Zhang Longhai, Zhang Yanru, Xu Senyang, Zhang Chaofeng, Hou Linrui, Yuan Changzhou
School of Material Science & Engineering, University of Jinan, Jinan, 250022, P. R. China.
Institutes of Physical Science and Information Technology, Anhui University, Hefei, 230601, P. R. China.
Chemistry. 2019 Dec 20;25(72):16683-16691. doi: 10.1002/chem.201904077. Epub 2019 Nov 27.
The cost-efficient ZnMnO has attracted increasing attention as a prospective anode candidate for advanced lithium-ion batteries (LIBs) owing to its resourceful abundance, large lithium storage capacity and low operating voltage. However, its practical application is still seriously limited by the modest cycling and rate performances. Herein, a facile design to scalable synthesize unique one-dimensional (1D) mesoporous ZnMnO nanorods (ZMO-NRs) composed of nanoscale particles (≈11 nm) is reported. The 1D mesoporous structure and nanoscale building blocks of the ZMO-NRs effectively promote the transport of ions/electrons, accommodate severe volume changes, and expose more active sites for lithium storage. Benefiting from these appealing structural merits, the obtained ZMO-NRs anode exhibits excellent rate behavior (≈454 mAh g at 2 A g ) and ultra-long term cyclic performance (≈949.7 mAh g even over 500 cycles at 0.5 A g ) for efficient lithium storage. Additionally, the LiNi Co Mn O //ZMO-NRs full cell presents a practical energy density (≈192.2 Wh kg ) and impressive cyclability with approximately 91 % capacity retention over 110 cycles. This highlights that the ZMO-NRs product is a highly promising high-rate and stable electrode candidate towards advanced LIBs in electronic devices and sustainable energy storage applications.
具有成本效益的ZnMnO作为先进锂离子电池(LIBs)的潜在阳极候选材料,因其资源丰富、锂存储容量大且工作电压低而受到越来越多的关注。然而,其实际应用仍受到循环性能和倍率性能不佳的严重限制。在此,报道了一种简便的设计方法,可规模化合成由纳米级颗粒(≈11 nm)组成的独特一维(1D)介孔ZnMnO纳米棒(ZMO-NRs)。ZMO-NRs的一维介孔结构和纳米级构建块有效地促进了离子/电子的传输,适应了严重的体积变化,并暴露出更多的锂存储活性位点。受益于这些吸引人 的结构优点,所制备的ZMO-NRs阳极在高效锂存储方面表现出优异的倍率性能(在2 A g 时约为454 mAh g )和超长期循环性能(在0.5 A g 下即使超过500次循环仍约为949.7 mAh g )。此外,LiNi Co Mn O //ZMO-NRs全电池具有实际能量密度(≈192.2 Wh kg ),并且在110次循环中具有令人印象深刻的循环稳定性,容量保持率约为91%。这突出表明,ZMO-NRs产品是一种极具潜力的高倍率且稳定的电极候选材料,适用于电子设备中的先进LIBs和可持续储能应用。