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基于一维富锂 LiMnNiO 正极和氮掺杂碳包覆 NiO 负极材料的可充电 Li-ion 全电池。

Rechargeable Li-ion full batteries based on one-dimensional Li-rich LiMnNiO cathode and nitrogen-doped carbon-coated NiO anode materials.

机构信息

Research Center for Materials Analysis, Korea Basic Science Institute (KBSI), 169-148 Gwahak-ro, Yuseong-gu, Daejeon 34133, Republic of Korea.

Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-gu, Pohang, Gyeongbuk 37673, Republic of Korea.

出版信息

Dalton Trans. 2023 May 16;52(19):6578-6587. doi: 10.1039/d3dt00741c.

Abstract

To meet the increasing requirements of lithium-ion batteries (LIBs) as energy sources for mobile electronic devices and electric vehicles, great efforts are being made to develop cathode and anode materials with high specific capacity and lifetime stability. Herein, we report a Li-rich one-dimensional (1D) LiMnNiO (0.3LiMnO·0.7LiNiO, LMO@LNO) cathode and a nitrogen-doped carbon-decorated NiO (NC@NiO) anode material prepared from 1D Ni(OH) nanowires (NWs) for application in full LIBs. The as-prepared 1D Li-rich LMO@LNO cathode displays a high discharge capacity (184.4 mA h g), high coulombic efficiency (73.9%), long-term cyclability, and good rate performance in comparison with pristine LiNiO (LNO). Moreover, the 1D NC@NiO composite anode exhibits a high discharge capacity (914.5 mA h g), high coulombic efficiency (76.8%), long cycling life, and better rate performance, as compared with bare NiO. A full LIB consisting of the nanostructured Li-rich LMO@LNO cathode and the NC@NiO anode delivers a high capacity of over 167.9 mA h g between 4.0 and 0.1 V. These enhanced electrochemical characteristics suggest that the full LIB configuration with 1D Li-rich LMO@LNO and NC@NiO composites holds promise as a next-generation secondary battery platform.

摘要

为满足移动电子设备和电动汽车对锂离子电池 (LIB) 作为能源日益增长的需求,人们正在努力开发具有高比容量和长循环稳定性的正极和负极材料。在此,我们报告了一种富锂一维(1D)LiMnNiO(0.3LiMnO·0.7LiNiO,LMO@LNO)正极和一种氮掺杂碳修饰的 NiO(NC@NiO)负极材料,该材料由一维 Ni(OH)纳米线(NWs)制备而成,可应用于全 LIBs。所制备的一维富锂 LMO@LNO 正极与原始 LiNiO(LNO)相比,具有较高的放电容量(184.4 mA h g)、较高的库仑效率(73.9%)、长循环寿命和良好的倍率性能。此外,一维 NC@NiO 复合负极表现出较高的放电容量(914.5 mA h g)、较高的库仑效率(76.8%)、长循环寿命和更好的倍率性能。由纳米结构富锂 LMO@LNO 正极和 NC@NiO 负极组成的全 LIB 在 4.0 至 0.1 V 之间的容量超过 167.9 mA h g。这些增强的电化学特性表明,具有一维富锂 LMO@LNO 和 NC@NiO 复合材料的全 LIB 配置有望成为下一代二次电池平台。

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