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2,2-dimethyltrimethylene carbonate (168) 168
polymer science (134) 134
ring-opening polymerization (102) 102
epsilon-caprolactone (66) 66
polymers (51) 51
initiators (38) 38
copolymerization (37) 37
trimethylene carbonate (36) 36
poly (35) 35
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l-lactide (25) 25
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carbonates (19) 19
catalysts (16) 16
chemistry, multidisciplinary (16) 16
cyclic carbonate (16) 16
cyclic carbonates (16) 16
ring‐opening polymerization (16) 16
acid (14) 14
biodegradable polymers (14) 14
block-copolymers (14) 14
cyclic esters (14) 14
lactones (14) 14
1,3-dioxan-2-one (13) 13
ethylene carbonate (13) 13
living polymerization (13) 13
mechanism (13) 13
polyesters (13) 13
ringöffnende polymerisation (13) 13
dioxide (11) 11
monomers (11) 11
2-allyloxymethyl-2-ethyltrimethylene carbonate (10) 10
cyclocarbonates (10) 10
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weight poly (10) 10
ε-caprolactone (10) 10
alternating copolymerization (9) 9
behavior (9) 9
carbonat (9) 9
chemistry (9) 9
k uy polymer science (9) 9
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aliphatic polycarbonates (7) 7
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chemistry, organic (7) 7
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drug-delivery (7) 7
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polyurethanes (7) 7
thermal properties (7) 7
biodegradation (6) 6
hydrolytic degradation (6) 6
tetramethylene urea (6) 6
ε‐caprolactone (6) 6
biochemistry & molecular biology (5) 5
characterization and evaluation of materials (5) 5
chemistry, physical (5) 5
earth calixarene complexes (5) 5
engineering, biomedical (5) 5
epoxides (5) 5
immortal polymerization (5) 5
magnetic resonance spectroscopy (5) 5
materials science, biomaterials (5) 5
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polymer sciences (5) 5
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1,3-dioxepan-2-one (4) 4
2,2‐dimethyltrimethylene carbonate (4) 4
alkoxides (4) 4
analysis (4) 4
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carbon dioxide (4) 4
cationic-polymerization (4) 4
chemistry, applied (4) 4
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by Honda, M and Abe, H
GREEN CHEMISTRY, ISSN 1463-9262, 11/2018, Volume 20, Issue 21, pp. 4995 - 5006
...) of trimethylene carbonate (TMC). Combination of a BrOnsted acid (H3PW12O40) and Lewis base (CeO2) had a synergic effect on a well-controlled ROP without decarboxylation, which gave poly... 
GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | DIMETHYL CARBONATE | BIODEGRADABLE POLYMERS | HETEROPOLY COMPOUNDS | EPSILON-CAPROLACTONE | 2,2-DIMETHYLTRIMETHYLENE CARBONATE | ALPHA-METHYLTRIMETHYLENE CARBONATE | TRIMETHYLENE CARBONATE | POLY(TRIMETHYLENE CARBONATE) | WEIGHT ALIPHATIC POLYCARBONATES | BIOMEDICAL APPLICATIONS | CHEMISTRY, MULTIDISCIPLINARY
Journal Article
Macromolecules, ISSN 0024-9297, 07/2010, Volume 43, Issue 14, pp. 5996 - 6003
.... The selectivity of the oxetane and CO2 coupling process has been effectively tuned for the formation of polycarbonate produced directly from the homopolymerization of preformed trimethylene carbonate (TMC... 
ALTERNATING COPOLYMERIZATION | POLYMER SCIENCE | EPSILON-CAPROLACTONE | CO2/EPOXIDE COPOLYMERIZATION | 2,2-DIMETHYLTRIMETHYLENE CARBONATE | TRIMETHYLENE CARBONATE | POLY(TRIMETHYLENE CARBONATE) | TETRAPHENYLSTIBONIUM IODIDE | RING-OPENING POLYMERIZATION | METAL-SALEN COMPLEXES | PROPYLENE-OXIDE
Journal Article
Macromolecular Chemistry and Physics, ISSN 1022-1352, 11/2009, Volume 210, Issue 21, pp. 1834 - 1843
Journal Article
Polymer, ISSN 0032-3861, 2011, Volume 52, Issue 25, pp. 5716 - 5722
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 06/2009, Volume 112, Issue 5, pp. 3110 - 3118
...‐opening polymerization of 2,2′‐dimethyltrimethylene carbonate (DTC). The type of the initiator significantly influenced the catalytic activity of these complexes in a trend as follows: alkyl ≈ guanidinate... 
lutetium complex | amino‐phosphine | catalysts | polycarbonates | Catalysts | Lutetium complex | Amino-phosphine | Polycarbonates | TRIMETHYLENE-CARBONATE | L-LACTIDE | POLYMER SCIENCE | 2,2-DIMETHYLTRIMETHYLENE CARBONATE | ALKYL COMPLEXES | amino-phosphine | EPSILON-CAPROLACTONE | ALIPHATIC POLYESTERS | RING-OPENING POLYMERIZATION | CYCLIC CARBONATES | COPOLYMERIZATION | INITIATORS
Journal Article
Biomaterials, ISSN 0142-9612, 2010, Volume 31, Issue 9, pp. 2637 - 2645
Journal Article
Reactive and Functional Polymers, ISSN 1381-5148, 2011, Volume 71, Issue 2, pp. 175 - 186
Journal Article
Journal of Polymer Science Part A: Polymer Chemistry, ISSN 0887-624X, 05/2006, Volume 44, Issue 10, pp. 3184 - 3201
Using zirconium(IV) acetylacetonate as an initiator of lactide/trimethylene carbonate copolymerization allowed us to obtain high‐molecular... 
copolymerization | biodegradable | NMR | microstructure | lactide | trimethylene carbonate | Copolymerization | Biodegradable | Trimethylene carbonate | Microstructure | Lactide | POLYMERS | POLYMER SCIENCE | 2,2-DIMETHYLTRIMETHYLENE CARBONATE | COMPLEXES | H-1 | GLYCOLIDE | EPSILON-CAPROLACTONE | RING-OPENING POLYMERIZATION | CYCLIC CARBONATES | MICROSTRUCTURE ANALYSIS
Journal Article
Macromolecules, ISSN 0024-9297, 03/2015, Volume 48, Issue 6, pp. 1703 - 1710
.... The monomers consisted of a six-membered cyclic carbonate (i.e., 2-allyloxymethyl-2-ethyl-trimethylene carbonate (AOMEC)) and ε-caprolactone (εCL... 
CYCLIC ESTERS | L-LACTIDE | POLYMER SCIENCE | EPSILON-CAPROLACTONE | ONE-POT SYNTHESIS | ALIPHATIC POLYESTERS | 2,2-DIMETHYLTRIMETHYLENE CARBONATE | TRIMETHYLENE CARBONATE | 2-ALLYLOXYMETHYL-2-ETHYLTRIMETHYLENE CARBONATE | RING-OPENING POLYMERIZATION | METAL-FREE
Journal Article
高分子科学:英文版, ISSN 0256-7679, 2011, Volume 29, Issue 3, pp. 296 - 299
... (ROP) of 2,2-dimethyltrimethylene carbonate (DTC). Three complexes show moderate activities for the polymerization, and the catalytic activities increase in the following sequence: (Yb 〈 Er 〈 Sm... 
| 二甲醚 | 稀土配合物 | 聚合催化剂 | 二甲基碳酸酯 | 开环聚合 | 二甲基碳酸盐 | DME | Condensed Matter Physics | Polymer Sciences | Chemistry | Biphenol | Ring-opening polymerization | Characterization and Evaluation of Materials | 2,2-Dimethyltrimethylene carbonate | Industrial Chemistry/Chemical Engineering | POLYMER SCIENCE | Catalysts | Polymerization | Carbonates
Journal Article
Biomacromolecules, ISSN 1525-7797, 03/2016, Volume 17, Issue 3, pp. 699 - 709
Journal Article