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Spontaneous stacking of electrospun conjugated polymer composite nanofibers producing highly porous fiber mats

机译:电纺共轭聚合物复合纳米纤维的自发堆叠,产生高度多孔的纤维毡

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摘要

We produced novel composite nanofibers based on poly(6,6'-((2-methyl-5-((E)-4-((E)-prop-l-en-l-yl)styryl)-l,4-phenylene)bis(oxy))dihexanoic acid)/poly(lactic acid) (PDMP/PLA), using electrospinning technique. The composite nanofibers have a diameter in the range of 50-150 nm and present a novel morphology consisting of spontaneously stacked nanofibers creating a "wall-like" structure that then collectively form a "honeycomb" structure. As low as 0.5-1 wt% of the photoluminescent PDMP was able to produce this type of morphology. The pore size depends on the amount of PDMP incorporated in the nanofibers. The highly fluorescent and porous nanofibers mats provide good biosensing substrates. We provide evidence that the composite nanofibers can be used to construct a simple oligonucleotide (ODN) sensor, where capture probe ODNs (capODN) were covalently grafted onto the carboxylic acid functionalities of the composite nanofibers and the reporting ODN carries a reporting chromophore dye. The results indicate potential of such nanofiber mats as biosensor'
机译:我们基于聚(6,6'-((2-甲基-5-((E)-4-((E)-prop-l-en-l-yl)styryl)-1,4 -苯撑双(氧)二己酸)/聚乳酸(PDMP / PLA),采用静电纺丝技术。复合纳米纤维的直径在50-150nm的范围内,并呈现出由自发堆叠的纳米纤维组成的新颖形态,从而形成“壁状”结构,然后共同形成“蜂窝”结构。低至0.5-1 wt%的光致发光PDMP就能产生这种形态。孔径取决于掺入纳米纤维中的PDMP的量。高荧光和多孔纳米纤维垫可提供良好的生物传感基材。我们提供的证据表明,复合纳米纤维可用于构建简单的寡核苷酸(ODN)传感器,其中捕获探针ODN(capODN)被共价接枝到复合纳米纤维的羧酸官能团上,并且报告的ODN带有报告的发色团染料。结果表明,诸如生物传感器的纳米纤维垫的潜力

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