首页> 外文OA文献 >From Spherical Mesopores to Worm-Shaped Mesopores: Morphology Transition in Titania-Polystyrene- b -poly(ethylene oxide) Composite Films with Increasing Sol-Gel Reaction Time
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From Spherical Mesopores to Worm-Shaped Mesopores: Morphology Transition in Titania-Polystyrene- b -poly(ethylene oxide) Composite Films with Increasing Sol-Gel Reaction Time

机译:从球形中孔到蠕虫形中孔:溶胶-凝胶反应时间增加的二氧化钛-聚苯乙烯-b-聚环氧乙烷复合薄膜的形貌转变

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摘要

A morphology transition from spherical mesopores to worm-shaped mesopores within titania block copolymer composite thin films has been observed by varying the sol–gel reaction time from 40 min to 48 h in the four-component templating system of polystyrene-$\mathit{b}$-poly(ethylene oxide) (PS-$\mathit{b}$-PEO), 1,4-dioxane, concentrated HCl, and titanium tetraisopropoxide (TTIP) with a PS-$\mathit{b}$-PEO mass concentration of 0.25 wt.-%. The impact of the sol–gel reaction time on the local structure, long-range lateral structure, and vertical structure of the as-prepared, calcined, and UV-degraded thin films as well as the structural changes in solution have been systematically investigated by scanning electron microscopy (SEM), atomic force microscopy (AFM), grazing-incidence small-angle X-ray scattering (GISAXS), X-ray reflectivity (XRR), and dynamic light scattering (DLS). With sol–gel reaction times of up to 5 h, hexagonally organized spherical micelles are present within the as-prepared composite films, in which the core of the spherical micelles is composed of the polystyrene (PS) block, and the corona is composed of the poly(ethylene oxide)–titania (PEO–titania) hybrid. Upon calcination or UV exposure, ordered mesoporous structures are formed owing to the removal of the PS block. With the sol–gel reaction time extended to 25 and 48 h, worm-shaped micelles appear, and their quantity increases with increasing sol–gel reaction time. Worm-shaped mesopores are formed by calcination or UV degradation. The GISAXS results prove that the local structural changes are representative over a macroscopic scale. The XRR results suggest that with the sol–gel reaction time extended to 48 h there is an additional thin layer beneath the mesoporous titania layer owing to the presence of a large amount of worm-shaped micelles. The results of the DLS studies imply that the morphology transition from spherical micelles to worm-shaped micelles is caused by a fusion process of the spherical micelles in solution.
机译:在聚苯乙烯-$ \ mathit {b的四组分模板体系中,通过将溶胶-凝胶反应时间从40 min改变为48 h,可以观察到二氧化钛嵌段共聚物复合薄膜中从球形中孔到蠕虫状中孔的形态转变。 } $-聚环氧乙烷(PS-$ \ mathit {b} $-PEO),1,4-二恶烷,浓盐酸和四异丙氧基钛(TTIP),带有PS-$ \ mathit {b} $-PEO质量浓度为0.25重量%。通过系统研究了溶胶-凝胶反应时间对制备,煅烧和紫外线降解薄膜的局部结构,远距离侧向结构和垂直结构以及溶液结构变化的影响。扫描电子显微镜(SEM),原子力显微镜(AFM),掠入射小角X射线散射(GISAXS),X射线反射率(XRR)和动态光散射(DLS)。溶胶-凝胶反应时间长达5小时,制备的复合膜内存在六角形组织的球形胶束,其中球形胶束的芯由聚苯乙烯(PS)嵌段组成,电晕由聚环氧乙烷-二氧化钛(PEO-二氧化钛)杂化物。在煅烧或紫外线照射下,由于除去了PS嵌段,形成了有序的介孔结构。随着溶胶-凝胶反应时间延长到25和48 h,出现蠕虫状的胶束,并且其数量随着溶胶-凝胶反应时间的增加而增加。蠕虫状的中孔是通过煅烧或紫外线降解形成的。 GISAXS结果证明,局部结构变化在宏观尺度上具有代表性。 XRR结果表明,由于溶胶-凝胶反应时间延长至48 h,由于存在大量蠕虫状胶束,因此在中孔二氧化钛层下方还有一个薄层。 DLS研究的结果暗示从球形胶束到蠕虫形胶束的形态转变是由溶液中球形胶束的融合过程引起的。

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