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Imidazole-doped nanocrystalline cellulose solid proton conductor: synthesis, thermal properties, and conductivity

机译:咪唑掺杂的纳米晶纤维素固体原子导体:合成,热性能和电导率

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摘要

A new proton conducting material with a possible application as a membrane in fuel cells is synthesized. It is formed by nanocrystalline cellulose (NCC) doped with a different concentration of the imidazole molecules (Im) used as "dry" conducting species. The nanocomposites (NCC-Im) are obtained in the form of films. Their chemical composition, thermal properties, and the electric conductivity are determined by elementary and thermogravimetric analysis, differential scanning calorimetry and impedance spectroscopy methods, respectively. The nanocomposite (1.7NCC-Im) with the highest concentration of imidazole i.e. one Im per 1.7 glucose unit shows the highest electrical conductivity equal to 2.7 x 10(-2) S/m at 140 A degrees C. This value is about five orders of magnitude higher than that of the pure NCC film at this same temperature. The important feature is that it is obtained for nanocomposite under anhydrous conditions.
机译:合成了一种新的质子,具有作为燃料电池中的膜的可能施用的新质子传导材料。 它由掺杂具有用作“干燥”导电物种的不同浓度的咪唑分子(IM)掺杂掺杂的纳米晶纤维素(NCC)形成。 纳米复合材料(NCC-IM)以薄膜的形式获得。 它们的化学成分,热性能和导电性分别由基本和热重分析,差分扫描量热法和阻抗光谱方法确定。 具有最高浓度咪唑的纳米复合材料(1.7NCC-IM),即每1.7葡萄糖单元的一个IM,显示在140℃下等于2.7×10(-2)S / m的最高电导率。该值为约五个订单 在该相同温度下高于纯NCC膜的数量。 重要特征是在无水条件下获得纳米复合材料。

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