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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Hierarchically Porous Nanostructured Nickel Phosphide with Carbon Particles Embedded by Dielectric Barrier Discharge Plasma Deposition as a Binder-Free Electrode for Hybrid Supercapacitors
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Hierarchically Porous Nanostructured Nickel Phosphide with Carbon Particles Embedded by Dielectric Barrier Discharge Plasma Deposition as a Binder-Free Electrode for Hybrid Supercapacitors

机译:具有碳颗粒的分层多孔纳米结构镍磷化铝,其介电阻挡放电等离子体沉积作为杂交超级电容器的无粘合剂电极

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Three-dimensional (3D) metal phosphides are promising superior electrode components for supercapacitors. In this study, 3D porous nickel phosphide nanoarrays are successfully enrooted on the surface of nickel foam (Ni2P/NF) by low-temperature hydrothermal treatment. Subsequently, a nanocarbon was embedded over Ni2P@NF by efficient utilization of the environmental pollutant ethylene gas via a dielectric barrier discharge plasma reactor. This nanocarbon was deposited on porous Ni2P/NF nanoarrays (Ni2P-C/NE) as a positive electrode sandwiched with peanut shell-derived porous activated carbon (ENS-AC) as a negative electrode for the fabrication of a hybrid supercapacitor device. The hybrid supercapacitor device (Ni2P-C/NF//PNS-AC) delivers an enormous amount of areal and gravimetric capacities values at a 1 A g(-1) current density of 318.8 mu Ah cm(-2) and 106.2 mAh g(-1), respectively. Moreover, the hybrid supercapacitor device achieved outstanding energy and power density with excellent cyclic durability (90.1%) even after 5000 cycles at 7 A g(-1), which are 108.1 Wh kg(-1) at 1 A g(-1) and 14,370.4 W kg(-1) at 15 A g(-1), respectively. These results evidenced that the novel nanostructured Ni2P/NF with embedded carbon nanoparticles has excellent potential as the supercapacitor electrode material.
机译:三维(3D)金属磷酸是超级电容器的优质电极组分。在该研究中,通过低温水热处理在镍泡沫(Ni2P / NF)的表面上成功地突出了3D多孔镍纳米阵列。随后,通过通过介电阻挡放电等离子体反应器有效利用环境污染物乙烯气体,通过Ni 2P @ NF嵌入纳米碳。将该纳米碳沉积在多孔Ni2P / NF纳米阵列(Ni2P-C / Ne)上,作为夹在花生壳衍生的多孔活化碳(ENS-AC)的正极中作为负电极,用于制造杂交超级电容器装置。混合超级电容器装置(NI2P-C / NF // PNS-AC)以318.8μmAhcm(-2)和106.2mah g的1 a g(-1)电流密度提供大量的区域和重量容量值。 (-1)分别。此外,混合超级电容器装置的优点和功率密度具有优异的循环耐久性(90.1%),即使在7Ag(1)的5000次循环之后,这是108.1WH kg(-1),在1 a g(-1)和14,370.4W kg(-1)分别为15 a g(-1)。这些结果证明了具有嵌入碳纳米粒子的新型纳米结构Ni2P / NF具有优异的超级电容器电极材料的潜力。

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