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Fabrication and evaluation of bacterial cellulose-polyaniline composites by interfacial polymerization

机译:界面聚合法制备细菌纤维素-聚苯胺复合材料及其评价

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摘要

The fabrication and evaluation of nanocomposites based on microbial cellulose and polyaniline (PANi) are described. Microbial cellulose, so called, bacterial cellulose (BC) was introduced to interfacial polymerization of aniline. Two different phases based on water and chloroform made it easy for nanosized PANi particles to be synthesized on BC. Without any help of a surfactant or templates, BC played a critical role of supporting the growth of PANi. As a function of aniline concentration, the corresponding PANi content and volume resistivity were checked. From morphological images observed by FE-SEM, PANi nanoparticles were densely arrayed along every fiber of BC. The conjugated backbone of PANi was thought to contribute to the improvements of thermal stability of PANi/BC composites. The stiffness and brittleness of PANi were compensated by more ductile BC, suggesting BC can be a promising substrate for it. By the simple and facile interfacial polymerization, the electrical conductivity of PANi/ BC composites reached up to 3.8 × 10~(-1) S/cm when 0.32 M of aniline was used. This PANi/BC nanocomposite can be useful in applications requiring biocompatibility and electrical conductivity such as biological and chemical sensors.
机译:描述了基于微生物纤维素和聚苯胺(PANi)的纳米复合材料的制备和评价。将微生物纤维素,即所谓的细菌纤维素(BC)引入到苯胺的界面聚合中。基于水和氯仿的两个不同相使得纳米级PANi颗粒易于在BC上合成。在没有任何表面活性剂或模板的帮助下,BC在支持PANi的生长方面起着关键作用。作为苯胺浓度的函数,检查了相应的PANi含量和体积电阻率。从FE-SEM观察到的形态图像中,PANi纳米颗粒沿BC的每根纤维密集排列。认为PANi的共轭主链有助于改善PANi / BC复合材料的热稳定性。 PANi的刚度和脆性被更易延展的BC所补偿,这表明BC可能是其有前途的基材。通过简单,容易的界面聚合,当使用0.32 M的苯胺时,PANi / BC复合材料的电导率达到3.8×10〜(-1)S / cm。这种PANi / BC纳米复合材料可用于需要生物相容性和导电性的应用,例如生物和化学传感器。

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