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采用结构剪裁策略制备的用于高能量密度双离子电池的超高质量负载集成自支撑功能性全碳正极

An Ultrahigh-Mass-Loading Integrated Free-Standing Functional All-Carbon Positive Electrode Prepared using an Architecture Tailoring Strategy for High-Energy-Density Dual-Ion Batteries.

作者信息

Wei Yike, Tang Bin, Liang Xiao, Zhang Fan, Tang Yongbing

机构信息

Advanced Energy Storage Technology Research Center, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen, Guangdong, 518055, China.

Nano Science and Technology Institute, University of Science and Technology of China, Suzhou, Jiangsu, 215123, China.

出版信息

Adv Mater. 2023 Jul;35(30):e2302086. doi: 10.1002/adma.202302086. Epub 2023 Jun 11.

Abstract

Dual-ion batteries (DIBs) have been attracting great attention for the storage of stationary energy due to their low cost, environmental friendliness, and high working voltage. However, most reports on DIBs involve low-mass-loading electrodes (<2.5 mg), while the use of high mass-loading electrodes (>10 mg cm ), which are critical for practical application, is overlooked. Herein, an integrated free-standing functional carbon positive electrode (named MSCG) with a "point-line-plane" hierarchical architecture at the practical level of ultrahigh mass-loading (>50 mg cm ) is developed for high-energy-density DIBs. The rationally designed microstructure and the advanced assembly method that is adopted produce a well-interconnected ion/electron transport channel in the MSCG electrode, which confers rapid ion/electron kinetic properties while maintaining good mechanical properties. Consequently, the DIBs with ultrahigh-mass-loading MSCG electrodes exhibits a high discharge capacity of 100.5 mAh g at 0.5 C (loading mass of 50 mg cm ) and a long-term cycling performance with a capacity retention of 87.7% at 1 C after 500 cycles (loading mass of 23 mg cm ). Moreover, the DIB with the ultrahigh-mass-loading positive electrode achieves a high energy density of 379 Wh kg based on the mass of electrode materials, the highest value recorded to date for any DIBs.

摘要

双离子电池(DIBs)因其低成本、环境友好和高工作电压,在固定储能领域备受关注。然而,大多数关于双离子电池的报道都涉及低质量负载电极(<2.5毫克),而对于实际应用至关重要的高质量负载电极(>10毫克/平方厘米)的使用却被忽视了。在此,针对高能量密度双离子电池,开发了一种在超高质量负载(>50毫克/平方厘米)实际水平上具有“点-线-面”分级结构的集成自支撑功能碳正极(命名为MSCG)。合理设计的微观结构和采用的先进组装方法在MSCG电极中产生了相互连通良好的离子/电子传输通道,赋予了快速的离子/电子动力学性能,同时保持了良好的机械性能。因此,具有超高质量负载MSCG电极的双离子电池在0.5C(负载质量为50毫克/平方厘米)下表现出100.5 mAh/g的高放电容量,在1C下经过500次循环后容量保持率为87.7%(负载质量为23毫克/平方厘米),具有长期循环性能。此外,基于电极材料的质量,具有超高质量负载正极的双离子电池实现了379 Wh/kg的高能量密度,这是迄今为止所有双离子电池记录的最高值。

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