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一种简单的还原法合成笼状结构 MoO2/C 复合材料用于高性能锂离子电池。

A simple reduction process to synthesize MoO2/C composites with cage-like structure for high-performance lithium-ion batteries.

机构信息

Key Laboratory of Cluster Science, Ministry of Education of China, Department of Chemistry, Beijing Institute of Technology, Beijing 100081, P. R. China.

出版信息

Phys Chem Chem Phys. 2013 Jun 14;15(22):8831-7. doi: 10.1039/c3cp44707c. Epub 2013 May 3.

Abstract

Large-scale MoO2/carbon composites with a cage-like nanostructure have been synthesized by a simple hydrothermal reduction process. During the hydrothermal process, ammonium molybdate tetrahydrate ((NH4)6Mo7O24·4H2O) was employed as starting material and ascorbic acid as a structure directing agent, reductive agent and carbon source. MoO2/C nanospheres with diameters of about 15-25 nm were interconnected to form a cage-like architecture. Time-dependent experiments illustrated that the cage-like structure was transformed from tightly packed MoO2 nanoparticles. Furthermore, with a water-soluble binder (sodium alginate), the cage-like MoO2/C composites exhibited a high discharge capacity and significantly improved cycling performance compared to previously reported MoO2-based anode materials. The electrodes with the MoO2/C composites can deliver a capacity of 692.5 mA h g(-1) after 80 charge-discharge cycles at a current density of 200 mA g(-1). After C-rate measurement, the battery still can maintain excellent cycling stability (about 550 mA h g(-1) reversible capacity retained even after 475 cycles). The excellent electrochemical performance can be ascribed to the cage-like structure, which integrates three advantages: porous structure, interconnected MoO2/C framework and small nano-crystals.

摘要

通过简单的水热还原过程合成了具有笼状纳米结构的大规模 MoO2/碳复合材料。在水热过程中,使用四水合钼酸铵((NH4)6Mo7O24·4H2O)作为起始材料,抗坏血酸作为结构导向剂、还原剂和碳源。MoO2/C 纳米球的直径约为 15-25nm,相互连接形成笼状结构。时间依赖性实验表明,笼状结构是由紧密堆积的 MoO2 纳米颗粒转化而来的。此外,与水溶性粘结剂(海藻酸钠)结合,笼状 MoO2/C 复合材料在比表面积和电解液浸润性方面表现出优异的电化学性能,与以前报道的 MoO2 基阳极材料相比,具有更高的放电容量和显著改善的循环性能。在 200mA g-1 的电流密度下,经过 80 次充放电循环后,MoO2/C 复合材料的电极可以提供 692.5mA h g-1 的容量。经过 C 率测试后,电池仍然可以保持优异的循环稳定性(即使经过 475 次循环,仍有 550mA h g-1 的可逆容量保留)。优异的电化学性能可以归因于笼状结构,它集成了三个优点:多孔结构、相互连接的 MoO2/C 骨架和小纳米晶体。

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