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首页> 外文期刊>Nanoscale >Tunable energy storage capacity of two-dimensional Ti3C2Tx modified by a facile two-step pillaring strategy for high performance supercapacitor electrodes
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Tunable energy storage capacity of two-dimensional Ti3C2Tx modified by a facile two-step pillaring strategy for high performance supercapacitor electrodes

机译:可调二维的储能能力简单两步煤柱Ti3C2Tx修改高性能超级电容器的策略电极

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摘要

This paper proposed to tailor the layer microstructures of two-dimensional Ti(3)C(2)T(x)via a facile Li+ pre-pillaring and successive pillaring strategy by various cations. By ion exchange with pre-intercalated Li+, as well as "coulombic attraction" to electronegative Ti3C2Tx, various inexpensive and column-like K+, Ca2+, Mg2+, Al3+ and NH4+ cations were migrated into the Ti3C2Tx interlayers. By expanding the interlayer about 17.02%, as well as enhancing the electron density of Ti atoms and C atoms, the Al3+ intercalated MXene Ti3C2Tx sheets delivered the highest specific capacity of 175 F g(-1) at 0.3 A g(-1). Coupling the Ti3C2Tx-Al3+ working electrode with a platinum counter electrode and a Hg/HgO reference electrode, the single electrode (calculated from a three-electrode system) exhibited a high energy density of 87.5 W h kg(-1) and a high power density (2100 W kg(-1)) with an ultra-long and stable cycling performance. The binding energies of the intercalated ions with hydroxyl groups, the Bader charge distribution and degree of electron localization were evaluated by density functional theory calculations to further validate the ultra-high energy storage capacity of Al3+ pillared-Ti3C2Tx in the present study.
机译:本文提出了调整层微观结构的二维Ti (3) C (2) T (x)通过一个简单的李+ pre-pillaring和连续用柱支持策略,不同的阳离子。通过与李pre-intercalated +离子交换,“库仑引力”的电负性Ti3C2Tx、各种廉价和column-like K +、Mg2 +与Ca2 + +和NH4 +阳离子迁移到Ti3C2Tx夹层。层间约17.02%,以及提高钛原子的电子密度和C原子与插入MXene Ti3C2Tx床单了最高的175 F比容量g (1)0.3 g(1)。与铂对电极和电极Hg / HgO参比电极,电极(从三电极系统计算)表现出较高的能量密度为87.5 W h公斤(1)和高功率密度(2100 W公斤(1))与一个超长和稳定的骑自行车的性能。间与羟基离子,巴德电子的电荷分布和程度本地化是由密度泛函计算为了进一步验证理论计算与超高能量存储能力pillared-Ti3C2Tx在目前的研究。

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