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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Formation of hexagonal and cubic fluorescent periodic mesoporous organosilicas in the channels of anodic alumina membranes
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Formation of hexagonal and cubic fluorescent periodic mesoporous organosilicas in the channels of anodic alumina membranes

机译:在阳极氧化铝膜通道中形成六方和立方荧光周期性中孔有机二氧化硅

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摘要

The synthesis of periodic mesoporous organosilicas (PMOs) in the confinement of porous anodic alumina membranes (AAMs) was successfully achieved through a modified evaporation-induced self-assembly (EISA) process. l,3,5-Tris(4-triethoxysilylstyryl)benzene, (a three-armed oligo(phenylenevinylene) organosilane compound, abbr. 3a-OPV), the precursor of the first reported charge-conducting PMO, was used as an organosilica source. Triblock-copolymers Pluronic F127 (EO_(106) PO_(70) EO_(106)or F108 (EO_(132) PO_(50) EO_(132)) were used as structure directing agents. The block-copolymer F127 led to a 2D-hexagonal circular mesostructure within the MM channels and the block copolymer Pluronic F108 resulted in a mesophase with a body-centered cubic HmZm) structure. Compared to the previously reported 3a-OPV-PMO film, the resulting hierarchical PMO/AAM systems have improved features, that is, the synthesized PMOs have a pore size of around 10 nm and the compounds are found to be stable against thermal treatment at temperatures of up to 200 °C and they are also stable in the electron beam of the electron microscope. Additionally, both of the resulting hierarchical mesoporous composites show fluorescence in the visible region due to the strongly interacting phenylenevinylene chromophores in the PMO frameworks.
机译:通过改进的蒸发诱导自组装(EISA)工艺成功地完成了在多孔阳极氧化铝膜(AAM)范围内的周期性中孔有机二氧化硅(PMO)的合成。 1,3,5-三(4-三乙氧基甲硅烷基苯乙烯基)苯(三臂低聚(亚苯基亚乙烯基)有机硅烷化合物,缩写3a-OPV)(报道的第一个电荷传导PMO的前体)用作有机硅源。使用三嵌段共聚物Pluronic F127(EO_(106)PO_(70)EO_(106)或F108(EO_(132)PO_(50)EO_(132))作为结构导向剂。嵌段共聚物F127导致2D MM通道内的六方六方圆形介观结构和嵌段共聚物Pluronic F108导致了具有体心立方HmZm结构的中间相。与先前报道的3a-OPV-PMO膜相比,所得的分层PMO / AAM系统具有改进的功能,即,合成的PMO具有约10 nm的孔径,并且发现该化合物对温度下的热处理稳定。温度高达200°C,并且它们在电子显微镜的电子束中也很稳定。另外,由于在PMO骨架中强烈相互作用的亚苯基亚乙烯基生色团,两种所得的分层中孔复合材料均在可见光区域显示荧光。

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