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Rod-coil type miktoarm star copolymers consisting of polyfluorene and polylactide : precise synthesis and structure-morphology relationship

机译:由聚芴和聚丙交酯组成的棒-环型微臂星形共聚物:精确的合成与结构-形态关系

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摘要

A series of rod-coil miktoarm star copolymers consisting of poly[2,7-(9,9-dihexylfluorene)] (PF) and polylactide (PLA) arms as the rod and coil segments, respectively, were synthesized by combining the chain-growth Suzuki-Miyaura coupling polymerization and living ring-opening polymerization (ROP). First, PFs having a hydroxyl group at the alpha-chain end (PF-BnOH) were prepared by the polymerization of 2-(7-bromo-9,9-dihexyl-9H-fluorene-2-yl) 4,4,5,5-tetramethyl-1,2,3-dioxaborolane using the initiating system of 4-(tetrahydropyran-2'-yloxymethyl)-iodobenzene/Pd-2(dba)(3)/t-Bu3P. After a couple of chain end modifications, PFs having one, two, and three hydroxyl groups at the alpha-chain end (PF-OH, PF-(OH)(2), and PF-(OH)(3), respectively) were obtained with dispersity (D) values of less than 1.29. The obtained PF-OH, PF-(OH)(2), and PF-(OH)(3) were used as the initiators for the organic base-catalyzed ROP of rac-lactide to produce the AB type linear diblock (PF-b-PLA) and AB(2) and AB(3) type miktoarm star copolymers (PF-b-(PLA)(2) and PF-b-(PLA)(3), respectively). The self-assembled nanostructures in the thermally-annealed PF-b-(PLA)(x)s (x = 1, 2, and 3) were evaluated in the bulk by synchrotron small angle X-ray scattering (SAXS) and transmission electron microscopy (TEM). The PF-b-PLA, PF-b-(PLA)(2), and PF-b-(PLA)(3) with the PF weight fractions of 0.52-0.56 were found to form poorly ordered PLA cylindrical structures in the PF matrix due to a strong rod-rod interaction of the PF segment. On the other hand, these BCPs with the PF weight fractions of 0.22-0.23 exhibited the hexagonally close-packed cylinder (Hex) morphologies, in which the cylindrical PF phase was embedded in the PLA matrix. More interestingly, the domain-spacing (d) values for the Hex morphologies decreased with the increasing PLA arm number despite each BCP having a comparable molecular weight and PF weight fraction: d = 26.4 nm for PF-b-PLA, d = 21.7 nm for PF-b-(PLA)(2), and d = 18.6 nm for PF-b-(PLA)(3).
机译:通过结合链状结构,合成了分别由聚[2,7-(9,9-二己基芴)](PF)和聚丙交酯(PLA)臂组成的一系列棒-线圈微臂星形共聚物。生长铃木-宫浦偶合聚合和活性开环聚合(ROP)。首先,通过2-(7-溴-9,9-二己基-9H-芴-2-基)4,4,5的聚合制备在α链末端具有羟基的PF(PF-BnOH)。 ,使用4-(四氢吡喃-2'-酰氧基甲基)-碘苯/ Pd-2(dba)(3)/ t-Bu3P的引发体系制备5-5-甲基-1,2,3-二氧杂硼烷。经过几次链端修饰后,在α链端具有一个,两个和三个羟基的PF(分别为PF-OH,PF-(OH)(2)和PF-(OH)(3))获得的分散度(D)值小于1.29。将获得的PF-OH,PF-(OH)(2)和PF-(OH)(3)用作外消旋乳酸的有机碱催化ROP的引发剂,以生产AB型线性二嵌段(PF- b-PLA),AB(2)和AB(3)型微臂星形共聚物(分别为PF-b-(PLA)(2)和PF-b-(PLA)(3))。通过同步加速器小角度X射线散射(SAXS)和透射电子评估了热退火PF-b-(PLA)(x)s(x = 1,2,和3)中的自组装纳米结构显微镜(TEM)。发现PF重量分数为0.52-0.56的PF-b-PLA,PF-b-(PLA)(2)和PF-b-(PLA)(3)在PF中形成了排列不良的PLA圆柱结构由于PF段的强杆-杆相互作用而形成矩阵。另一方面,PF分数为0.22-0.23的这些BCP表现出六方密堆积圆柱(Hex)形态,其中圆柱形PF相嵌入PLA基质中。更有趣的是,尽管每个BCP的分子量和PF重量分数相当,但Hex形态的域间距(d)值却随着PLA臂数的增加而降低:对于PF-b-PLA,d = 26.4 nm,d = 21.7 nm对于PF-b-(PLA)(2),d = 18.6nm。

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