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首页> 外文期刊>ACS Omega >Flexible Type Symmetric Supercapacitor Electrode Fabrication Using Phosphoric Acid-Activated Carbon Nanomaterials Derived from Cow Dung for Renewable Energy Applications
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Flexible Type Symmetric Supercapacitor Electrode Fabrication Using Phosphoric Acid-Activated Carbon Nanomaterials Derived from Cow Dung for Renewable Energy Applications

机译:使用源自牛粪的磷酸活性炭纳米材料进行柔性型对称超涂物电极制造,用于可再生能源应用

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Porous-activated carbon (PAC) materials have been playing a vital role in meeting the challenges of the ever-increasing demand for alternative clean and sustainable energy technologies. In the present scenario, a facile approach is suggested to produce hierarchical PAC at different activation temperatures in the range of 600 to 900 °C by using cow dung (CD) waste as a precursor, and H_(3)PO_(4) is adopted as the nonconventional activating agent to obtain large surface area values. The as-prepared cow dung-based PAC (CDPAC) is graphitic in nature with mixed micro- and mesoporous textures. High-resolution scanning electron microscopy depicts the morphology of CDPAC as nanoporous structures with a uniform arrangement. High-resolution transmission electron microscopy reveals spherical carbon dense nanoparticles with dense tiny spherical carbon particles. N_(2) adsorption–desorption isotherms show a very high specific surface area of 2457 m~(2)/g for the CDPAC 9 (CD 9) sample with a large pore volume of 1.965 cm~(3)/g. Electrochemical measurements of the CD 9 sample show a good specific capacitance (C _(s)) of 347 F/g at a lower scan rate (5 mV/s) with improved cyclic stability, which is run up to 5000 cycles at a low current density (0.5 A/g). Hence, we choose an activated carbon prepared at 900 °C to fabricate the modified electrode material. In this regard, a flexible type symmetric supercapacitor device was fabricated, and the electrochemical test results show a supercapacitance value (C _(s)) of 208 F/g.
机译:多孔活化的碳(PAC)材料在满足不断增加的替代清洁和可持续能源技术的挑战方面发挥了至关重要的作用。在本场景中,建议通过使用牛粪(CD)废物作为前体在600至900℃的不同活化温度下产生分层PAC,并且采用H_(3)PO_(4)作为非转化激活剂获得大的表面积值。基于牛粪的PAC(CDPAC)是具有混合微孔和中孔纹理的石墨。高分辨率扫描电子显微镜描绘了CDPAC作为具有均匀布置的纳米多孔结构的形态。高分辨率透射电子显微镜显示球形碳致密纳米颗粒,具有致密的微小球形碳颗粒。 N_(2)吸附 - 解吸等温线显示出CDPAC 9(CD 9)样品的非常高的比表面积为2457m〜(2)/ g,其孔体积为1.965cm〜(3)/ g。 CD 9样品的电化学测量显示在较低的扫描速率(5mV / s)下具有347 f / g的良好的特异性电容( c _(s),其循环稳定性改善,其速度高达5000个循环在低电流密度(0.5A / g)。因此,我们选择在900℃下制备的活性炭以制造改进的电极材料。在这方面,制造了一种柔性型对称超电容器装置,电化学测试结果显示了208 f / g的超级涂布值( C _(s))。

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