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Supercapacitors of Nanocrystalline Metal-Organic Frameworks

机译:纳米晶金属有机骨架的超级电容器

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The high porosity of metal-organic frameworks (MOFs) has been used to achieve exceptional gas adsorptive properties but as yet remains largely unexplored for electrochemical energy storage devices. This study shows that MOFs made as nanocrystals (nMOFs) can be doped with graphene and successfully incorporated into devices to function as supercapacitors. A series of 23 different nMOFs with multiple organic functionalities and metal ions, differing pore sizes and shapes, discrete and infinite metal oxide backbones, large and small nanocrystals, and a variety of structure types have been prepared and examined. Several members of this series give high capacitance; in particular, a zirconium MOF exhibits exceptionally high capacitance. It has the stack and areal capacitance of 0.64 and 5.09 mF cm~(-2), about 6 times that of the supercapacitors made from the benchmark commercial activated carbon materials and a performance that is preserved over at least 10000 charge/discharge cycles.
机译:金属-有机骨架(MOF)的高孔隙率已用于实现出色的气体吸附性能,但对于电化学储能设备,目前仍未开发。这项研究表明,制成纳米晶体(nMOF)的MOF可以掺杂石墨烯,并成功地掺入器件中以用作超级电容器。已经制备并研究了一系列23种不同的nMOF,这些nMOF具有多种有机功能和金属离子,不同的孔径和形状,离散的和无限的金属氧化物骨架,大大小小的纳米晶体以及各种结构类型。该系列中的几个提供高电容;特别是,锆MOF具有极高的电容。它的堆叠和面积电容分别为0.64和5.09 mF cm〜(-2),约为基准商用活性炭材料制成的超级电容器的6倍,并且在至少10000次充电/放电循环后仍能保持其性能。

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