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Achieving Ultrahigh Energy Densities of Supercapacitors with Porous Titanium Carbide/Boron-Doped Diamond Composite Electrodes

机译:用多孔碳化钛/硼掺杂金刚石复合电极实现超高速度的超高能量密度

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摘要

The energy densities of most supercapacitors (SCs) are low, hindering their practical applications. To construct SCs with ultrahigh energy densities, a porous titanium carbide (TiC)/boron-doped diamond (BDD) composite electrode is synthesized on a titanium plate that is pretreated using a plasma electrolytic oxidation (PEO) technique. The porous and nanometer-thick TiO2 layer formed during PEO process prevents the formation of brittle titanium hydride and enhances the BDD growth during chemical vapor deposition processes. Meanwhile, the in situ conversion of TiO2 into TiC is achieved. Combination of this capacitor electrode with soluble redox electrolytes leads to the fabrication of high-performance SCs in both aqueous and organic solutions. In 0.05 m Fe(CN)(6)(3-/4-) + 1 m Na2SO4 aqueous solution, the capacitance is as high as 46.3 mF cm(-2) at a current density of 1 mA cm(-2); this capacitance remains 92% of its initial value even after 10 000 charge/discharge cycles; the energy density is up to 47.4 Wh kg(-1) at a power density of 2236 W kg(-1). The performance of constructed SCs is superior to most available SCs and some electrochemical energy storage devices like batteries. Such a porous capacitor electrode is thus promising for the construction of high-performance SCs for practical applications.
机译:大多数超级电容器(SCS)的能量密度低,阻碍了它们的实际应用。为了构建具有超高能量密度的SCS,在使用等离子体电解氧化(PEO)技术预处理的钛板上合成了多孔碳化钛(TiC)/硼掺杂的金刚石(BDD)复合电极。在PEO过程中形成的多孔和纳米厚的TiO2层可防止脆性氢化钛的形成,并在化学气相沉积过程中增强BDD生长。同时,实现了TiO2进入TIC的原位转化。该电容器电极与可溶性氧化还原电解质的组合导致含水和有机溶液中的高性能SC的制造。在0.05 m Fe(CN)(6)(3)(3- / 4-)+ 1M Na 2 SO 4水溶液中,电容高达46.3mF cm(-2),电流密度为1 mA cm(-2);即使在10 000充电/放电循环之后,该电容也仍然是其初始值的92%;能量密度高达47.4WH kg(-1),功率密度为2236W kg(-1)。构造的SCS的性能优于最可用的SCS和一些电化学能量存储装置,如电池。因此,这种多孔电容器电极对实际应用的高性能SCS构建有望。

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