Bacterial Cells
25%
Novel Antimicrobials
25%
Oxidative Stress
25%
Metabolic Function
25%
Lateral Size
25%
Concentration Level
25%
Exposure Time
25%
Zone of Inhibition
25%
Metal Ion Release
25%
Leaching
25%
Cell Wall
25%
Prolonged Exposure
25%
Multidrug-resistant Pathogens
25%
Sharp Edge
25%
Antibiotic Use
25%
Flake Size
25%
Morphological Defects
25%
Antibacterial Biomaterials
25%
Structural Tunability
25%
Chemistry
Titanium-based MXene
100%
Molybdenum
100%
Transition Metal
100%
Sonication
100%
Metabolic
50%
Nanomaterial
50%
Metal Ion
50%
Oxidative Stress
50%
Engineering
Antibacterial Property
100%
MXene
100%
Negative Bacteria
100%
Sonication
40%
Physical Damage
40%
Disruptions
20%
Nanomaterial
20%
Direct Correlation
20%
Exposure Time
20%
Ion Release
20%
Inhibition Zone
20%
Pharmacology, Toxicology and Pharmaceutical Science
Antiinfective Agent
100%
Escherichia coli
100%
Gram Negative Bacterium
100%
Transition Element
22%
Infectious Agent
11%
Antibiotics
11%
Long Term Exposure
11%
Nanomaterial
11%
Metal Ion
11%
Antibacterial Performance
11%
Chemical Engineering
Transition Metal
100%
Titanium-based MXene
100%
Nanomaterial
50%
Morphology
50%
Material Science
Antiinfective Agent
100%
MXene
55%
Titanium Carbide
22%
Molybdenum
22%
Transition Metal
22%
Morphology
11%
Nanostructured Material
11%
Leaching
11%
Antibacterial Performance
11%