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Controlled ATRP Synthesis of Novel Linear-Dendritic Block Copolymers and Their Directed Self-Assembly in Breath Figure Arrays

机译:新型线性-树枝状嵌段共聚物的受控ATRP合成及其在呼吸图形阵列中的定向自组装

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摘要

Herein, we report the formation and characterization of novel amphiphilic linear-dendritic block copolymers (LDBCs) composed of hydrophilic dendritic poly(ether-ester), PEE, blocks and hydrophobic linear poly(styrene), PSt. The LDBCs are synthesized via controlled atom transfer radical polymerization (ATRP) initiated by a PEE macroinitiator. The copolymers formed have narrow molecular mass distributions and are designated as LGn-PSt Mn, in which LG represents the PEE fragment, n denotes the generation of the dendron (n = 1–3), and Mn refers to the average molecular mass of the LDBC (Mn = 3.5–68 kDa). The obtained LDBCs are utilized to fabricate honeycomb films by a static “breath figure” (BF) technique. The copolymer composition strongly affects the film morphology. LDBCs bearing acetonide dendron end groups produce honeycomb films when the PEE fraction is lower than 20%. Pore uniformity increases as the PEE content decreases. For LDBCs with hydroxyl end groups, only the first generation LDBCs yield BF films, but with a significantly smaller pore size (0.23 μm vs. 1–2 μm, respectively). Although higher generation LDBCs with free hydroxyl end groups fail to generate honeycomb films by themselves, the use of a cosolvent or addition of homo PSt leads to BF films with a controllable pore size (3.7–0.42 μm), depending on the LDBC content. Palladium complexes within the two triazole groups in each of the dendron’s branching moieties can also fine-tune the morphology of the BF films.
机译:本文中,我们报道了由亲水性树枝状聚(醚酯),PEE,嵌段和疏水性线性聚(苯乙烯),PSt组成的新型两亲性线性-树状嵌段共聚物(LDBC)。 LDBC是通过PEE大分子引发剂引发的受控原子转移自由基聚合(ATRP)合成的。形成的共聚物具有窄的分子量分布,并称为LGn-PSt Mn,其中LG表示PEE片段,n表示树枝状分子的生成(n = 1-3),Mn表示共聚物的平均分子量。 LDBC(Mn = 3.5–68 kDa)。通过静态“呼吸图”(BF)技术将获得的LDBC用于制造蜂窝膜。共聚物组成强烈影响膜的形态。当PEE分数低于20%时,带有乙炔树突端基的LDBC会产生蜂窝膜。孔的均匀性随PEE含量的减少而增加。对于具有羟基端基的LDBC,只有第一代LDBC会产生BF膜,但孔径要小得多(分别为0.23μm和1-2μm)。尽管具有游离羟基端基的更高一代的LDBC本身不能产生蜂窝膜,但根据LDBC含量的不同,使用助溶剂或添加均聚PSt会导致BF膜的孔径可控(3.7-0.42μm)。每个树枝状支化部分的两个三唑基团内的钯配合物还可以微调高炉膜的形态。

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