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A General and Mild Approach to Controllable Preparation of Manganese-Based Micro- and Nanostructured Bars for High Performance Lithium-Ion Batteries

机译:一种可控制备高性能锂离子电池锰基微细结构和纳米结构条的通用轻度方法

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摘要

One-dimensional (1D) micro- and nanostructured electrode materials with controllable phase and composition are appealing materials for use in lithium-ion batteries with high energy and power densities, but they are challenging to prepare. Herein, a novel ethanol-water mediated co-precipitation method by a chimie douce route (synthesis conducted under mild conditions) has been exploited to selectively prepare an extensive series of manganese-based electrode materials, manifesting the considerable generalizability and efficacy of the method. Moreover, by simply tuning the mixed solvent and reagents, transition metal oxide bars with differing aspect ratios and compositions were prepared with an unprecedented uniformity. Application prospects are demonstrated by Li-rich 0.5Li(2)MnO(3)0.5LiNi(1/3)Co(1/3)Mn(1/3)O(2) bars, which demonstrate excellent reversible capacity and rate capability thanks to the steerable nature of the synthesis and material quality. This work opens a new route to 1D micro- and nanostructured materials by customizing the precipitating solvent to orchestrate the crystallization process.
机译:具有可控制的相和组成的一维(1D)微结构和纳米结构电极材料是用于具有高能量和功率密度的锂离子电池的吸引人的材料,但是制备它们具有挑战性。在本文中,已经开发了一种通过化学杜氏途径(在温和条件下进行合成)的乙醇-水介导的共沉淀方法,以选择性地制备一系列广泛的锰基电极材料,显示了该方法的可推广性和有效性。而且,通过简单地调节混合的溶剂和试剂,就以前所未有的均匀性制备了具有不同纵横比和组成的过渡金属氧化物棒。富含锂的0.5Li(2)MnO(3)0.5LiNi(1/3)Co(1/3)Mn(1/3)O(2)棒证明了其应用前景,该棒具有出色的可逆容量和倍率能力得益于合成材料和材料质量的可控制性。通过定制沉淀溶剂来协调结晶过程,这项工作为一维微米和纳米结构材料开辟了一条新途径。

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