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Thermal and dielectric investigations on the blends of K-carrageenan and nano-structured polyaniline

机译:K-角叉菜胶和纳米结构聚苯胺共混物的热和介电研究

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摘要

There are some biosensors and biochips for the recognition and quantization for particular biological molecules. They are made of conductive polymers and natural biomolecules such as protein, DNA and polysaccharides. The conductive polymers work as electric wires for signal transmission, while the natural biomolecules are receptors. Such electric devices are of complex and heterogeneous structures, in either single chain or condensed chains or dispersive phase separations. In order to investigate the complex structures of the polymer blends in the devices and the relation between the structure and the electrical properties, we have prepared several kinds of nano-structured polyaniline (PAN1) with defined aggregate morphologies, i.e., nano-granules or nano-fibers with different aspect ratios. The blends of K-carrageenan and PANIs have been prepared through sol-gel process. The multi-level structures of PANls have been characterized with X-ray diffraction (XRD) and scanning electron microscope (SEM). The thermal analysis and dielectric relaxation spectroscopy help to evaluate and to understand the chain relaxation and the interfacial structures of the blends.
机译:有一些生物传感器和生物芯片用于特定生物分子的识别和量化。它们由导电聚合物和天然生物分子(例如蛋白质,DNA和多糖)制成。导电聚合物充当信号传输的电线,而天然生物分子是受体。这样的电子器件具有单链或缩合链或分散相分离的复杂且异质的结构。为了研究设备中聚合物共混物的复杂结构以及结构与电性能之间的关系,我们制备了几种具有定义的聚集体形态的纳米结构聚苯胺(PAN1),即纳米颗粒或纳米颗粒。 -具有不同长宽比的纤维。 K-卡拉胶和PANI的混合物是通过溶胶-凝胶法制备的。 PAN1s的多级结构已通过X射线衍射(XRD)和扫描电子显微镜(SEM)进行了表征。热分析和介电弛豫光谱有助于评估和了解共混物的链弛豫和界面结构。

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