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首页> 外文期刊>Nanoscale >3D heterostructured architectures of Co3O4 nanoparticles deposited on porous graphene surfaces for high performance of lithium ion batteries
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3D heterostructured architectures of Co3O4 nanoparticles deposited on porous graphene surfaces for high performance of lithium ion batteries

机译:3 d Co3O4用异质结构纳米颗粒沉积在多孔石墨烯表面的高性能锂离子电池

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摘要

Control of structure and morphology in electrode design is crucial for creating efficient transport pathways of ions and electrons in high-performance energy storage devices. Here we report the fabrication of high-performance anode materials for lithium-ion batteries based on a 3D heterostructured architecture consisting of Co3O4 nanoparticles deposited onto porous graphene surfaces. A combination of replication and filtration processes - a simple and general method - allows a direct assembly of 2D graphene sheets into 3D porous films with large surface area, porosity, and mechanical stability. The polystyrene spheres are employed as sacrificial templates for an embossing technique that yields porous structures with tunable pore sizes ranging from 100 nm to 2 μm. Co3O4 nanoparticles with high-energy storage capacity can be easily incorporated into the pore surfaces by a simple deposition strategy, thereby creating a 3D heterogeneous Co3O4/graphene film. In particular, we exploit the 3D CosO4/graphene composite films as anode materials for lithium ion batteries in order to resolve the current issues of rate capability and cycling life. This unique heterogeneous 3D structure is capable of delivering excellent Li+ ion storage/release and displays the following characteristics: a high rate capability of 71% retention even at a high current rate of 1000 mA g~(-1) and a good cycling performance with 90.6% retention during 50 cycles. The versatile and simple nature of preparing 3D heterogeneous graphene films with various functional nanoparticles can be extended to overcome the major challenges that exist for many electrochemical devices.
机译:控制电极的结构和形态为创建高效的设计是至关重要的离子和电子的传输路径高性能储能设备。报告的制作高性能阳极基于3 d材料锂离子电池用异质结构Co3O4组成纳米颗粒沉积在多孔石墨烯表面。过滤过程——一个简单的和一般方法,允许直接组装二维的石墨烯表与大型三维多孔薄膜表面区、孔隙度、和机械稳定性。聚苯乙烯微球用作祭祀模板的压花技术,产量多孔结构可调孔大小不等从100纳米到2μm。高能量存储容量很容易通过一个简单的纳入孔隙表面沉积的策略,从而创建一个3 d异构Co3O4 /石墨烯薄膜。我们利用3 d CosO4 /石墨烯复合薄膜作为锂离子电池的负极材料为了解决当前的问题能力和循环寿命。异构的3 d结构的能力提供优秀的李+离子存储/释放和呈现出以下特点:高71%的能力甚至保持在一个较高的水平现价1000 mA g ~(1)和良好的循环性能以90.6%保留在50周期。准备3 d异构的石墨烯薄膜不同功能的纳米粒子可以扩展为了克服存在的重大挑战许多电化学设备。

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