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Template-free synthesis of highly porous V2O5 cuboids with enhanced performance for lithium ion batteries

机译:无模板合成高度多孔的V2O5长方体,具有增强的锂离子电池性能

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Highly porous hierarchical V2O5 cuboids have been synthesized by a template-free PVP-assisted polyxol method and the formation mechanism is studied. The cuboids are assembled from numerous mesoporous nanoplates and the preferred orientation of each single nanoplate exposes the < 110 > facets, facilitating lithium-ion diffusion by offering a prior channel. This material exhibits a high capacity of 143 mA h g(-1), high rate capacity of 10 C and long life cycling performance up to 1000 cycles. The excellent electrochemical performance of V2O5 cuboid electrodes is due to its unique porous cuboid morphology and optimized structural stability upon cycling. This research provides an effective route to the construction of complex porous architectures assembled from nanocrystals through a surfactant-assisted synthesis method.
机译:采用无模板的PVP辅助聚二甲苯醇法合成了高度多孔的V2O5长方体,并研究了其形成机理。长方体是由许多中孔纳米板组装而成的,每个单个纳米板的首选方向都暴露了<110>晶面,从而通过提供先前的通道促进了锂离子的扩散。该材料展现出143 mA h g(-1)的高容量,10 C的高倍率容量以及长达1000次循环的长寿命循环性能。 V2O5长方体电极的出色电化学性能归因于其独特的多孔长方体形态和优化的循环稳定性。该研究为通过表面活性剂辅助合成方法从纳米晶体组装而成的复杂多孔结构的构建提供了一条有效途径。

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