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首页> 外文期刊>Electrochimica Acta >Advanced aqueous energy storage devices based on flower-like nanosheets-assembled Ni0.85Se microspheres and porous Fe2O3 nanospheres
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Advanced aqueous energy storage devices based on flower-like nanosheets-assembled Ni0.85Se microspheres and porous Fe2O3 nanospheres

机译:高级含水储能装置基于花样纳米片组装的Ni0.85se微球和多孔Fe2O3纳米球

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The design and development of novel aqueous energy storage devices with high specific energy has recently become the research hotspot. The traditional energy storage devices are severely hindered because of the relatively low specific capacity of carbon anode materials. In this work, a novel aqueous energy storage device is assembled based on flower-like nanosheets-assembled Ni0.85Se microspheres as the cathode and porous Fe2O3 nanospheres as the anode. The flower-like nanosheets-assembled Ni0.85Se microspheres are synthesized by a two-step hydrothermal method and the porous Fe2O3 nanospheres are prepared through a facile one-step ionic liquid-assisted hydrothermal method. Due to their unique structures and superior electrochemical properties, the as-fabricated Ni0.85Se//Fe2O3 asymmetric device manifests high specific energy (39.2 Wh kg(-1)), high specific power (8.56 kW kg(-1)) and good cycling stability (82.6% of capacity retention after 5000 cycles). Moreover, two asymmetric devices are connected in series and can easily light a white light-emmitting diode for more than 5 min after being charged to 3.0 V. These impressive results indicate that the rational design of cathode and anode materials for energy storage devices is vitally important, and therefore this work can provide a valuable reference for the design and fabrication of novel energy storage devices with high specific energy and high specific power. (C) 2019 Elsevier Ltd. All rights reserved.
机译:最近具有高特定能量的新型储存装置的设计和开发最近成为研究热点。由于碳阳极材料的特定容量相对较低,传统的能量存储装置受到严重阻碍的。在这项工作中,基于花样的纳米片组装的Ni0.85Se微球组装了一种新型的储存装置作为阴极和多孔Fe 2 O 3纳米球作为阳极。通过两步水热法合成了花样的纳米片组合的Ni0.85Se微球,通过容易一步离子液辅助水热方法制备多孔Fe2O3纳米球。由于其独特的结构和卓越的电化学性能,AS制造的Ni0.85se // Fe2O3不对称装置表现出高的特定能量(39.2 WH kg(-1)),高特定功率(8.56 kW kg(-1))和良好循环稳定性(5000次循环后容量保留的82.6%)。此外,两个不对称装置串联连接,并且在充电到3.0 V后可以容易地照亮白色光耦合二极管超过5分钟。这些令人印象深刻的结果表明,对于能量存储装置的阴极和阳极材料的合理设计是最大的重要的是,这项工作可以为具有高特定能量和高特定功率的新型能量存储装置的设计和制造提供有价值的参考。 (c)2019 Elsevier Ltd.保留所有权利。

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