首页> 外文期刊>ACS applied materials & interfaces >Polycrystalline and Mesoporous 3-D Bi2O3 Nanostructured Negatrodes for High-Energy and Power-Asymmetric Supercapacitors: Superfast Room-Temperature Direct Wet Chemical Growth
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Polycrystalline and Mesoporous 3-D Bi2O3 Nanostructured Negatrodes for High-Energy and Power-Asymmetric Supercapacitors: Superfast Room-Temperature Direct Wet Chemical Growth

机译:用于高能和功率 - 不对称超级电容器的多晶和介孔3-D Bi2O3纳米结构否定否定剂:超快速室温直接湿化学生长

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摘要

Superfast (= 10 min) room-temperature (300 K) chemical synthesis of three-dimensional (3-D) polycrystalline and mesoporous bismuth-(III) oxide (Bi2O3) nanostructured negatrode (as an abbreviation of negative electrode) materials, viz., coconut shell, marigold, honey nest cross section and rose with different surface areas, charge transfer resistances, and electrochemical performances essential for energy storage, harvesting, and even catalysis devices, are directly grown onto Ni foam without and with poly(ethylene glycol), ethylene glycol, and ammonium fluoride surfactants, respectively. Smaller diffusion lengths, caused by the involvement of irregular crevices, allow electrolyte ions to infiltrate deeply, increasing the utility of inner active sites for the following electrochemical performance. A marigold 3-D Bi2O3 electrode of 58 m(2).g(-1) surface area has demonstrated a specific capacitance of 447 F.g(-1) at 2 A.g(-1) and chemical stability of 85% even after 5000 redox cycles at 10 A.g(-1) in a 6 M KOH electrolyte solution, which were higher than those of other morphology negatrode materials. An asymmetric supercapacitor (AS) device assembled with marigold Bi2O3 negatrode and manganese(II)-carbonate quantum dots/nickel hydrogen-manganese(II)-carbonate (MnCO(3)QDs/NiH-Mn-CO3) positrode corroborates as high as 51 Wh.kg(-1) energy at 1500 W.kg(-1) power and nearly 81% cycling stability even after 5000 cycles. The obtained results were comparable or superior to the values reported previously for other Bi2O3 morphologies. This AS assembly glowed a red-light-emitting diode for 20 min, demonstrating the scientific and industrial credentials of the developed superfast Bi2O3 nanostructured negatrodes in assembling various energy storage devices.
机译:超快速(& = 10分钟)室温(300k)化学合成的三维(3-d)多晶和介孔铋 - (iii)氧化物(Bi2O3)纳米结构的否定仪(作为负极的缩写)材料, ,椰子壳,万寿菊,蜂蜜巢横截面和具有不同表面积的玫瑰,电荷转移电阻和储能,收获甚至催化装置所必需的电化学性能,直接生长到Ni泡沫没有和聚(乙烯)乙二醇),乙二醇和氟化铵表面活性剂。由不规则裂缝的参与引起的较小的扩散长度允许电解质离子深化,增加内部活性位点的效用,以进行以下电化学性能。 88米(2).g(-1)表面积的万寿菊3-D Bi2O3电极已经在2Ag(-1)中表现出447 fg(-1)的特定电容,即使在5000氧化还原之后,也为85%的化学稳定性在6M KOH电解质溶液中以10Ab(-1)的循环,其高于其他形态的否定频率材料。用Marigold Bi2O3 egetRode和锰(II)的非对称超微普通电容器(AS)器件 - 碳酸氢盐量子点/镍氢 - 锰(II) - 碳酸氢盐(MNCO(3)QDS / NiH-MN-CO 3)正质量证实高达51 Wh.kg(-1)能量为1500 W.kg(-1)功率,即使在5000次循环后,循环稳定性近81%。所得结果与前述其他BI2O3形态学报告的值相当或优于相当的结果。这作为组装发出了20分钟的红发二极管,展示了在组装各种能量存储装置的开发的超快点Bi2O3纳米结构的否定渠道的科学和工业凭证。

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