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Nanostructured Mesoporous Silica Wires with Intrawire Lamellae via Evaporation-Induced Self-Assembly in Space-Confined Channels

机译:纳米结构介孔二氧化硅电线,具有内侧薄片通过蒸发诱导的自组装在空间限制通道中

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摘要

Evaporation-induced self-assembly (EISA) of silica sol-gel ethanol-water solution mixtures with block-copolymer were studied inside uniform micro/nano-channels. Nanostructured mesoporous silica wires, with various intrawire self-assembly structures including lamellae, were prepared via EISA process but in space-confined channels with the diameter ranging from 50 nm to 200 nm. Membranes made of anodized aluminum oxide (AAO) and track-etched polycarbonate (EPC) were utilized as the arrays of space-confined channels (i.e., 50, 100, and 200 nm EPC and 200 nm AAO) for infiltration and drying of mixture solutions; these substrate membranes were submerged in mixture solutions consisting of a silica precursor, a structure-directing agent, ethanol, and water. After the substrate channels were filled with the solution under vacuum impregnation, the membrane was removed from the solution and dried in air. The silica precursor used was tetraethyl othosilicate (TEOS), and the structure-directing agent employed was triblock copolymer Pluronic-123 (P123). It was found that the formation of the mesoporous nanostructures in silica wires within uniform channels were significantly affected by the synthesis conditions including (1) preassemble TEOS aging time, (2) the evaporation rate during the vacuum impregnation, and (3) the air-dry temperature. The obtained intrawire structures, including 2D hexagonal rods and lamellae, were studied by scanning transmission electron microscopy (STEM). A steric hindrance effect seems to explain well the observed polymer-silica mesophase formation tailored by TEOS aging time. The evaporation effect, air-drying effect, and AAO versus EPC substrate effect on the mesoporous structure of the formed silica wires were also presented and discussed.
机译:在均匀的微/纳米通道内研究了硅溶胶 - 凝胶乙醇水溶液混合物的蒸发诱导的自组装(EISA)。纳米结构介孔二氧化硅线,具有各种入口自组装结构,包括薄片,通过EISA工艺制备,但在空间限制通道中,直径为50nm至200nm。用阳极氧化铝(AAO)和轨道蚀刻的聚碳酸酯(EPC)制成的膜用作空间限制通道(即,50,100和200nm和200nM AAO)的阵列,用于渗透和干燥混合物溶液;将这些衬底膜浸没在由二氧化硅前体,结构引导剂,乙醇和水组成的混合物溶液中。在真空浸渍下用溶液填充底物通道后,将膜从溶液中除去并在空气中干燥。使用的二氧化硅前体是四乙基奥硅酸盐(TEOS),使用的结构引导剂是三嵌段共聚物Pluronic-123(P123)。结果发现,在均匀通道内的二氧化硅线中形成介孔纳米结构受到合成条件的显着影响,包括(1)预溶剂TEOS老化时间,(2)真空浸渍过程中的蒸发速率,(3)空气 - 干温。通过扫描透射电子显微镜(Stem)研究所获得的内轴结构,包括2D六方杆和薄片。空间障碍效应似乎易于通过TEOS老化时间裁定的观察到的聚合物 - 二氧化硅中间相形成。还呈现并讨论了蒸发效果,空气干燥效应和AAO对EPC底物对所形成的二氧化硅线的介孔结构的影响。

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