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Molecular Weight-Dependent, Flexible Phase Behaviors of Amphiphilic Block Copolymer/Additive Complexes in Aqueous Solution

机译:水溶液中两亲嵌段共聚物/添加剂复合物的分子量依赖性,柔性相行为

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摘要

Pluronic amphiphilic block copolymers, well known to have a phase behavior can be controlled by external conditions, have a wide range of potential for applications such as nanotemplates or nanobuilding blocks. However, the phase behaviors of Pluronic block copolymer/additive complexes with highly ordered phases have not been fully investigated. Here, we report the unusual molecular weight-dependent self-assembly of Pluronic block copolymer/additive complexes. Depending on the temperature and additive, Pluronic P65 block copolymer with a lower molecular weight showed the closed loop-like (CLL) phase behavior with the disorder-order-disorder-order phase transition in aqueous solution, whereas Pluronic P105 and P85 block copolymers with higher molecular weights underwent highly ordered continuous phase transitions with face centered cubic (FCC), hexagonal, and lamellar phases. It is expected that the specific phase behavior of the block copolymer/additive complex can be applied in optical devices such as nanotemplates or optical sensors for a highly ordered superlattice. Furthermore, this study provides a new route to control the phase behavior of the block copolymers without a complicated process.
机译:众所周知的Pluronic两亲嵌段共聚物可以通过外部条件控制相位行为,具有广泛的应用诸如纳米管件或纳米制块的潜力。然而,Purronic嵌段共聚物/添加剂复合物具有高度有序相的相行为尚未得到充分研究。在这里,我们报告了P​​luronic嵌段共聚物/添加剂复合物的异常分子量依赖性自组装。取决于温度和添加剂,具有较低分子量的Pluronic P65嵌段共聚物显示出闭环样(CLL)相行为与水溶液中的无序秩序排序顺序相转变,而Pluronic P105和P85嵌段共聚物更高的分子量经历了高度有序的连续相转变,具有面为中心的立方(FCC),六边形和层状相。预期嵌段共聚物/添加剂复合物的比相行为可以应用于光学装置,例如用于高度有序的超晶格的纳米管道或光学传感器。此外,该研究提供了一种新的途径来控制嵌段共聚物的相行为而没有复杂的过程。

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