首页> 外文期刊>Journal of the American Chemical Society >A MOLECULAR YARN - NEAR-FIELD OPTICAL STUDIES OF SELF-ASSEMBLED, FLEXIBLE, FLUORESCENT FIBERS
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A MOLECULAR YARN - NEAR-FIELD OPTICAL STUDIES OF SELF-ASSEMBLED, FLEXIBLE, FLUORESCENT FIBERS

机译:分子纱-自组装,柔性,荧光纤维的近场光学研究

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The formation of flexible molecular fibers via the solution-phase self-assembly of the pseudo-isocyanine dye (PIC) 1,1'-diethyl-2,2'-cyanine, and poly(vinyl sulfate) (PVS) is reported. The physical and electronic properties of these fibers spin-coated into thin films on fused-quartz substrates are studied by fluorescence and topographic imaging with near-field scanning optical microscopy (NSOM) and also by atomic force microscopy (AFM). The scanned-probe images demonstrate that fibers with lengths in the hundred micrometer range, widths of hundreds of nanometers, and thicknesses of a few tens of nanometers are readily formed in aqueous mixtures of PVS and PIC. Unprecedented flexibility in these fibers is exemplified by the formation of numerous curved and looped structures in the spin-coated thin films. A sandwich-like composite structure of alternating anionic PVS and cationic PIC layers is proposed as a model for the assembly of the dye and polymer in these fibers. The alternating layers in this model are held tightly together via the cooperative ''cross-linking'' of the PVS and PIC layers by electrostatic dye/polymer interactions, and by hydrophobic van der Waals interactions between the PIC molecules. The intermolecular interactions in the PIC layer result in the formation of a liquid-crystalline-like, well-ordered layer of the PIC which exhibits the spectral characteristics of J-aggregates. The proposed layered structure apparently possesses ''reactive'' surfaces which link individual fibers into a yarnlike assembly. This cross-linking effect is supported by the presence of continuous circular fibers and by the gel-forming ability of the solutions from which these fibers are grown.
机译:据报道,通过拟异氰酸染料(PIC)1,1'-二乙基-2,2'-花青和聚(硫酸乙烯酯)(PVS)的溶液相自组装形成柔性分子纤维。通过使用近场扫描光学显微镜(NSOM)和原子力显微镜(AFM)进行荧光和形貌成像研究了在熔融石英衬底上旋涂成薄膜的这些纤维的物理和电子性能。扫描的探针图像表明,在PVS和PIC的水性混合物中,很容易形成长度在100微米范围内,数百纳米的宽度以及几十纳米的厚度的纤维。这些纤维中前所未有的柔韧性可以通过在旋涂薄膜中形成许多弯曲和环状结构来举例说明。提出了交替的阴离子PVS和阳离子PIC层的三明治状复合结构,作为在这些纤维中组装染料和聚合物的模型。该模型中的交替层通过静电染料/聚合物相互作用以及PIC分子之间的疏水范德华相互作用,通过PVS和PIC层的协作“交联”紧密地保持在一起。 PIC层中的分子间相互作用导致形成PIC液晶样的有序层,该层表现出J聚集体的光谱特征。所提出的分层结构显然具有“反应性”表面,该表面将单个纤维连接成纱状组件。这种交联作用由连续圆形纤维的存在和这些纤维从中生长的溶液的形成凝胶的能力来支持。

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