Suppr超能文献

HKTiNbO 纳米线实现高性能锂离子吸收。

HKTiNbO Nanowires Enabling High-Performance Lithium-Ion Uptake.

机构信息

Faculty of Materials Science and Chemical Engineering , Ningbo University , No. 818 Fenghua Road , Ningbo 315211 Zhejiang Province , People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2019 Mar 6;11(9):9136-9143. doi: 10.1021/acsami.8b21817. Epub 2019 Feb 22.

Abstract

HTiNbO has been widely investigated in many fields because of its distinctive properties such as good redox activity, high photocatalytic activity, and environmental benignancy. Here, this work reports the synthesis of one-dimensional HKTiNbO nanowires via simple electrospinning followed by an ion-exchange reaction. The HKTiNbO nanowires consist of many small "lumps" with a uniform diameter distribution of around 150 nm. Used as an anode for lithium-ion batteries, HKTiNbO nanowires exhibit high capacity, fast electrochemical kinetics, and high performance of lithium-ion uptake. A capacity of 144.1 mA h g can be carried by HKTiNbO nanowires at 0.5 C in the initial charge, and even after 150 cycles, the reversible capacity can remain at 123.7 mA h g with an excellent capacity retention of 85.84%. For HKTiNbO nanowires, the diffusion coefficient of lithium ions is 1.97 × 10 cm s, which promotes the lithium-ion uptake effectively. The outstanding electrochemical performance is ascribed to its morphology and the formation of a stable phase during cycling. In addition, the in situ X-ray diffraction and ex situ transmission electron microscopy techniques are applied to reveal its lithium storage mechanism, which proves the structure stability and electrochemical reversibility, thus achieving high-performance lithium-ion uptake. All these advantages demonstrate that HKTiNbO nanowires can be a possible alternative anode material for rechargeable batteries.

摘要

HTiNbO 因其良好的氧化还原活性、高光催化活性和环境友好性等独特性质而在许多领域得到了广泛的研究。本工作通过简单的静电纺丝和离子交换反应,合成了一维的 HKTiNbO 纳米线。HKTiNbO 纳米线由许多小“块状物”组成,直径分布均匀,约为 150nm。将其用作锂离子电池的阳极,HKTiNbO 纳米线表现出高容量、快速的电化学动力学和高锂离子吸收性能。在初始充电时,HKTiNbO 纳米线在 0.5C 下的容量可达 144.1mAhg,即使经过 150 次循环后,可逆容量仍可保持在 123.7mAhg,容量保持率为 85.84%。对于 HKTiNbO 纳米线,锂离子的扩散系数为 1.97×10cm/s,有效地促进了锂离子的吸收。其出色的电化学性能归因于其形态和循环过程中稳定相的形成。此外,还采用原位 X 射线衍射和透射电子显微镜技术揭示了其储锂机制,证明了结构的稳定性和电化学的可逆性,从而实现了高容量的锂离子吸收。所有这些优势表明,HKTiNbO 纳米线可以作为一种有前途的可充电电池的替代阳极材料。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验