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β-月桂烯/甲基丙烯酸异冰片酯SG1氮氧自由基介导的可控自由基聚合:梯度共聚物、二嵌段共聚物和三嵌段共聚物的合成与表征

β-Myrcene/isobornyl methacrylate SG1 nitroxide-mediated controlled radical polymerization: synthesis and characterization of gradient, diblock and triblock copolymers.

作者信息

Métafiot Adrien, Gagnon Lysandre, Pruvost Sébastien, Hubert Pascal, Gérard Jean-François, Defoort Brigitte, Marić Milan

机构信息

Department of Chemical Engineering, McGill University 3610 University St. Montreal H3A 0C5 Quebec Canada

Ingénierie des Matériaux Polymères (IMP), CNRS UMR5223, INSA Lyon 17 Jean Capelle Avenue, 69621 Villeurbanne France.

出版信息

RSC Adv. 2019 Jan 25;9(6):3377-3395. doi: 10.1039/c8ra09192g. eCollection 2019 Jan 22.

Abstract

β-Myrcene (My), a natural 1,3-diene, and isobornyl methacrylate (IBOMA), from partially bio-based raw materials sources, were copolymerized by nitroxide-mediated polymerization (NMP) in bulk using the SG1-based BlocBuilder™ alkoxyamine functionalized with an -succinimidyl ester group, NHS-BlocBuilder, at = 100 °C with initial IBOMA molar feed compositions = 0.10-0.90. Copolymer reactivity ratios were = 1.90-2.16 and = 0.02-0.07 using Fineman-Ross, Kelen-Tudos and non-linear least-squares fitting to the Mayo-Lewis terminal model and indicated the possibility of gradient My/IBOMA copolymers. A linear increase in molecular weight conversion and a low dispersity ( ≤ 1.41) were exhibited by My/IBOMA copolymerization with ≤ 0.80. My-rich and IBOMA-rich copolymers were shown to have a high degree of chain-end fidelity by performing subsequent chain-extensions with IBOMA and/or My, and by P NMR analysis. The preparation by NMP of My/IBOMA thermoplastic elastomers (TPEs), mostly bio-sourced, was then attempted. IBOMA-My-IBOMA triblock copolymers containing a minor fraction of My or styrene (S) units in the outer hard segments ( = 51-95 kg mol, = 1.91-2.23 and = 0.28-0.36) were synthesized using SG1-terminated poly(ethylene--butylene) dialkoxyamine. The micro-phase separation was suggested by the detection of two distinct s at about -60 °C and +180 °C and confirmed by atomic force microscopy (AFM). A plastic stress-strain behavior (stress at break = 3.90 ± 0.22 MPa, elongation at break = 490 ± 31%) associated to an upper service temperature of about 140 °C were also highlighted for these triblock polymers.

摘要

β-月桂烯(My)是一种天然的1,3-二烯烃,甲基丙烯酸异冰片酯(IBOMA)则来自部分生物基原料,二者通过氮氧自由基介导聚合(NMP)进行本体共聚。反应采用基于SG1的、用-N-琥珀酰亚胺酯基团官能化的BlocBuilder™烷氧基胺(NHS-BlocBuilder),在100℃下进行,初始IBOMA的摩尔进料组成f = 0.10 - 0.90。使用Fineman-Ross法、Kelen-Tudos法以及对Mayo-Lewis末端模型进行非线性最小二乘法拟合,得到共聚物的竞聚率rMy = 1.90 - 2.16,rIBOMA = 0.02 - 0.07,这表明有可能合成梯度My/IBOMA共聚物。当f ≤ 0.80时,My/IBOMA共聚反应表现出分子量随转化率线性增加且分散度低(Đ ≤ 1.41)的特点。通过用IBOMA和/或My进行后续的链延伸以及1H NMR分析表明,富含My和富含IBOMA的共聚物具有高度的链端保真度。随后尝试通过NMP制备主要源自生物的My/IBOMA热塑性弹性体(TPE)。使用SG1封端的聚(乙烯 - 共 - 丁烯)二烷氧基胺合成了在外部硬段中含有少量My或苯乙烯(S)单元的IBOMA-My-IBOMA三嵌段共聚物(Mn = 51 - 95 kg mol,Đ = 1.91 - 2.23,f = 0.28 - 0.36)。在约 -60℃和 +180℃处检测到两个不同的峰,表明存在微相分离,这一结果通过原子力显微镜(AFM)得到了证实。这些三嵌段聚合物还表现出塑性应力 - 应变行为(断裂应力σb = 3.90 ± 0.22 MPa,断裂伸长率εb = 490 ± 31%),其上限使用温度约为140℃。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54fc/9060242/d942fbf5cfee/c8ra09192g-s1.jpg

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