| Literature DB >> 28970927 |
Tomer Rosen1, Israel Goldberg1, Wanda Navarra2, Vincenzo Venditto2, Moshe Kol1.
Abstract
Chloro-magnesium complexes of divergent tetradentate-monoanionic {ONNN}-type ligands which formed as either mononuclear or dinuclear complexes are reported. These complexes catalyze the ring-opening polymerization of lactide with high activity and in a living manner, and enable the synthesis of well-defined stereo-diblock copolymers with Mn > 200 kDa, as well as stereo-n-block copolymers (n = tri, tetra) with high molecular weights by sequential monomer addition. Thermal and crystallographic characterizations revealed that even the very high molecular weight PLA copolymers crystallized in a stereocomplex phase, and that their degradation temperature was as high as 354 °C.Entities:
Year: 2017 PMID: 28970927 PMCID: PMC5613742 DOI: 10.1039/c7sc01514c
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Sequential {ONNN}Mg–Cl complex vs. divergent {ONNN}Mg–Cl complex.
Scheme 1Synthesis of the divergent {ONNN}Mg–Cl complexes. The steric character of the phenol substituents dictates the complex nuclearity.
Fig. 21H NMR spectra (CDCl3, 3–9.5 ppm) of representative mononuclear (top, Lig3Mg–Cl) vs. dinuclear (bottom, [(μ-Lig1)Mg–Cl]2) chloro-magnesium complexes.
Fig. 3Molecular representation of the crystallographic structure of [MgCl(μ-Lig1)]2.
Homopolymerization of l-LA
| En | Initiator | [I]/[BnOH]/[LA] | Time | Conv. |
| PDI |
| 1 | Lig3Mg–Cl | 1/1/300 | 5 | 0.98 | 33 900 | 1.04 |
| 2 | Lig4Mg–Cl | 1/1/300 | 2 | 0.98 | 46 500 | 1.08 |
| 3 | Lig4Mg–Cl | 1/4/600 | 3 | 0.98 | 20 200 | 1.04 |
| 4 | Lig4Mg–Cl | 1/1/2000 | 5 | 0.96 | 271 500 | 1.06 |
| 5 | Lig5Mg–Cl | 1/1/300 | 5 | 0.95 | 35 900 | 1.08 |
| 6 | [MgCl(μ-Lig1)]2 | 1/1/300 | 15 | 0.90 | 30 400 | 1.08 |
| 7 | [MgCl(μ-Lig2)]2 | 1/1/300 | 15 | 0.88 | 39 200 | 1.07 |
Polymerizations performed in CH2Cl2 (5 mL) at RT employing 5 μmol of catalyst.
Polymerization time given in minutes.
Determined by 1H NMR spectroscopy (500 MHz).
Determined by GPC analysis calibrated with polystyrene standards and multiplied by a correction factor of 0.58. Values are given in g mol–1.
Stereo-block copolymerization of l-LA and d-LA
| Entry | Initiator | Type | Composition | Time |
|
| PDI |
| Δ |
| 1 | Lig3Mg–Cl | Di block |
| 10 | 28 800 | 26 700 | 1.11 | 213 | 75 |
| 2 | Lig3Mg–Cl | Di block |
| 10 | 57 600 | 62 670 | 1.20 | 213 | 64 |
| 3 | Lig4Mg–Cl | Di block |
| 10 | 28 800 | 22 900 | 1.06 | 212 | 59 |
| 4 | Lig4Mg–Cl | Di block |
| 10 | 86 400 | 85 800 | 1.04 | 214 | 76 |
| 5 | Lig4Mg–Cl | Di block |
| 11 | 144 000 | 149 110 | 1.07 | 214 | 79 |
| 6 | Lig4Mg–Cl | Di block |
| 20 | 228 100 | 202 300 | 1.09 | 214 | 67 |
| 7 | Lig4Mg–Cl | Tri block |
| 15 | 43 200 | 45 860 | 1.08 | 202 | 36 |
| 8 | Lig4Mg–Cl | Tri block |
| 18 | 129 600 | 120 590 | 1.12 | 201 | 40 |
| 9 | Lig4Mg–Cl | Tetra block |
| 22 | 57 600 | 64 690 | 1.10 | 202 | 49 |
| 10 | Lig4Mg–Cl | Tetra block |
| 24 | 115 200 | 104 230 | 1.13 | 205 | 56 |
Polymerizations performed in CH2Cl2 (5 mL) at RT employing 5 μmol of the catalyst and 1 equiv. of BnOH. Almost full conversion (>0.98) was confirmed by 1H NMR (500 Hz).
Total polymerization time given in minutes. 5–10 min were maintained between each monomer addition, depending on the monomer amount and length of the polymer chain.
Calculated from monomer conversion assuming full benzyl alcohol participation. Values are given in g mol–1.
M n was determined by GPC analysis with CHCl3 as the eluent.
Melting temperature and enthalpy of first DSC run. Values are given in °C and J g–1, respectively.
Fig. 4Thermograms of the second DSC heating run of stereo-diblock copolymers having (a) 100, (b) 300 and (c) 800 mer block lengths.
Fig. 5WAXD patterns of the films, annealed at 100 °C for 10 min. Blends 1 and 2, the mixtures of the homochiral polymers having ca. 800 and 1600 repeat units, respectively are compared with l(800)-b-d(800) stereo-diblock copolymer.