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首页> 外文期刊>Journal of Colloid and Interface Science >Nitrogen-doped carbon and high-content alumina containing bi-active cobalt oxides for efficient storage of lithium
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Nitrogen-doped carbon and high-content alumina containing bi-active cobalt oxides for efficient storage of lithium

机译:氮掺杂碳和高含量的含双活性钴氧化物的氧化铝,可有效存储锂

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摘要

Low-content ultrathin coating of non-active alumina (Al2O3) has been extensively utilized as one of the most effective strategies to improve electrochemical performances of electrodes for lithium-ion batteries (LIBs), however, typically by employing expensive atomic layer deposition equipment. We herein demonstrate a simple preparation of high-content and well-dispersed Al2O3 (24.33 wt.%)-containing multi-component composite (CoO/Co3O4/N-C/Al2O3) by calcination of melamine/CoAl-layered double hydroxide (CoAl-LDH) mixture. The resulting composite bundles the advantages expected to improve electrochemical performances: (i) bi-active CoO/Co3O4, (ii) highly conductive N-doped carbon, and (iii) N-doped carbon and high-content non-active Al2O3 as buffering reagents, as well as (iv) good distribution of bi- and non-active components resulted from the lattice orientation and confinement effect of the LDH layers. Electrochemical evaluation shows that the composite electrode delivers a highly enhanced reversible capacity of 1078 mA h g(-1) after 50 cycles at 100 mA g(-1), compared with the bi-active CoO/Co3O4 mixtures with and without non-active Al2O3. Transmission electron microscopy/scanning electron microscopy observations and electrochemical impedance spectra experimentally provide the information on the good distributions of multiple components and the improved conductivity underlying the enhancements, respectively. Our LDH precursor-based preparation route may be extended to design and prepare various multi-component transition metal oxides for efficient lithium storage. (C) 2015 Elsevier Inc. All rights reserved.
机译:非活性氧化铝(Al2O3)的低含量超薄涂层已被广泛用作提高锂离子电池(LIB)电极电化学性能的最有效策略之一,但是通常采用昂贵的原子层沉积设备。我们在本文中演示了通过煅烧三聚氰胺/ CoAl层状双氢氧化物(CoAl-LDH)来制备高含量且分散良好的Al2O3(24.33 wt。%)的多组分复合物(CoO / Co3O4 / NC / Al2O3)的简单方法)混合物。所得复合材料具有有望改善电化学性能的优点:(i)双活性CoO / Co3O4,(ii)高导电性的N掺杂碳,和(iii)N掺杂的碳和高含量的非活性Al2O3作为缓冲剂由于LDH层的晶格取向和限制作用,导致试剂以及(iv)双和非活性组分的良好分布。电化学评估显示,与含和不含非活性Al2O3的双活性CoO / Co3O4混合物相比,复合电极在100 mA g(-1)下循环50次后,可逆容量大大提高,达到1078 mA hg(-1) 。透射电子显微镜/扫描电子显微镜观察和电化学阻抗谱分别通过实验提供了有关多种组分的良好分布和增强作用基础上的改善的电导率的信息。我们基于LDH前体的制备路线可能会扩展到设计和制备各种多组分过渡金属氧化物,以有效地存储锂。 (C)2015 Elsevier Inc.保留所有权利。

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