Morphological stability of worm-like vesicles consisting of amphiphilic diblock copolymer against external stress

E. Yoshida
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引用次数: 2

Abstract

The morphological stability of vesicles consisting of an amphiphilic poly(methacrylic acid)-block-poly(methyl methacrylate-random-methacrylic acid) diblock copolymer, PMAA-b-P(MMA-r-MAA), was investigated against the external stresses of pH, salt concentration and polyamine.  The worm-like vesicles underwent a partial fusion at pH 12, however, they retained the worm-like shape at pH 13 due to electrostatic repulsion.  On the other hand, the spherical vesicles were completely fused at pH 12, transformed into a sheet and did not retain their shape under the higher basic condition.  Similarly, the worm-like vesicles retained their morphology in 0.1-mol% solutions of sodium chloride and sodium dodecyl sulfate, while the spherical vesicles caused division and fusion even at much lower concentrations.  Poly(2-dimethylaminoethyl methacrylate) (PDMAEMA) transformed the worm-like vesicle into a cleavable sheet, while it changed the spherical vesicles into a sheet without a specific form.  It was found that this transformation based on the acid-base interaction between the carboxylic acid of the MAA block and the amine of the PDMAEMA was dependent on the molecular weight of the PDMAEMA.  The short PDMAMA retarded the fusion of the vesicles.
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由两亲二嵌段共聚物组成的蠕虫状囊泡对外部应力的形态稳定性
研究了由两亲性聚(甲基丙烯酸)-嵌段聚(甲基丙烯酸甲酯-随机-甲基丙烯酸)二嵌段共聚物PMAA-b-P(MMA-r-MAA)组成的囊泡在pH、盐浓度和多胺等外力作用下的形态稳定性。在pH值为12时,蠕虫状囊泡发生部分融合,但在pH值为13时,由于静电斥力,囊泡仍保持蠕虫状。另一方面,在pH值为12时,球形囊泡完全融合,转变成片状,在较高的碱性条件下不保持其形状。同样,在0.1 mol%的氯化钠和十二烷基硫酸钠溶液中,蠕虫状囊泡保持其形态,而球形囊泡即使在更低的浓度下也能分裂和融合。聚(2-二甲氨基乙基甲基丙烯酸酯)(PDMAEMA)将蠕虫状囊泡转变为可切割的薄片,而将球形囊泡转变为没有特定形状的薄片。研究发现,这种基于MAA嵌段羧酸与PDMAEMA胺之间酸碱相互作用的转化依赖于PDMAEMA的分子量。短的PDMAMA延缓了囊泡的融合。
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