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Preparation and properties of novel cross-linked fluoroalkyl end-capped cooligomeric nanoparticles possessing double decker-type aromatic silsesquioxane segments as core units

机译:以双层型芳族倍半硅氧烷链段为核心单元的新型交联氟代烷基封端的低聚纳米粒的制备与性能

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摘要

Cross-linked fluoroalkyl end-capped cooligomers possessing double decker-type aromatic silsesquioxane segments as core units [R_F-(Ar-SiSQ)_x-(Co-M)_y-R_F] were prepared under mild conditions by the cooligomerizations of fluoroalkanoyl peroxide with the corresponding aromatic silsesquioxane possessing bifunctional vinyl groups (Ar-SiSQ) and comonomers (Co-M) such as acryloylmorpho-line (ACMO), N,N-dimethylacrylamide (DMAA) and N-(l,l-dimethyl-3-oxobutyl)acrylamide (DOBAA). Interestingly, these cross-linked fluorinated cooligomers thus obtained were found to form the nanometer size-controlled nanoparticles with a good dispersibility in a variety of solvents including fluorinated aliphatic solvents. These fluorinated cooligomeric nanoparticles were demonstrated to have red-shifted fluorescent emissions related to the presence of aromatic silsesquioxane segments, compared with that of parent aromatic silsesquioxane, indicating that each aromatic moiety in these nanoparticles can interact effectively with each other through the n-n stacking between the aromatic moieties to afford the red-shifted fluorescent emissions. These fluorinated nanoparticles were also applied to the surface modification of poly (methyl methacrylate) (PMMA) to exhibit not only a good oleophobicity imparted by fluorine but also a fluorescent emission behavior related to aromatic silsesquioxane segments in nanoparticles on the modified PMMA surface. More interestingly, cross-linked R_F-(Ar-SiSQ)_x-(DOBAA)y-R_F cooligomeric nanoparticles interacted with fluorescein to give the corresponding fluorinated cooligomeric par-ticles/fluorescein nanocomposites in methanol. These fluorinated fluorescein nanocomposites were found to afford an extraordinarily enhanced light absorption (A_(max)=441 nm), compared with that of fluoroalkyl end-capped DOBAA oligomer [R_F-(DOBAA)_n-R_F] possessing no aromatic silsesquioxane segments.
机译:以双链型芳族倍半硅氧烷链段为核心单元[R_F-(Ar-SiSQ)_x-(Co-M)_y-R_F]的交联氟代烷基封端的冷聚体是在温和条件下通过过氧化氟代链烷酰与相应的具有双官能乙烯基(Ar-SiSQ)和共聚单体(Co-M)的芳族倍半硅氧烷,例如丙烯酰基吗啉(ACMO),N,N-二甲基丙烯酰胺(DMAA)和N-(1,1-二甲基-3-氧代丁基)丙烯酰胺(DOBAA)。有趣的是,发现如此获得的这些交联的氟化冷聚单体形成了在包括氟化脂族溶剂在内的多种溶剂中具有良好分散性的纳米尺寸受控的纳米颗粒。与母体芳族倍半硅氧烷相比,这些氟化的聚乙二醇纳米颗粒被证明具有与芳族倍半硅氧烷链段的存在相关的红移荧光发射,表明这些纳米颗粒中的每个芳族部分之间可以通过nn之间的nn堆积彼此有效地相互作用。芳香族部分,以提供红移荧光发射。这些氟化的纳米颗粒还用于聚甲基丙烯酸甲酯(PMMA)的表面改性,不仅表现出氟赋予的良好的疏油性,而且具有与改性PMMA表面上的纳米颗粒中的芳香族倍半硅氧烷链段相关的荧光发射行为。更有趣的是,交联的R_F-(Ar-SiSQ)_x-(DOBAA)y-R_F低温聚乙二醇纳米颗粒与荧光素相互作用,从而在甲醇中得到相应的氟化低温聚乙二醇颗粒/荧光素纳米复合材料。与不含芳族倍半硅氧烷链段的氟代烷基封端的DOBAA低聚物[R_F-(DOBAA)_n-R_F]相比,发现这些氟化的荧光素纳米复合材料具有特别增强的光吸收(A_(max)= 441 nm)。

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