Keyphrases
Strain Sensor
100%
Sensor-based
100%
Superhydrophobic
100%
High Stretchability
100%
Human Motion Monitoring
100%
Polydopamine
100%
Graphene Reinforced
100%
Nanofiber Composite
100%
Thermoplastic Polyurethane
75%
Conducting Polymer
50%
Polymer Nanofibers
50%
Polyurethane Nanofibers
50%
Graphene
50%
Mechanical Properties
25%
Tensile Elongation
25%
Corrosion Resistance
25%
Young's Modulus
25%
Between-person
25%
High Sensitivity
25%
Shell Structures
25%
Elongation at Break
25%
Human Motion
25%
Tensile Strength at Break
25%
Harsh Environment
25%
Superhydrophobicity
25%
Flexible Strain Sensor
25%
Ultrasonication
25%
Promising Applications
25%
Gas Permeability
25%
Interfacial Interaction
25%
Electrospun
25%
Body Movement
25%
Graphene Sheets
25%
Flexible Electronic Devices
25%
Wearable Devices
25%
Nanofibrous Membrane
25%
Conductive Polymer Composites
25%
1H,1H,2H,2H-perfluorodecanethiol
25%
Hydrophobic Treatment
25%
Wearable Strain Sensor
25%
Polydopamine Modification
25%
Graphene Shell
25%
High Flexibility
25%
Cyclical Stability
25%
Polymeric Core
25%
Controllable Sensitivity
25%
Engineering
Graphene
100%
Hydrophobic
100%
Composite Nanofibers
100%
Human Motions
100%
Polyurethan
75%
Conductive Polymer
75%
Polymer Nanofibers
50%
Nanofibers
50%
Electrospun
25%
Ultrasonication
25%
Graphene Sheet
25%
Interfacial Interaction
25%
Shells (Structures)
25%
Young's Modulus
25%
Wearable Sensor
25%
Ultimate Tensile Strength
25%
Flexible Electronics
25%
Elongation at Break
25%
Corrosion Resistance
25%
Material Science
Composite Material
100%
Superhydrophobic
100%
Graphene
100%
Nanofiber
100%
Thermoplastics
50%
Polyurethane
50%
Polymer Composite
16%
Young's Modulus
16%
Corrosion Resistance
16%
Hydrophobicity
16%
Wearable Sensor
16%
Ultimate Tensile Strength
16%
Fibrous Membrane
16%
Gas Permeability
16%
Chemical Engineering
Graphene
100%
Thermoplastics
60%
Polyurethane
60%