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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Facile Template Synthesis of Microfibrillated Cellulose/Polypyrrole/ Silver Nanoparticles Hybrid Aerogels with Electrical Conductive and Pressure Responsive Properties
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Facile Template Synthesis of Microfibrillated Cellulose/Polypyrrole/ Silver Nanoparticles Hybrid Aerogels with Electrical Conductive and Pressure Responsive Properties

机译:具有电导和压力响应特性的微纤维化纤维素/聚吡咯/银纳米颗粒混合气凝胶的简便模板合成

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Sustainable microfibrillated cellulose (MFC) aerogels are considered to be good templates for the growth of functional organic or inorganic nanoparticles. In this work, MFC aerogels with high porosity (99.9%) and low density (2.91 mg/cm~3) were produced by freeze-drying. Then the obtained MFC aerogels were used as templates for the synthesis of MFC/polypyrrole (PPy)/silver nanoparticles (Ag) hybrid aerogels by a simple dip-coating method. Our results demonstrated that the obtained hybrid aerogels maintained the attractive features of the pristine MFC aerogels, such as high porosity, low density, and high compressive stress, during the preparation process. Compared with MFC aerogels and MFC/ PPy hybrid aerogels, the MFC/PPy/Ag hybrid aerogels exhibited enhanced antimicrobial and electrical conductive properties due to the combination of PPy and Ag. Moreover, the electrical conductivity and compressible properties of the MFC/PPy/Ag hybrid aerogels led to their pressure responsive property. These features make the hybrid aerogels promising candidates for wound healing, energy storage, and pressure sensing applications.
机译:可持续的微纤化纤维素(MFC)气凝胶被认为是功能性有机或无机纳米粒子生长的良好模板。在这项工作中,通过冷冻干燥生产了具有高孔隙率(99.9%)和低密度(2.91 mg / cm〜3)的MFC气凝胶。然后将获得的MFC气凝胶用作模板,通过简单的浸涂法合成MFC /聚吡咯(PPy)/银纳米颗粒(Ag)混合气凝胶。我们的结果表明,所获得的混合气凝胶在制备过程中保持了原始MFC气凝胶的吸引人的特性,例如高孔隙率,低密度和高压缩应力。与MFC气凝胶和MFC / PPy混合气凝胶相比,由于PPy和Ag的结合,MFC / PPy / Ag混合气凝胶具有增强的抗菌和导电性能。此外,MFC / PPy / Ag混合气凝胶的电导率和可压缩特性导致其压力响应特性。这些特性使混合气凝胶有望成为伤口愈合,能量存储和压力传感应用的候选材料。

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