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数秒内通过快速焦耳热合成层状堆叠氧化钒/石墨烯复合材料用于高性能水系锌离子电池

Flash Joule Heating Synthesis of Layer-Stacked Vanadium Oxide/Graphene Hybrids within Seconds for High-Performance Aqueous Zinc-Ion Batteries.

作者信息

Lv Xiaoxin, Yang Aomen, Wang Menglian, Nie Kaiqi, Deng Jiujun, Sun Xuhui

机构信息

Automotive Engineering Research Institute, Institute for Energy Research, Jiangsu University, 301 Xuefu Road, Zhenjiang 212013, China.

Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 2;16(39):52290-52298. doi: 10.1021/acsami.4c10376. Epub 2024 Sep 18.

Abstract

Vanadium oxides have been regarded as highly promising cathodes for aqueous zinc-ion batteries (ZIBs). However, obtaining high-performance vanadium oxide-based cathodes suitable for industrial application remains a significant challenge due to the need for cost-effective, straightforward, and efficient preparation methods. Herein, we present a facile and rapid synthesis of a composite cathode, consisting of layer-stacked VO/VO and graphene-like carbon nanosheets, in just 2.5 s by treating the commercial VO powder via a flash Joule heating strategy. When employed as the cathode for ZIBs, the resulting composite delivers a comparable rate capacity of 459 mA h g at 0.2 A g and remarkable cycle stabilities of 355.5 mA h g after 2500 cycles at 1.0 A g and 169.5 mA h g after 10,000 cycles at 10 A g, respectively. Further electrochemical analysis reveals that the impressive performance is attributed to the accelerated charge transfer and the alleviated structure degradation, facilitated by the abundant sites and a built-in electric field of the layer-stacked VO/VO heterostructure, as well as the excellent conductivity of graphene-like carbon nanosheets. This work introduces a unique approach for ultrafast and low-cost fabrication of high-performance vanadium oxide-based composite cathodes toward efficient ZIBs.

摘要

氧化钒被认为是水系锌离子电池(ZIBs)极具前景的阴极材料。然而,由于需要经济高效、简便易行的制备方法,获得适用于工业应用的高性能氧化钒基阴极仍然是一项重大挑战。在此,我们通过闪速焦耳加热策略处理商用VO粉末,在短短2.5秒内简便快速地合成了一种由层状堆叠的VO/VO和类石墨烯碳纳米片组成的复合阴极。当用作ZIBs的阴极时,所得复合材料在0.2 A g下具有459 mA h g的可比倍率容量,在1.0 A g下循环2500次后具有355.5 mA h g的显著循环稳定性,在10 A g下循环10000次后具有169.5 mA h g的显著循环稳定性。进一步的电化学分析表明,这种优异的性能归因于层状堆叠的VO/VO异质结构丰富的位点和内置电场促进了电荷转移加速以及结构降解减轻,以及类石墨烯碳纳米片优异的导电性。这项工作为高效ZIBs的高性能氧化钒基复合阴极的超快低成本制造引入了一种独特的方法。

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