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Porous tantalum network structures exhibiting high electrochemical performance as capacitors

机译:多孔钽网络结构表现为高电化学性能作为电容器

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Tantalum is a key material that is used to produce small solid capacitors with high volumetric efficiency. To achieve higher capacitances in a given volume, Ta nanopowders (NPs) with a large surface area are required for anode preparation. In this study, we report the synthesis of porous tantalum network structures by the combustion method and its electrochemical performance as a capacitor. The network structures, which consist of Ta NPs, are formed via a high-temperature sintering process. The Ta NPs were produced with a minimum size of less than 50 nm and a BET surface area of 31.47 m(2)/g. Additionally, the formation of Ta porous network structures according to the Ta/Mg ratio was theoretically analysed using a phase field sintering model. According to an analysis of the electrical properties of a sintered Ta anode (k=20), a capacitance of similar to 190,000 mu FV/g is achieved with Ta NPs having a BET surface area of 19.2 cm(2)/g. In the near future, we hope to achieve similar to 300,000 mu FV/g capacitance with 31.47 m(2)/g BET surface area Ta NPs.
机译:钽是一种主要材料,用于生产具有高容量效率的小型固体电容器。为了在给定的体积中获得更高的电容,阳极制备需要具有大表面积的TA纳米粉末(NPS)。在这项研究中,我们通过燃烧方法及其电化学性能作为电容器报告了多孔钽网络结构的合成。由高温烧结过程形成的Ta NP组成的网络结构。产生Ta NPS的最小尺寸小于50nm,BET表面积为31.47m(2)/ g。另外,使用相场烧结模型理论上分析了根据Ta / Mg比的Ta多孔网络结构的形成。根据烧结Ta阳极(k = 20)的电特性的分析,使用具有19.2cm(2)/ g的BET表面积的Ta nps来实现类似于190,000μmfv/ g的电容。在不久的将来,我们希望实现类似于31.47米(2)/ g BET表面积Ta NPS的300,000 mu Fv / g电容。

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