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首页> 外文期刊>Macromolecular symposia >Near-field scanning optical microscopy (NSOM) study of alkyl-substituted polyfluorene films: The affect of alkyl substituent length on nanoscale polymer ordering and cluster formation.
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Near-field scanning optical microscopy (NSOM) study of alkyl-substituted polyfluorene films: The affect of alkyl substituent length on nanoscale polymer ordering and cluster formation.

机译:烷基取代的聚芴薄膜的近场扫描光学显微镜(NSOM)研究:烷基取代基长度对纳米级聚合物有序化和簇形成的影响。

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摘要

Pristine and Annealed 170 nm films of the stiff-chain polyfluorene, bearing two hexyl (1) or dodecyl (2) groups at the 9 position were studied using Near-field Scanning Optical Microscopy (NSOM). NSOM images reveal two distinct types of nanoscale film morphology: clusters and long-range order (LRO). Dual polarization and dual wavelength fluorescence collection schemes are combined with the use of simple image math provide both qualitative and quantitative characterization. In pristine films, shorter alkyl substituents (1) reduce tile solubility of the polyfluorene in the spinning solution used for spin-coating films which leads to the formation of 50-150 nm clusters which are not present in films made from 2. Clusters can be removed by annealing as a function of time. Polarization shows the clusters are amorphous with fluorescence from both intra and inter-polymer species. The second variety of nanoscale ordering, LRO, is characterized by regions of polarized emission in the polymer films. This polarization can be quantified with an anisotropy value and is barely present in pristine films of 1 but increases dramatically upon annealing to induce a liquid crystalline phase transition. Pristine films of 2 have larger anisotropy values than pristine films of 1, due to longer alkyl-substituent-induced ordering during the spin-coating procedure, but films of 2 have only a slight increase in their anisotropy value upon annealing. Both intra and inter-polymer emitting species are distributed homogeneously throughout both pristine and annealed films within the resolution of our microscope (40-70 nm). [References: 32]
机译:使用近场扫描光学显微镜(NSOM)研究了在9个位置带有两个己基(1)或十二烷基(2)基团的硬链聚芴的原始和退火170 nm膜。 NSOM图像揭示了两种不同类型的纳米胶片形态:簇和长程有序(LRO)。双偏振和双波长荧光收集方案与简单图像数学的使用相结合,可提供定性和定量表征。在原始膜中,较短的烷基取代基(1)会降低聚芴在用于旋涂膜的纺丝溶液中的溶解度,从而导致形成50-150 nm的簇,而簇在由2制成的膜中不存在。通过退火去除作为时间的函数。极化显示簇是无定形的,具有来自聚合物内和聚合物间物种的荧光。纳米级有序的第二种变化LRO的特征是聚合物薄膜中的极化发射区域。该极化可以用各向异性值来量化,并且几乎不存在于1的原始膜中,但是在退火以诱导液晶相变时急剧增加。原始膜2的各向异性值比原始膜1的各向异性大,这是因为在旋涂过程中烷基取代基的诱导顺序更长,但是2膜在退火后的各向异性值仅略有增加。在我们的显微镜分辨率(40-70 nm)内,内部和聚合物内部的发射物质均在整个原始膜和退火膜中均匀分布。 [参考:32]

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