Engineering & Materials Science
Polyamides
100%
Cellulose
73%
Polymerization
70%
Nanocomposites
66%
Hydrogels
54%
Ink
37%
Ascorbic acid
35%
Nanocellulose
34%
Organoclay
32%
SiO2 nanoparticles
32%
Graphene oxide
30%
Lignin
29%
Manures
29%
Melting point
29%
Polyvinyl alcohols
28%
Elastic moduli
28%
Nanoparticles
27%
Biogas
24%
Thermal insulation
22%
Rheology
21%
Silica
21%
Oleic acid
21%
Clay
20%
Foams
19%
Polycondensation
19%
Tensile strength
17%
Composite materials
16%
Acids
15%
Surface treatment
14%
Fillers
13%
Porosity
13%
Water
13%
Shear thinning
12%
Molecules
11%
Polymers
11%
Mechanical properties
10%
Scanning electron microscopy
10%
Fertilizers
10%
Amides
10%
Substitution reactions
9%
Antioxidants
9%
Molecular weight
7%
Geometry
7%
Strength of materials
7%
Solidification
6%
Extrusion
6%
Skin
6%
Free volume
6%
Tissue
5%
Substrates
5%
Electric Conductivity
5%
Surface active agents
5%
Crystallinity
5%
Chemical Compounds
Polyamide
80%
Ink
67%
Hydrogel
52%
Nanocomposite
41%
Storage Modulus
39%
Polymerization Reaction
37%
Silicon Dioxide Nanoparticle
36%
Crystal System
35%
Adhesive Agent
30%
Rheology
29%
Porosity
28%
Silicon Dioxide
25%
Tensile Strength
23%
Microcrystallinity
22%
Application
22%
Foam
18%
Shape
18%
Surface Modification
17%
Nanocrystal
17%
Graphene Oxide
16%
Polycondensation
14%
Composite Material
13%
Filler
13%
Alcohol
12%
Pore
11%
Nutrient
11%
Nanoparticle
10%
Oleic Acid
10%
Tetradecanedioic Acid
10%
Fertilizer
10%
Substitution Reaction
9%
Strength
8%
Melting Point
8%
Isocyanate
8%
Nozzle
8%
Free Volume
7%
Solidification
7%
Freeze Drying
7%
Amide
7%
11-Aminoundecanoic Acid
7%
Exfoliation
7%
Filament
6%
Extrusion
6%
Thermomechanical Property
6%
Ascorbic Acid
6%
Biocompatible Material
6%
Polymer Chain
6%
Surface
5%
Fourier Transform Infrared Spectroscopy
5%
Weight
5%
Suspension
5%
Antioxidant Agent
5%
Crystallinity
5%
Purity
5%
Acid
5%
Dioxygen
5%