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Synthesis, thermal properties, conductivity and lifetime of proton conductors based on nanocrystalline cellulose surface-functionalized with triazole and imidazole

机译:基于用三唑和咪唑的纳米晶纤维素表面官能化的质子导体的合成,热性能,电导率和寿命

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A new proton conductor based on 1H-1,2,3-triazole doped nanocrystalline cellulose (2.66 CNC-Tri) has been synthesized for possible use as an electrolyte in proton exchange membrane (PEM) cells. The physicochemical properties of 2.66 CNC-Tri were determined and compared with those of imidazole-doped nanocrystalline (1.17 CNC-Im) and pure nanocrystalline cellulose (CNC). The composites were obtained in the form of a film and their synthesis proceeded under vacuum. The maximum conductivity of 2.66 CNC-Tri was measured to be 0.1 x 10(-4) S/m at 175 degrees C and that of 1.17 CNC-Im to be 1.6 x 10(-2) S/m at 155 degrees C, in the anhydrous state. The composite 2.66 CNC-Tri, compared to 1.17 CNC-Im, has much better thermal properties manifested as stability of the matrix and durability of the heterocyclic molecule. The lifetimes of 2.66 CNC-Tri fulfills the requirements of the U.S. Department of Energy for the minimum lifetimes of a PEM based fuel cell for cars. (C) 2020 The Author(s). Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:基于1H-1,2,3-三唑掺杂纳米晶纤维素(2.66CNC-TRI)的新型质子导体已被合成,以便在质子交换膜(PEM)细胞中作为电解质。测定2.66 CNC-TRI的物理化学性质,并与咪唑掺杂纳米晶(1.17CNC-IM)和纯纳晶纤维素(CNC)进行比较。以薄膜的形式获得复合材料,并且它们的合成在真空下进行。在155摄氏度下测量2.66cNC-TR1的最大导电率为0.1×10(-4)S / m,为1.17 CNC-Im为1.6×10(-2)S / m,在无水状态。与1.17 CNC-IM相比,复合2.66 CNC-TRI具有更好的热性能,表现为基质的稳定性和杂环分子的耐久性。 2.66 CNC-TRI的寿命满足美国能源部的要求,以便汽车的最低寿命为汽车的燃料电池。 (c)2020提交人。由elsevier有限公司发布代表氢能出版物LLC。

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