胡涛

个人信息Personal Information

教授

硕士生导师

主要任职:笃学书院执行院长

其他任职:无机化学教研室主任

性别:女

毕业院校:大连理工大学

学位:博士

所在单位:化学学院

学科:无机化学

办公地点:西部校区化工综合楼C403
主校区化学楼431

电子邮箱:inorchem@dlut.edu.cn

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3D Interlaced Networks of VO(OH)(2) Nanoflakes Wrapped with Graphene Oxide Nanosheets as Electrodes for Energy Storage Devices

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论文类型:期刊论文

发表时间:2019-05-01

发表刊物:ACS APPLIED NANO MATERIALS

收录刊物:EI、SCIE

卷号:2

期号:5

页面范围:2934-2945

ISSN号:2574-0970

关键字:VO(OH)(2); VO(OH)(2)/rGO composites; electrochemical properties; energy storage devices

摘要:The evolution of newfangled electrode materials with excellent properties has gained tremendous attention in order to meet the requirements applied to flexible energy devices. Vanadium oxides have attracted attention in the field of energy storage, and exploration for novel vanadium-based materials applied to energy storage has received much focus recently. Vanadium oxyhydroxide [VO(OH)(2)], which has rarely been given much attention, may deserve wider attention because of its great potential for energy storage. To play to their full strengths, it is an excellent way to hybridize with carbon materials such as reduced graphene oxide (rGO), which has superior conductivity and structural stability. Herein, we develop a novel 3D composite constructed from VO(OH)(2) nanoflakes wrapped with rGO nanosheets [denoted as 3D VO(OH)(2)/rGO] as enhanced-performance electrodes for symmetric energy storage devices. 3D VO(OH)(2)/rGO is synthesized by a one-step hydrothermal route, and this novel composite possesses a unique architecture and intimate interaction, which endows VO(OH)(2)/rGO with a remarkable electrochemical performance. A VO(OH)(2)/rGO electrode yields a high specific capacitance of 512 F.g(-1) (1024 C.g(-1)) at 0.5 A.g(-1) within -1.2 to +0.8 V. Impressively and unexpectedly, the assembled VO(OH)(2)/rGO symmetric supercapacitor exhibits the integration of desirable flexibility, 2.4 V high voltage, and high energy density, which reaches 56.26 Wh.kg(-1) at 104.16 Wkg'. After charging for 100 s, two devices in series can light red and blue light-emitting diodes for 12 and 5 min, respectively. This work not only enriches the research of VO(OH)(2) but also offers new opportunities for assembling high-performance energy storage devices.