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首页> 外文期刊>Macromolecules >Self-Assembly of Binary Mesocrystals from Blends of BABCB Multiblock Copolymers and ABC Triblock Copolymers
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Self-Assembly of Binary Mesocrystals from Blends of BABCB Multiblock Copolymers and ABC Triblock Copolymers

机译:BABCB多嵌段共聚物和ABC Triblock共聚物共混物的二元介晶自组装

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摘要

The phase behavior of binary blends composed of BABCB-type pentablock terpolymers and ABC-type triblock copolymers is investigated using the self-consistent field theory in the grand canonical ensemble. Specifically, the study is focused on how the simpler copolymers regulate the phase behavior of two sphere-forming multiblock copolymers of the type B(1)AB(2)CB(1) and AB(2)CB(3). For certain compositions, these two multiblock copolymers self-assemble to form mesocrystalline phases composed of binary A and C spheres with the ZnSC and ReO3 structures, respectively. It is discovered that the addition of symmetric ABC triblocks or AB diblocks to the two multiblock copolymers leads to the formation of different binary crystalline phases including symmetric binary crystalline phase of NaCl type for the A/C-component symmetric blends and asymmetric Cu2O, SnI4, TiO2, and CaF2 phases for the A/C-component asymmetric blends. In particular, the binary mesocrystals of the Cu2O and SnI4 structures observed in the blends of the tail-symmetric B(1)AB(2)CB(1) terpolymers and the AB diblock copolymers are new stable phases which have not been observed in the B(1)AB(2)CB(3) terpolymers melts. The theoretical results demonstrate that blending of block copolymers with specially designed multiblock terpolymers could provide an efficient route to fabricate binary mesocrystals.
机译:使用自洽场理论在大正则集合中研究了由BABCB型五嵌段三元共聚物和ABC型三嵌段共聚物组成的二元共混物的相行为。具体来说,该研究的重点是更简单的共聚物如何调节B(1)AB(2)CB(1)和AB(2)CB(3)型两种球形形成多嵌段共聚物的相态。对于某些组成,这两种多嵌段共聚物会自组装形成介晶相,分别由具有ZnSC和ReO3结构的二元A和C球组成。已发现向两种多嵌段共聚物中添加对称的ABC三嵌段或AB二嵌段会导致形成不同的二元晶相,包括用于A / C组分对称共混物的NaCl型对称二元晶相和不对称的Cu2O,SnI4, A / C组分不对称共混物的TiO2和CaF2相。特别是,在尾对称的B(1)AB(2)CB(1)三元共聚物和AB二嵌段共聚物的共混物中观察到的Cu2O和SnI4结构的二元介观晶体是新的稳定相,在该相中没有发现。 B(1)AB(2)CB(3)三元共聚物熔化。理论结果表明,将嵌段共聚物与经过特殊设计的多嵌段三元共聚物共混可以提供一种制备二元介晶的有效途径。

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