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首页> 外文期刊>ACS applied materials & interfaces >Hydrangea-like alpha-Ni1/3Co2/3(OH)(2) Reinforced by Ethyl Carbamate 'Rivet' for All-Solid-State Supercapacitors with Outstanding Comprehensive Performance
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Hydrangea-like alpha-Ni1/3Co2/3(OH)(2) Reinforced by Ethyl Carbamate 'Rivet' for All-Solid-State Supercapacitors with Outstanding Comprehensive Performance

机译:绣球花样的α-NI1 / 3CO2 / 3(OH)(2)由乙酯“铆钉”加强全固态超级电容器,具有出色的综合性能

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摘要

Improving the self-conductivity and structural stability of electrode materials is a key strategy to improve the energy density, rate performance, and cycle life of supercapacitors. Controlled intercalation of ethyl carbamate (CH3CH2OCONH2) as the rivet between Ni-Co hydroxide layers can be used to obtain sufficient ion transport channels and robust structural stability of hydrangea-like alpha-Ni1/3Co2/3(OH)(2) (NC). Combining the improved electronic conductivity offered by the coexistence of Ni2+ and Co2+ optimizing itself electronic conductivity and the addition of carbon nanotubes (CNTs) as the electron transport bridge between the active material and the current collector and the large specific surface area (296 m(2) g(-1)) reducing the concentration polarization, the capacitance retention ratio of NC-CNT from 0.2 to 20 A g(-1) is up to 93.4% and its specific capacitance is as high as 1228.7 F g(-1) at 20 A g(-1). The large total hole volume (0.40 cm(3) g(-1)) and wide crystal plane spacing (0.71 nm) provide an adequate space to withstand structure deformation during charge/discharge processes and enhance the structural stability of the NC material. The capacitance fading ratio of NC-CNT is only 4.5% at 10 A g(-1) for 10 000 cycles. The aqueous supercapacitor (NC-CNT//AC) and all-solid-state supercapacitor (PVA-NC-CNT//PVA-AC) exhibit high energy density (35.2 W h kg(-1) at 100.0 W kg(-1) and 35.4 W h kg(-1 )at 100.7 W kg(-1)), ultrahigh rate performance (the specific capacitances at 20 A g(-1) are 92.8 and 87.2% compared to that at 0.5 A g(-1)), and long cycling life span (the specific capacitances after 100 000 cycles at 10 A g(-1) are 91.5 and 90.8% compared with that of their initial specific capacitances), respectively. Therefore, hydrangea-like NC could be a promising material for advanced next-generation supercapacitors.
机译:提高电极材料的自导率和结构稳定性是提高超级电容器的能量密度,速率性能和循环寿命的关键策略。作为Ni-Co氢氧化物层之间的铆钉,可用于获得足够的离子输送通道和绣球状α-Ni1 / 3CO2 / 3(OH)(2)(2)(NC)的耐足的离子输送通道和鲁棒结构稳定性的铆钉。结合Ni2 +和CO2 +的共存提供的改进的电子电导率,以及在活性材料和集电器之间的电子传输桥和大的比表面积(296m(2 )G(1))降低浓度极化,NC-CNT的电容保持比为0.2至20Ag(-1)高达93.4%,其特定电容高达1228.7 f g(-1)在20 a g(-1)。大的总孔体积(0.40cm(3)克(-1))和宽晶面间距(0.71nm)提供足够的空间,以在充电/放电过程中承受结构变形,并增强NC材料的结构稳定性。 NC-CNT的电容衰减比仅为10 A G(-1)的4.5%,10 000次循环。水性超级电容器(NC-CNT // AC)和全固态超级电容器(PVA-NC-CNT // PVA-AC)表现出高能量密度(35.2WH kg(-1),100.0W kg(-1 )和35.4 W H kg(-1)在100.7 W kg(-1)),超高速率性能(20 a g(-1)的特定电容为92.8和87.2%,而0.5 a g(-1 ))和长循环寿命(10Ag(-1)的长循环寿命(在10 000次循环之后的比率为91.5和90.8%,与其初始特异性电容相比)。因此,绣球花样的NC可以是高级下一代超级电容器的有希望的材料。

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