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'Cubism' on the Nanoscale: From Squaric Acid to Porous Carbon Cubes

机译:纳米级的“立体主义”:从方酸到多孔碳立方体

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3D cube-shaped composites and carbon microparticles with hierarchically porous structure are prepared by a facile template-free synthesis route. Via the coordination of zinc acetate dihydrate and squaric acid, porous 3D cubic crystalline particles of zinc squarate can be obtained. These are easily transformed into the respective zinc oxide carbon composites under preservation of the macromorphology by heat treatment. Washing of the composite materials results in hierarchically porous carbons with high surface areas (1295 m(2) g(-1)) and large pore volumes (1.5 cm(3) g(-1)) under full retention of the cube-like architecture of the initial crystals. The materials are shown to be promising electrode materials for supercapacitor applications with a specific capacitance of 133 F g(-)1 in H2SO4 at a scan rate of 5 mV s(-1), while 67% of this specific capacitance is retained, when increasing the scan rate to 200 mV s(-1).
机译:通过简便的无模板合成路线,可以制备具有分层多孔结构的3D立方体状复合材料和碳微粒。通过二水合乙酸锌和方酸的配位,可以获得方酸锌的多孔3D立方晶体颗粒。在通过热处理保持宏观形态的情况下,它们容易转变成相应的氧化锌碳复合材料。复合材料的清洗导致在完全保留立方体状的情况下具有高表面积(1295 m(2)g(-1))和大孔体积(1.5 cm(3)g(-1))的分层多孔碳初始晶体的架构。该材料被证明是用于超级电容器的有前途的电极材料,在5 mV s(-1)的扫描速率下,在H2SO4中的比电容为133 F g(-)1,而当该比电容保留67%时,将扫描速率提高到200 mV s(-1)。

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