期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
电化学置换反应制备石墨烯基纳米无定型锑复合阳极用于高性能钠离子电容器的构筑 被引量:1
1
作者 米超林 秦玉莹 +6 位作者 黄欣莉 罗伊杰 张志薇 王成祥 石元昌 尹龙卫 王儒涛 《物理化学学报》 SCIE CAS CSCD 北大核心 2024年第5期24-27,共4页
锑(Sb),因其具有较高的理论比容量(660 mAh·g^(-1))、较低储钠电位(0.5–0.8 V vs.Na/Na^(+))和较高的密度(6.68 g·cm^(-3))等特点,被认为是一种理想的钠离子电容器的阳极材料。然而,在Na^(+)脱嵌过程中,Sb电极会发生较大的... 锑(Sb),因其具有较高的理论比容量(660 mAh·g^(-1))、较低储钠电位(0.5–0.8 V vs.Na/Na^(+))和较高的密度(6.68 g·cm^(-3))等特点,被认为是一种理想的钠离子电容器的阳极材料。然而,在Na^(+)脱嵌过程中,Sb电极会发生较大的体积变化,导致其容量快速衰减以及倍率性能变差,阻碍了Sb电极的实际应用。因此,本文提出一种可用于制备锚定在具有碳涂层的二维石墨烯表面的无定型Sb纳米颗粒的电化学置换方法。所制备Sb/石墨烯复合材料具有典型的二维复合结构,可大幅增加与电解液界面接触面积,缩短离子扩散路径,促进离子迁移与电子转移。进一步利用该复合材料作为阳极,自制活性炭作为阴极,构建出一种新型钠离子电容器。研究证实,该钠离子电容器工作电压可达4.0 V,可输出140.75 Wh·kg^(-1)的最大能量密度和12.43 kW·kg^(-1)的最高功率密度。综上,该研究结果可为钠离子储能器件用高容量锑基阳极材料的优化设计提供可借鉴的思路。 展开更多
关键词 石墨烯 锑基阳极 电化学置换反应 二维复合材料 钠离子电容器
下载PDF
Scalable synthesis of macroscopic porous carbon sheet anode for potassium-ion capacitor 被引量:2
2
作者 yuying qin Yuhao Xie +6 位作者 Han Zhao Chunyan Zhu Tong Li Shuxian Zhang Rutao Wang Yuanchang Shi Longwei Yin 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第3期1463-1467,共5页
Carbon materials hold the great promise for application in energy storage devices owing to their low cost, high thermal/chemical stability, and high electrical conductivity. However, it remains challenging to synthesi... Carbon materials hold the great promise for application in energy storage devices owing to their low cost, high thermal/chemical stability, and high electrical conductivity. However, it remains challenging to synthesize high-performance carbon electrodes in a simple, scalable and sustainable way. Here, we report a facile method for scalable synthesis of porous carbon anode by using cheap and easily accessible zeolitic imidazolate framework-8 as a template and polyvinylpyrrolidone as an additional carbon source. The obtained porous carbon shows the macroscopic sheet-like morphology, which has the highly disordered structure, expanded interlayer spacing, abundant pore structure, and nitrogen doping properties. This porous carbon anode is demonstrated to have the excellent K^(+) charge storage properties in specific capacity, rate capability, and cycling stability. A potassium-ion capacitor assembled by using this porous carbon as the anode, delivers a maximum energy density of 85.12 Wh/kg and power density of 11860 W/kg as well as long cycle life exceeding 3000 cycles. This represents a critical advance in the design of low cost and scalable carbon material for applications in energy storage devices. 展开更多
关键词 Carbon materials ANODE Nitrogen doping Porous carbon Potassium-ion capacitor K+charge storage
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部