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Erschienen in: Journal of Polymer Research 5/2019

01.05.2019 | ORIGINAL PAPER

Synthesis and characterization of novel ABA type poly(Ester-ether) triblock copolymers

verfasst von: Efkan Çatıker, Temel Öztürk, Mehmet Atakay, Bekir Salih

Erschienen in: Journal of Polymer Research | Ausgabe 5/2019

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Abstract

Oligomers of poly(3-hydroxypropionate) (P3HP) were synthesized via hydrogen transfer polymerization of acrylic acid. Olefinic end-group of the oligomers were modified through epoxidation and bromination to obtain activated oligomers with epoxy and bromide end-groups, respectively. Terminally hydroxyl oligomeric poly(ethylene glycol) (PEG-1450) was also converted to sodium alkoxide of PEG-1450 through reaction with sodium hydride. Novel ABA type P3HP-b-PEG-b-P3HP triblock copolymers were successfully obtained through simple nucleophilic addition reactions between alkoxy and epoxy/alkyl bromide. Water uptake measurements of the triblock copolymers were calculated. Characterization of the modified oligomers and the triblock copolymers was performed by using FT-IR, 1H-NMR and MALDI-MS analyses. Thermal transitions and degradation features of the copolymers were investigated by using DSC and TGA methods. Spectroscopic and thermal analyses revealed that both end-group modifications and coupling reactions were successfully achieved.

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Literatur
1.
Zurück zum Zitat Çatıker E, Meyvacı E, Atakay M, Salih B, Öztürk T (2018) Synthesis and characterization of amphiphilic triblock copolymers including β-alanine/α-methyl-β-alanine and ethylene glycol by "click" chemistry. Polym Bull 76:2113–2128CrossRef Çatıker E, Meyvacı E, Atakay M, Salih B, Öztürk T (2018) Synthesis and characterization of amphiphilic triblock copolymers including β-alanine/α-methyl-β-alanine and ethylene glycol by "click" chemistry. Polym Bull 76:2113–2128CrossRef
2.
Zurück zum Zitat Öztürk T, Kılıçlıoğlu A, Savaş B, Hazer B (2018) Synthesis and characterization poly(ɛ-caprolactone-co-ethylene glycol) heteroarm star-type amphiphilic copolymers by "click" chemistry and ring-opening polymerization. J Macromol Sci Part A: Pure Appl Chem 55:588–594CrossRef Öztürk T, Kılıçlıoğlu A, Savaş B, Hazer B (2018) Synthesis and characterization poly(ɛ-caprolactone-co-ethylene glycol) heteroarm star-type amphiphilic copolymers by "click" chemistry and ring-opening polymerization. J Macromol Sci Part A: Pure Appl Chem 55:588–594CrossRef
3.
Zurück zum Zitat Öztürk T, Meyvacı E (2017) Synthesis and characterization poly(ɛ-caprolactone-b-ethylene glycol-b-ɛ-caprolactone) block copolymers via "click" chemistry and ring-opening polymerization. J Macromol Sci Part A: Pure Appl Chem 54:575–581CrossRef Öztürk T, Meyvacı E (2017) Synthesis and characterization poly(ɛ-caprolactone-b-ethylene glycol-b-ɛ-caprolactone) block copolymers via "click" chemistry and ring-opening polymerization. J Macromol Sci Part A: Pure Appl Chem 54:575–581CrossRef
4.
Zurück zum Zitat Hadjichristidis N, Iatrou H, Pitsikalis M, Mays J (2006) Macromolecular architectures by living and controlled/living polymerizations. Prog Polym Sci 31:1068–1132CrossRef Hadjichristidis N, Iatrou H, Pitsikalis M, Mays J (2006) Macromolecular architectures by living and controlled/living polymerizations. Prog Polym Sci 31:1068–1132CrossRef
5.
Zurück zum Zitat Öztürk T, Meyvacı E, Bektaş H, Menteşe E (2019) Synthesis and characterization of ring-type and branched polymers including polyethylene glycols by “click” chemistry. SN Applied Sciences 1:343CrossRef Öztürk T, Meyvacı E, Bektaş H, Menteşe E (2019) Synthesis and characterization of ring-type and branched polymers including polyethylene glycols by “click” chemistry. SN Applied Sciences 1:343CrossRef
6.
Zurück zum Zitat Velichkova RS, Christova DC (1995) Amphiphilic polymers from macromonomers and telechelics. Prog Polym Sci 20:819–887CrossRef Velichkova RS, Christova DC (1995) Amphiphilic polymers from macromonomers and telechelics. Prog Polym Sci 20:819–887CrossRef
7.
Zurück zum Zitat Riess G (2003) Micellization of block copolymers. Prog Polym Sci 28:1107–1170CrossRef Riess G (2003) Micellization of block copolymers. Prog Polym Sci 28:1107–1170CrossRef
8.
Zurück zum Zitat Gacal B, Durmaz H, Tasdelen MA, Hizal G, Tunca U, Yagci Y, Demirel AL (2006) Anthracene-maleimide-based Diels-Alder "click chemistry" as a novel route to graft copolymers. Macromolecules 39:5330–5336CrossRef Gacal B, Durmaz H, Tasdelen MA, Hizal G, Tunca U, Yagci Y, Demirel AL (2006) Anthracene-maleimide-based Diels-Alder "click chemistry" as a novel route to graft copolymers. Macromolecules 39:5330–5336CrossRef
9.
Zurück zum Zitat Pispas S, Hadjichristidis N (2003) Aggregation behavior of poly(butadiene-b-ethylene oxide) block copolymers in dilute aqueous solutions: effect of concentration, temperature, ionic strength, and type of surfactant. Langmuir 19:48–54CrossRef Pispas S, Hadjichristidis N (2003) Aggregation behavior of poly(butadiene-b-ethylene oxide) block copolymers in dilute aqueous solutions: effect of concentration, temperature, ionic strength, and type of surfactant. Langmuir 19:48–54CrossRef
10.
Zurück zum Zitat Öztürk T, Hazer B (2010) Synthesis and characterization of a novel macromonomer initiator for reversible addition fragmentation chain transfer (raft). Evaluation of the polymerization kinetics and gelation behaviors. J Polym Sci Part A Polym Chem 47:265–272 Öztürk T, Hazer B (2010) Synthesis and characterization of a novel macromonomer initiator for reversible addition fragmentation chain transfer (raft). Evaluation of the polymerization kinetics and gelation behaviors. J Polym Sci Part A Polym Chem 47:265–272
11.
Zurück zum Zitat Öztürk T, Göktaş M, Hazer B (2011) Synthesis and characterization of poly(methyl methacrylate-block-ethylene glycol-block-methyl methacrylate) block copolymers by reversible addition fragmentation chain transfer polymerization. J Macromol Sci Part A: Pure Appl Chem 48:65–70CrossRef Öztürk T, Göktaş M, Hazer B (2011) Synthesis and characterization of poly(methyl methacrylate-block-ethylene glycol-block-methyl methacrylate) block copolymers by reversible addition fragmentation chain transfer polymerization. J Macromol Sci Part A: Pure Appl Chem 48:65–70CrossRef
12.
Zurück zum Zitat Asan N, Öztürk T (2017) Synthesis and characterization of poly (vinyl chloride–graft–ethylene glycol) graft copolymers by "click" chemistry. Hacet J Biol Chem 45:35–42 Asan N, Öztürk T (2017) Synthesis and characterization of poly (vinyl chloride–graft–ethylene glycol) graft copolymers by "click" chemistry. Hacet J Biol Chem 45:35–42
13.
Zurück zum Zitat Öztürk T, Ayyıldız H, Meyvacı E, Göktaş M (2017) Synthesis and characterization of poly (epichlorohydrin-graft-ethylene glycol) graft copolymers by "click" chemistry. Karaelmas Fen ve Mühendislik Dergisi 7:47–54 Öztürk T, Ayyıldız H, Meyvacı E, Göktaş M (2017) Synthesis and characterization of poly (epichlorohydrin-graft-ethylene glycol) graft copolymers by "click" chemistry. Karaelmas Fen ve Mühendislik Dergisi 7:47–54
14.
Zurück zum Zitat Xue Y, Ma D, Zhang T, Lin S, Shao S, Gu N (2014) Synthesis and characterization of comblike methoxy polyethylene glycol-grafted polyurethanes via ‘click’ chemistry. J Macromol Sci Part A: Pure Appl Chem 51:456–464CrossRef Xue Y, Ma D, Zhang T, Lin S, Shao S, Gu N (2014) Synthesis and characterization of comblike methoxy polyethylene glycol-grafted polyurethanes via ‘click’ chemistry. J Macromol Sci Part A: Pure Appl Chem 51:456–464CrossRef
15.
Zurück zum Zitat Hazer B (2010) Amphiphilic poly(3-hydroxy alkanoate)s: potential candidates for medical applications. Int J Polym Sci 2010:423460CrossRef Hazer B (2010) Amphiphilic poly(3-hydroxy alkanoate)s: potential candidates for medical applications. Int J Polym Sci 2010:423460CrossRef
16.
Zurück zum Zitat Erciyes AT, Erim M, Hazer B, Yağcı Y (1992) Synthesis of polyacrylamide flocculants with poly(ethylene glycol) segments by redox polymerization. Angew Makromol Chem 200:163–171CrossRef Erciyes AT, Erim M, Hazer B, Yağcı Y (1992) Synthesis of polyacrylamide flocculants with poly(ethylene glycol) segments by redox polymerization. Angew Makromol Chem 200:163–171CrossRef
17.
Zurück zum Zitat Öztürk T, Cavicchi CA (2018) Synthesis and characterization of poly(epichlorohydrin-g-ε-caprolactone) graft copolymers by "click" chemistry. J Polym Mater 35:209–220CrossRef Öztürk T, Cavicchi CA (2018) Synthesis and characterization of poly(epichlorohydrin-g-ε-caprolactone) graft copolymers by "click" chemistry. J Polym Mater 35:209–220CrossRef
18.
Zurück zum Zitat Göktaş M, Öztürk T, Atalar MN, Tekeş AT, Hazer B (2014) One-step synthesis of triblock copolymers via simultaneous reversible-addition fragmentation chain transfer (raft) and ring-opening polymerization using a novel difunctional macro-raft agent based on polyethylene glycol. J Macromol Sci Part A: Pure Appl Chem 51:854–863CrossRef Göktaş M, Öztürk T, Atalar MN, Tekeş AT, Hazer B (2014) One-step synthesis of triblock copolymers via simultaneous reversible-addition fragmentation chain transfer (raft) and ring-opening polymerization using a novel difunctional macro-raft agent based on polyethylene glycol. J Macromol Sci Part A: Pure Appl Chem 51:854–863CrossRef
19.
Zurück zum Zitat Öztürk T, Yavuz M, Göktaş M, Hazer B (2016) One-step synthesis of triarm block copolymers by simultaneous atom transfer radical and ring-opening polymerization. Polym Bull 73:1497–1513CrossRef Öztürk T, Yavuz M, Göktaş M, Hazer B (2016) One-step synthesis of triarm block copolymers by simultaneous atom transfer radical and ring-opening polymerization. Polym Bull 73:1497–1513CrossRef
20.
Zurück zum Zitat Öztürk T, Göktaş M, Savaş B, Işıklar M, Atalar MN, Hazer B (2014) Synthesis and characterization of poly (vinyl chloride-graft-2-vinylpyridine) graft copolymers using a novel macroinitiator by reversible addition-fragmentation chain transfer polymerization. E-polymers 14:27–34CrossRef Öztürk T, Göktaş M, Savaş B, Işıklar M, Atalar MN, Hazer B (2014) Synthesis and characterization of poly (vinyl chloride-graft-2-vinylpyridine) graft copolymers using a novel macroinitiator by reversible addition-fragmentation chain transfer polymerization. E-polymers 14:27–34CrossRef
21.
Zurück zum Zitat Öztürk T, Göktaş M, Hazer B (2010) One-step synthesis of triarm block copolymers via simultaneous reversible-addition fragmentation chain transfer and ring-opening polymerization. J Appl Polym Sci 117:1638–1645 Öztürk T, Göktaş M, Hazer B (2010) One-step synthesis of triarm block copolymers via simultaneous reversible-addition fragmentation chain transfer and ring-opening polymerization. J Appl Polym Sci 117:1638–1645
22.
Zurück zum Zitat Altintas O, Tunca U, Barner-Kowollik C (2011) Star and miktoarm star block (co)polymers viaself-assembly of atrp generated polymer segments featuring Hamilton wedge and cyanuric acid binding motifs. Polym Chem 2:1146–1155CrossRef Altintas O, Tunca U, Barner-Kowollik C (2011) Star and miktoarm star block (co)polymers viaself-assembly of atrp generated polymer segments featuring Hamilton wedge and cyanuric acid binding motifs. Polym Chem 2:1146–1155CrossRef
23.
Zurück zum Zitat Ruzette AV, Leibler L (2005) Block copolymers in tomorrow's plastics. Nat Mater 4:19–31CrossRef Ruzette AV, Leibler L (2005) Block copolymers in tomorrow's plastics. Nat Mater 4:19–31CrossRef
24.
Zurück zum Zitat Riess G, Hurtres G, Bahadur P (1985) Encyclopedia of polymer science and engineering. Wiley, New York Riess G, Hurtres G, Bahadur P (1985) Encyclopedia of polymer science and engineering. Wiley, New York
25.
Zurück zum Zitat Clara I, Natchimuthu N (2016) Synthesis, characterization, and swelling behavior of hydrogels based on graft copolymerization of sodium-2-acrylamido-2-methyl-1-propane sulfonate onto gelatin. J Polym Mater 33:709–721 Clara I, Natchimuthu N (2016) Synthesis, characterization, and swelling behavior of hydrogels based on graft copolymerization of sodium-2-acrylamido-2-methyl-1-propane sulfonate onto gelatin. J Polym Mater 33:709–721
26.
Zurück zum Zitat Öztürk T, Kayğın O, Göktaş M, Hazer B (2016) Synthesis and characterization of graft copolymers based on polyepichlorohydrin via reversible addition-fragmentation chain transfer polymerization. J Macromol Sci Part A: Pure Appl Chem 53:362–367CrossRef Öztürk T, Kayğın O, Göktaş M, Hazer B (2016) Synthesis and characterization of graft copolymers based on polyepichlorohydrin via reversible addition-fragmentation chain transfer polymerization. J Macromol Sci Part A: Pure Appl Chem 53:362–367CrossRef
27.
Zurück zum Zitat Şanal T, Oruç O, Öztürk T, Hazer B (2015) Synthesis of pH- and thermo-responsive poly(ɛ-caprolactone-b-4-vinyl benzyl-g-dimethyl amino ethyl methacrylate) brush type graft copolymers via raft polymerization. J Polym Res 22:1–12CrossRef Şanal T, Oruç O, Öztürk T, Hazer B (2015) Synthesis of pH- and thermo-responsive poly(ɛ-caprolactone-b-4-vinyl benzyl-g-dimethyl amino ethyl methacrylate) brush type graft copolymers via raft polymerization. J Polym Res 22:1–12CrossRef
28.
Zurück zum Zitat Öztürk T, Atalar MN, Göktaş M, Hazer B (2013) One-step synthesis of block-graft copolymers via simultaneous reversible-addition fragmentation chain transfer and ring-opening polymerization using a novel macroinitiator. J Polym Sci A Polym Chem 51:2651–2659CrossRef Öztürk T, Atalar MN, Göktaş M, Hazer B (2013) One-step synthesis of block-graft copolymers via simultaneous reversible-addition fragmentation chain transfer and ring-opening polymerization using a novel macroinitiator. J Polym Sci A Polym Chem 51:2651–2659CrossRef
29.
Zurück zum Zitat Noshay A, Mcgrath JE (1977) Block copolymers: overview and critical survey. Academic Press, New York Noshay A, Mcgrath JE (1977) Block copolymers: overview and critical survey. Academic Press, New York
30.
Zurück zum Zitat Altıntas O, Tunca U (2011) Synthesis of terpolymers by click reactions. Chem Asian J 6:2584–2591CrossRef Altıntas O, Tunca U (2011) Synthesis of terpolymers by click reactions. Chem Asian J 6:2584–2591CrossRef
31.
Zurück zum Zitat Johnson JA, Lu YY, Burts AO, Xia Y, Durrell AC, Tirrell DA, Grubbs RH (2010) Drug-loaded, bivalent-bottle-brush polymers by graft-through romp. Macromolecules 43:10326–10335CrossRef Johnson JA, Lu YY, Burts AO, Xia Y, Durrell AC, Tirrell DA, Grubbs RH (2010) Drug-loaded, bivalent-bottle-brush polymers by graft-through romp. Macromolecules 43:10326–10335CrossRef
32.
Zurück zum Zitat Johnson JA, Lu YY, Burts AO, Lim Y, Finn MG, Koberstein JT, Turro NJ, Tirrell DA, Grubbs RH (2011) Core-clickable peg-branch-azide bivalent-bottle-brush polymers by romp: grafting-through and clicking-to. J Am Chem Soc 133:559–566CrossRef Johnson JA, Lu YY, Burts AO, Lim Y, Finn MG, Koberstein JT, Turro NJ, Tirrell DA, Grubbs RH (2011) Core-clickable peg-branch-azide bivalent-bottle-brush polymers by romp: grafting-through and clicking-to. J Am Chem Soc 133:559–566CrossRef
33.
Zurück zum Zitat Zhang M, Estournès C, Bietsch W, Müller AHE (2004) Superparamagnetic hybrid nanocylinders. Adv Funct Mater 14:871–882CrossRef Zhang M, Estournès C, Bietsch W, Müller AHE (2004) Superparamagnetic hybrid nanocylinders. Adv Funct Mater 14:871–882CrossRef
34.
Zurück zum Zitat Djalali R, Li S-Y, Schmidt M (2002) Amphipolar core−shell cylindrical brushes as templates for the formation of gold clusters and nanowires. Macromolecules 35:4282–4288CrossRef Djalali R, Li S-Y, Schmidt M (2002) Amphipolar core−shell cylindrical brushes as templates for the formation of gold clusters and nanowires. Macromolecules 35:4282–4288CrossRef
35.
Zurück zum Zitat Zhang M, Drechsler M, Muller AHE (2004) Template-controlled synthesis of wire-like cadmium sulfide nanoparticle assemblies within core−shell cylindrical polymer brushes. Chem Mater 16:537–543CrossRef Zhang M, Drechsler M, Muller AHE (2004) Template-controlled synthesis of wire-like cadmium sulfide nanoparticle assemblies within core−shell cylindrical polymer brushes. Chem Mater 16:537–543CrossRef
36.
Zurück zum Zitat Li C, Gunari N, Fischer K, Janshoff A, Schmidt M (2004) New perspectives for the design of molecular actuators: thermally induced collapse of single macromolecules from cylindrical brushes to spheres. Angew Chem Int Ed 43:1101–1104CrossRef Li C, Gunari N, Fischer K, Janshoff A, Schmidt M (2004) New perspectives for the design of molecular actuators: thermally induced collapse of single macromolecules from cylindrical brushes to spheres. Angew Chem Int Ed 43:1101–1104CrossRef
37.
Zurück zum Zitat Huang K, Rzayev J (2009) Well-defined organic nanotubes from multicomponent bottlebrush copolymers. J Am Chem Soc 131:6880–6885CrossRef Huang K, Rzayev J (2009) Well-defined organic nanotubes from multicomponent bottlebrush copolymers. J Am Chem Soc 131:6880–6885CrossRef
38.
Zurück zum Zitat Cheng C, Qi K, Khoshdel E, Wooley KL (2006) Tandem synthesis of core−shell brush copolymers and their transformation to peripherally cross-linked and hollowed nanostructures. J Am Chem Soc 128:6808–6809CrossRef Cheng C, Qi K, Khoshdel E, Wooley KL (2006) Tandem synthesis of core−shell brush copolymers and their transformation to peripherally cross-linked and hollowed nanostructures. J Am Chem Soc 128:6808–6809CrossRef
39.
Zurück zum Zitat Furuhashi Y, Iwata T, Kimura Y, Doi Y (2003) Structural characterization and enzymatic degradation of a-, b-, and g-crystalline forms for poly(b-propiolactone). Macromol Biosci 3:462–470CrossRef Furuhashi Y, Iwata T, Kimura Y, Doi Y (2003) Structural characterization and enzymatic degradation of a-, b-, and g-crystalline forms for poly(b-propiolactone). Macromol Biosci 3:462–470CrossRef
40.
Zurück zum Zitat Cortizo MS, Molinuevo MS, Cortizo AM (2008) Biocompatibility and biodegradation of polyester and polyfumarate based-scaffolds for bone tissue engineering. J Tissue Eng Regen Med 2:33–42CrossRef Cortizo MS, Molinuevo MS, Cortizo AM (2008) Biocompatibility and biodegradation of polyester and polyfumarate based-scaffolds for bone tissue engineering. J Tissue Eng Regen Med 2:33–42CrossRef
41.
Zurück zum Zitat Cortizo MS, Alessandrini JL, Etcheverr SB, Cortizo AM (2001) A vanadium/aspirin complex controlled release using a poly(beta-propiolactone) film. Effects on osteosarcoma cells. J Biomater Sci Polym Ed 12:945–959CrossRef Cortizo MS, Alessandrini JL, Etcheverr SB, Cortizo AM (2001) A vanadium/aspirin complex controlled release using a poly(beta-propiolactone) film. Effects on osteosarcoma cells. J Biomater Sci Polym Ed 12:945–959CrossRef
42.
Zurück zum Zitat Tasaka S, Kawaguchi M, Inagaki N (1998) Ferroelectric behavior in poly(beta-propiolactone). Eur Polym J 34:1743–1745CrossRef Tasaka S, Kawaguchi M, Inagaki N (1998) Ferroelectric behavior in poly(beta-propiolactone). Eur Polym J 34:1743–1745CrossRef
43.
Zurück zum Zitat Zhang D, Hillmyer MA, Tolman WB (2004) A new synthetic route to poly[3-hydroxypropionic acid] (P[3-HP]): ring-opening polymerization of 3-HP macrocyclic esters. Macromolecules 37:8198–8200CrossRef Zhang D, Hillmyer MA, Tolman WB (2004) A new synthetic route to poly[3-hydroxypropionic acid] (P[3-HP]): ring-opening polymerization of 3-HP macrocyclic esters. Macromolecules 37:8198–8200CrossRef
44.
Zurück zum Zitat Andreessen B, Lange AB, Robenek H, Steinbuchel A (2010) Conversion of glycerol to poly(3-hydroxypropionate) in recombinant escherichia coli. Appl Environ Microbiol 76:622–626CrossRef Andreessen B, Lange AB, Robenek H, Steinbuchel A (2010) Conversion of glycerol to poly(3-hydroxypropionate) in recombinant escherichia coli. Appl Environ Microbiol 76:622–626CrossRef
45.
Zurück zum Zitat Suehiro K, Chatani Y, Tadokoro H (1975) Structural studies of polyesters. VI. Disordered crystal structure (form II) of poly(β-propiolactone). Polym J 7:352–358CrossRef Suehiro K, Chatani Y, Tadokoro H (1975) Structural studies of polyesters. VI. Disordered crystal structure (form II) of poly(β-propiolactone). Polym J 7:352–358CrossRef
46.
Zurück zum Zitat Kricheldorf HR, Scharnagl N (1996) Polylactones 33. The role of deprotonation in the anionic polymerization of β-propiolactone. Polymer 37:1405–1411CrossRef Kricheldorf HR, Scharnagl N (1996) Polylactones 33. The role of deprotonation in the anionic polymerization of β-propiolactone. Polymer 37:1405–1411CrossRef
47.
Zurück zum Zitat Ohnishi S, Sugimoto S, Hayashi K, Nitta I (1964) The Anisotropy of the ESR Spectrum of Irradiated Poly(β-propiolactone). Bull Chem Soc Jpn 37:524–527CrossRef Ohnishi S, Sugimoto S, Hayashi K, Nitta I (1964) The Anisotropy of the ESR Spectrum of Irradiated Poly(β-propiolactone). Bull Chem Soc Jpn 37:524–527CrossRef
48.
Zurück zum Zitat Watanabe M, Togo M, Sanui K, Ogata N, Kobayashi T, Ohtaki Z (1984) Ionic conductivity of polymer complexes formed by poly(/3-propiolactone) and lithium perchlorate. Macromolecules 17:2908–2912CrossRef Watanabe M, Togo M, Sanui K, Ogata N, Kobayashi T, Ohtaki Z (1984) Ionic conductivity of polymer complexes formed by poly(/3-propiolactone) and lithium perchlorate. Macromolecules 17:2908–2912CrossRef
49.
Zurück zum Zitat Evstropov AA, Lebedev BV, Kulagina TG, Lyudvig EB, Belen’kaya BG (1979) The thermodynamic properties of β-propiolactone, its polymer, and its polymerization in the 0–400 °K range. Polymer Science USSR 21:2249–2256CrossRef Evstropov AA, Lebedev BV, Kulagina TG, Lyudvig EB, Belen’kaya BG (1979) The thermodynamic properties of β-propiolactone, its polymer, and its polymerization in the 0–400 °K range. Polymer Science USSR 21:2249–2256CrossRef
50.
Zurück zum Zitat Rosenoasser D, Casas AS, Figini RV (1982) Thermodynamic and hydrodynamic properties of aliphatic polyesters, 1. Solubility, intrinsic viscosity, and molecular weight of poly(β-propiolactone). Macromol Chem Phys 183:3067–3073CrossRef Rosenoasser D, Casas AS, Figini RV (1982) Thermodynamic and hydrodynamic properties of aliphatic polyesters, 1. Solubility, intrinsic viscosity, and molecular weight of poly(β-propiolactone). Macromol Chem Phys 183:3067–3073CrossRef
51.
Zurück zum Zitat Suzuki Y, Taguchi S, Hisano T, Toshima K, Matsumura S, Doi Y (2003) Correlation between structure of the lactones and substrate specificity in enzyme-catalyzed polymerization for the synthesis of polyesters. Biomacromolecules 4:537–543CrossRef Suzuki Y, Taguchi S, Hisano T, Toshima K, Matsumura S, Doi Y (2003) Correlation between structure of the lactones and substrate specificity in enzyme-catalyzed polymerization for the synthesis of polyesters. Biomacromolecules 4:537–543CrossRef
52.
Zurück zum Zitat Nobes GAR, Kazlauskas RJ, Marchessault RH (1996) Lipase-catalyzed ring-opening polymerization of lactones: a novel route to poly(hydroxyalkanoate)s. Macromolecules 29:4829–4833CrossRef Nobes GAR, Kazlauskas RJ, Marchessault RH (1996) Lipase-catalyzed ring-opening polymerization of lactones: a novel route to poly(hydroxyalkanoate)s. Macromolecules 29:4829–4833CrossRef
53.
Zurück zum Zitat Breslow DS, Hulse GE, Matlack AS (1957) Synthesis of poly-β-alanine from acrylamide. a novel synthesis of β-alanine. J Am Chem Soc 79:3760–3763CrossRef Breslow DS, Hulse GE, Matlack AS (1957) Synthesis of poly-β-alanine from acrylamide. a novel synthesis of β-alanine. J Am Chem Soc 79:3760–3763CrossRef
54.
Zurück zum Zitat Saegusa T, Kobayashi S, Kimura Y (1974) Hydrogen-transfer polymerization of acrylic acid to poly(β-propiolactone). Macromolecules 7:256–258CrossRef Saegusa T, Kobayashi S, Kimura Y (1974) Hydrogen-transfer polymerization of acrylic acid to poly(β-propiolactone). Macromolecules 7:256–258CrossRef
55.
Zurück zum Zitat Yamada B, Yasuda Y, Matsushita T, Otsu V (1976) Preparation of polyester from acrylic acid in the presence of crown ether. J Polym Sci Part C: Polym Lett 14:277–281 Yamada B, Yasuda Y, Matsushita T, Otsu V (1976) Preparation of polyester from acrylic acid in the presence of crown ether. J Polym Sci Part C: Polym Lett 14:277–281
56.
Zurück zum Zitat Çatıker E, Güven O, Salih B (2018) Novel hydrophobic macromonomers for potential amphiphilic block copolymers. Polym Bull 75:47–60CrossRef Çatıker E, Güven O, Salih B (2018) Novel hydrophobic macromonomers for potential amphiphilic block copolymers. Polym Bull 75:47–60CrossRef
57.
Zurück zum Zitat Mukbaniani, O.V., Tatrishvili, T.N., & Abadie, M.J.M. (2019). Science and technology of polymers and advanced materials. Applied research methods. Apple academic press, CRC press, Taylor & Francis Group, 1st edition Mukbaniani, O.V., Tatrishvili, T.N., & Abadie, M.J.M. (2019). Science and technology of polymers and advanced materials. Applied research methods. Apple academic press, CRC press, Taylor & Francis Group, 1st edition
58.
Zurück zum Zitat Balcı M, Allı A, Hazer B, Güven O, Cavicchi K, Cakmak M (2010) Synthesis and characterization of novel comb-type amphiphilic graft copolymers containing polypropylene and polyethylene glycol. Polym Bull 64:691–705CrossRef Balcı M, Allı A, Hazer B, Güven O, Cavicchi K, Cakmak M (2010) Synthesis and characterization of novel comb-type amphiphilic graft copolymers containing polypropylene and polyethylene glycol. Polym Bull 64:691–705CrossRef
59.
Zurück zum Zitat Hmamouchi M, Prudhomme RE (1988) Synthesis and polymerization of racemic and optically active substituted ß-propiolactones. v. α-methyl ß-propiolactone. J Polym Sci A Polym Chem 26:1593–1607CrossRef Hmamouchi M, Prudhomme RE (1988) Synthesis and polymerization of racemic and optically active substituted ß-propiolactones. v. α-methyl ß-propiolactone. J Polym Sci A Polym Chem 26:1593–1607CrossRef
60.
Zurück zum Zitat Park WH, Lenz RW, Goodwin S (1998) Epoxidation of bacterial polyesters with unsaturated side chains. i. Production and epoxidation of polyesters from 10-undecenoic acid. Macromolecules 31:1480–1486CrossRef Park WH, Lenz RW, Goodwin S (1998) Epoxidation of bacterial polyesters with unsaturated side chains. i. Production and epoxidation of polyesters from 10-undecenoic acid. Macromolecules 31:1480–1486CrossRef
61.
Zurück zum Zitat Erduranlı H, Hazer B, Borcaklı M (2008) Post polymerization of saturated and unsaturated poly(3-hydroxy alkanoate)s. Macromol Symp 269:161–169CrossRef Erduranlı H, Hazer B, Borcaklı M (2008) Post polymerization of saturated and unsaturated poly(3-hydroxy alkanoate)s. Macromol Symp 269:161–169CrossRef
62.
Zurück zum Zitat Andreessen B, Taylor N, Steinbüchel A (2014) Poly(3-hydroxypropionate): a promising alternative to fossil fuel-based materials. Appl Environ Microbiol 80:6574–6582CrossRef Andreessen B, Taylor N, Steinbüchel A (2014) Poly(3-hydroxypropionate): a promising alternative to fossil fuel-based materials. Appl Environ Microbiol 80:6574–6582CrossRef
63.
Zurück zum Zitat Törmälä P (1974) Determination of glass transition temperature of poly(ethylene glycol) by spin probe technique. Eur Polym J 10:519–521CrossRef Törmälä P (1974) Determination of glass transition temperature of poly(ethylene glycol) by spin probe technique. Eur Polym J 10:519–521CrossRef
64.
Zurück zum Zitat Şanal T, Koçak İ, Hazer B (2017) Synthesis of comb-type amphiphilic graft copolymers derived from chlorinated poly(ε-caprolactone) via click reaction. Polym Bull 74:977–995CrossRef Şanal T, Koçak İ, Hazer B (2017) Synthesis of comb-type amphiphilic graft copolymers derived from chlorinated poly(ε-caprolactone) via click reaction. Polym Bull 74:977–995CrossRef
65.
Zurück zum Zitat Imanishi, Y. 1996. Editors-in-chief: Allen, G., and Bevington, J.C. in ";Comperansive polymer science and supplements", Carbanionic polymerization: hydrogen migration polymerization. Pergamon, Elsevier, pp.451-455 Imanishi, Y. 1996. Editors-in-chief: Allen, G., and Bevington, J.C. in ";Comperansive polymer science and supplements", Carbanionic polymerization: hydrogen migration polymerization. Pergamon, Elsevier, pp.451-455
Metadaten
Titel
Synthesis and characterization of novel ABA type poly(Ester-ether) triblock copolymers
verfasst von
Efkan Çatıker
Temel Öztürk
Mehmet Atakay
Bekir Salih
Publikationsdatum
01.05.2019
Verlag
Springer Netherlands
Erschienen in
Journal of Polymer Research / Ausgabe 5/2019
Print ISSN: 1022-9760
Elektronische ISSN: 1572-8935
DOI
https://doi.org/10.1007/s10965-019-1778-5

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