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通过钼掺杂调控镍钴层状双氢氧化物的氧空位和电子结构用于高功率混合超级电容器

Regulating the Oxygen Vacancy and Electronic Structure of NiCo Layered Double Hydroxides by Molybdenum Doping for High-Power Hybrid Supercapacitors.

作者信息

Ding Yingjie, Yan Zhaoxiong, Wang Guosheng, Sang Hongqian, Xu Zhihua, Li Wenhui

机构信息

School of Optoelectronic Materials and Technology, Jianghan University, Wuhan, 430056, P. R. China.

Institution for Interdisciplinary Research, Jianghan University, Wuhan, 430056, P. R. China.

出版信息

Small. 2024 Feb;20(8):e2306382. doi: 10.1002/smll.202306382. Epub 2023 Oct 12.

DOI:10.1002/smll.202306382
PMID:37828635
Abstract

Amelioration of nickel-cobalt layered double hydroxides (NiCo-LDH) with a high specific theoretical capacitance is of great desire for high-power supercapacitors. Herein, a molybdenum (Mo) doping strategy is proposed to improve the charge-storage performance of NiCo-LDH nanosheets growing on carbon cloth (CC) via a rapid microwave process. The regulation of the electronic structure and oxygen vacancy of the LDH is consolidated by the density functional theory (DFT) calculation, which demonstrates that Mo doping narrows the band gap, reduces the formation energy of hydroxyl vacancies, and promotes ionic and charge transfer as well as electrolyte adsorption on the electrode surface. The optimal Mo-doped NiCo-LDH electrode (MoNiCo-LDH-0.05/CC) has an amazing specific capacity of 471.1 mA h g at 1 A g , and excellent capacity retention of 84.8% at 32 A g , far superior to NiCo-LDH/CC (258.3 mA h g and 76.4%). The constructed hybrid supercapacitor delivers an energy density of 103.3 W h kg at a power density of 750 W kg and retains the cycle retention of 85.2% after 5000 cycles. Two assembled devices in series can drive thirty LED lamps, revealing a potential application prospect of the rationally synthesized MoNiCo-LDH/CC as an energy-storage electrode material.

摘要

对于高功率超级电容器而言,改善具有高比理论电容的镍钴层状双氢氧化物(NiCo-LDH)极具吸引力。在此,我们提出一种钼(Mo)掺杂策略,通过快速微波工艺来提高生长在碳布(CC)上的NiCo-LDH纳米片的电荷存储性能。通过密度泛函理论(DFT)计算巩固了对LDH电子结构和氧空位的调控,结果表明Mo掺杂使带隙变窄,降低了羟基空位的形成能,并促进了离子和电荷转移以及电极表面的电解质吸附。最佳的Mo掺杂NiCo-LDH电极(MoNiCo-LDH-0.05/CC)在1 A g 时具有471.1 mA h g的惊人比容量,在32 A g时具有84.8%的优异容量保持率,远优于NiCo-LDH/CC(258.3 mA h g和76.4%)。构建的混合超级电容器在功率密度为750 W kg时提供103.3 W h kg的能量密度,在5000次循环后保持85.2%的循环保持率。两个串联组装的器件可以驱动三十个LED灯,揭示了合理合成的MoNiCo-LDH/CC作为储能电极材料的潜在应用前景。

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