Byard Sarah J, O'Brien Cate T, Derry Matthew J, Williams Mark, Mykhaylyk Oleksandr O, Blanazs Adam, Armes Steven P
Department of Chemistry , University of Sheffield , Dainton Building , Brook Hill , Sheffield , South Yorkshire S3 7HF , UK . Email:
BASF SE , GMV/P-B001 , 67056 Ludwigshafen , Germany.
Chem Sci. 2019 Nov 12;11(2):396-402. doi: 10.1039/c9sc04197d. eCollection 2020 Jan 14.
It is well-recognized that block copolymer self-assembly in solution typically produces spheres, worms or vesicles, with the relative volume fraction of each block dictating the copolymer morphology. Stimulus-responsive diblock copolymers that can undergo either sphere/worm or vesicle/worm transitions are also well-documented. Herein we report a new amphiphilic diblock copolymer that can form spheres, worms, vesicles or lamellae in aqueous solution. Such self-assembly behavior is unprecedented for a single diblock copolymer of fixed composition yet is achieved simply by raising the solution temperature from 1 °C (spheres) to 25 °C (worms) to 50 °C (vesicles) to 70 °C (lamellae). Heating increases the degree of hydration (and hence the effective volume fraction) of the core-forming block, with this parameter being solely responsible for driving the sphere-to-worm, worm-to-vesicle and vesicle-to-lamellae transitions. The first two transitions exhibit excellent reversibility but the vesicle-to-lamellae transition exhibits hysteresis on cooling. This new thermoresponsive diblock copolymer provides a useful model for studying such morphological transitions and is likely to be of significant interest for theoretical studies.
众所周知,溶液中的嵌段共聚物自组装通常会产生球形、蠕虫状或囊泡状结构,每个嵌段的相对体积分数决定了共聚物的形态。能够发生球形/蠕虫状或囊泡状/蠕虫状转变的刺激响应性二嵌段共聚物也有充分的文献记载。在此,我们报道了一种新型两亲性二嵌段共聚物,它在水溶液中可形成球形、蠕虫状、囊泡状或层状结构。对于固定组成的单一二嵌段共聚物而言,这种自组装行为是前所未有的,但只需将溶液温度从1℃(球形)升高到25℃(蠕虫状),再到50℃(囊泡状),最后到70℃(层状)就能实现。加热会增加形成核的嵌段的水合程度(从而增加有效体积分数),这一参数是驱动球形向蠕虫状、蠕虫状向囊泡状以及囊泡状向层状转变的唯一原因。前两个转变表现出极好的可逆性,但囊泡状向层状的转变在冷却时表现出滞后现象。这种新型热响应性二嵌段共聚物为研究此类形态转变提供了一个有用的模型,可能会引起理论研究的极大兴趣。