Chemistry
Monomer
100%
Carbohydrates
96%
Ring Opening Polymerisation
90%
D-Xylose
64%
Copolymerization
58%
Ring Opening Reaction
45%
Carbon Dioxide
43%
Oxetane
38%
Ribose
38%
Diol
25%
Alkene
24%
Stereochemistry
24%
Xylose
24%
Glass Transition Temperature
20%
Polycarbonate
19%
Baeyer-Villiger Oxidation
19%
Lactone Ring
19%
Indium
19%
L-Xylose
19%
Polylactide
19%
Hydrogen Peroxide
19%
Regioselectivity
19%
Crystallinity
19%
Lactone
19%
Polyether
19%
Thymidine
19%
Polysaccharide
19%
Anhydride
19%
Chirality
19%
Ambient Reaction Temperature
16%
Organocatalysis
16%
Cyclohexanone
15%
Hydroxyl Group
14%
2-Deoxy-D-Ribose
11%
Density Functional Theory
11%
Copolymer
9%
Co Crystallization
9%
Deoxyribonucleoside
9%
Enantiopurity
9%
Monosaccharide
9%
Block Copolymer
9%
Polymerization
9%
Atactic Polymer
9%
Anhydro Sugar Derivative
6%
Silane
6%
UV Radiation
6%
Stereoisomer
6%
Tert-Butyl Group
6%
formation
6%
Trithiocarbonate
6%
Carbon Disulfide
6%
Reaction Parameter
6%
Pyrolysis
6%
Phosphorus Atom
6%
Differential Thermal Analysis
6%
Melting Point
6%
Phenyl Group
6%
Thermoanalysis
6%
Material Science
Ring Opening Polymerization
58%
Carbon Dioxide
38%
Copolymerization
38%
Polyester
29%
Glass Transition Temperature
29%
Polymerization
25%
Polycarbonate
24%
Materials Property
24%
Polymer Electrolyte
21%
Feedstock
20%
Lithium Ion
19%
Star Polymer
19%
Thermal Degradation
19%
Physical Property
19%
Chirality
19%
Thermal Analysis
19%
Materials Application
19%
Ionic Conductivity
14%
Block Copolymer
14%
Lithium
14%
Polymer Property
11%
Film
9%
Advanced Material
9%
Thermal Property
9%
Chemical Property
9%
Polymer Architecture
6%
Fossil Fuel
6%
Biocompatibility
6%
Chemical Engineering
Ring Opening Polymerization
58%
Carbohydrates
51%
Carbon Dioxide
43%
Copolymerization
38%
Polycarbonate
24%
Olefin
24%
Xylose
19%
Copolymer
14%
Block Copolymer
9%
Monomer Conversion
9%
Polymerization
6%