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阳离子插层的一维氢氧化锰纳米棒与具有超高电容保持率的分级介孔活性炭纳米片组成的非对称超级电容器。

Cation intercalated one-dimensional manganese hydroxide nanorods and hierarchical mesoporous activated carbon nanosheets with ultrahigh capacitance retention asymmetric supercapacitors.

作者信息

Selvaraj Aravindha Raja, Kim Hee-Je, Senthil Karuppanan, Prabakar Kandasamy

机构信息

Department of Electrical Engineering, Pusan National University, 2 Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan 46241, Republic of Korea.

Department of Physics, Bannari Amman Institute of Technology, Sathyamangalam 638 401, Tamil Nadu, India.

出版信息

J Colloid Interface Sci. 2020 Apr 15;566:485-494. doi: 10.1016/j.jcis.2020.01.117. Epub 2020 Jan 30.

Abstract

We have reported the electrochemical performance of K ion doped Mn(OH) and MnO nanorods as a positive electrode and a highly porous activated carbon nanosheet (AC) made from Prosopis Juliflora as negative electrode asymmetric supercapacitor (ASC) with high rate capability and capacity retention. The cation K doped Mn(OH) and MnO nanorods with large tunnel sizes allow the electrolyte to penetrate through a well-defined pathway and hence benefits from the intercalation pseudocapacitance and surface redox reactions. As a result, they exhibit good electrochemical performance in neutral aqueous electrolytes. More specifically, the K-Mn(OH) nanorods exhibit higher capacitance values than K-MnO nanorods due to the homogenous distribution of 1D nanorods and optimum amount of OH bonds. The fabricated K-Mn(OH) symmetric electrochemical Pseudocapacitor shows very high energy density of 10.11 Wh/kg and high-power density of 51.04 W/kg over the range of 1.0 V in aqueous electrolyte. The energy density of AC||K-Mn(OH) ASC is improved significantly compared to those of symmetric supercapacitors. The fabricated ASC exhibits a wide working voltage window (1.6 V), high power (143.37 W/kg) and energy densities (41.38 Wh/kg) at 0.2 A g, and excellent cycling behavior with 107.3% capacitance retention after 6000 cycles at 2 A g indicating the promising practical applications in electrochemical supercapacitors.

摘要

我们已经报道了钾离子掺杂的氢氧化锰和二氧化锰纳米棒作为正极,以及由牧豆树制成的高度多孔的活性炭纳米片(AC)作为负极的非对称超级电容器(ASC)的电化学性能,该超级电容器具有高倍率性能和容量保持率。阳离子钾掺杂的具有大隧道尺寸的氢氧化锰和二氧化锰纳米棒允许电解质通过明确的路径渗透,因此受益于嵌入赝电容和表面氧化还原反应。结果,它们在中性水性电解质中表现出良好的电化学性能。更具体地说,由于一维纳米棒的均匀分布和最佳数量的OH键,K-Mn(OH)纳米棒比K-MnO纳米棒表现出更高的电容值。制备的K-Mn(OH)对称电化学赝电容器在水性电解质中1.0 V的范围内显示出非常高的能量密度10.11 Wh/kg和高功率密度51.04 W/kg。与对称超级电容器相比,AC||K-Mn(OH) ASC的能量密度有显著提高。制备的ASC在0.2 A g时表现出宽的工作电压窗口(1.6 V)、高功率(143.37 W/kg)和能量密度(41.38 Wh/kg),并且在2 A g下6000次循环后具有优异的循环性能,电容保持率为107.3%,表明在电化学超级电容器中具有广阔的实际应用前景。

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