Hou Chuanxin, Yang Wenyue, Xie Xiubo, Sun Xueqin, Wang Jun, Naik Nithesh, Pan Duo, Mai Xianmin, Guo Zhanhu, Dang Feng, Du Wei
School of Environmental and Material Engineering, Yantai University, No. 30 Qingquan Road, Yantai, Shandong 264005, China.
Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials (Ministry of Education), Shandong University, Jinan 250061, China.
J Colloid Interface Sci. 2021 Aug 15;596:396-407. doi: 10.1016/j.jcis.2021.03.149. Epub 2021 Mar 29.
The agaric-like anodes of porous carbon decorated with MoO nanoparticles (MoO/C) for reversible Li/Na storage were synthesized via a green and facile bio-inspired route. The uniformly distributed MoO nanoparticles, the porous agaric-like carbon matrix and high degree graphitization of carbon materials, effectively mitigated the huge volume changes during cycling and improved the reversible capacity, resulting in the outstanding electrochemical behaviors with excellent rate capability, high capacity and excellent stable long cycling lifespan as anodes for lithium and sodium storage. Especially, the MoO/C electrodes showed ultralong cycling performance under high current density of 5.0 A g, presenting a reversible capacity of 363.2 mAh g after a prolonged 2000-cycles as anodes for Li storage. Meanwhile, the MoO/C electrodes displayed a super-long cycling lifespan of 3000 cycles with the reversible discharge capacity of 193.5 mAh g at the current density of 5.0 A g for Na storage. Furthermore, the kinetic analysis of MoO/C-4 electrodes as anodes for Li/Na storage was carried out to further investigate the electrochemical behavior. The ultralong cycling performance under high-density could satisfy the demands of next-generation anode electrodes for Li/Na ion batteries, promoting the commercialization process of MoO-based materials.
通过绿色简便的仿生路线合成了用于可逆锂/钠存储的、由MoO纳米颗粒修饰的多孔碳类木耳状阳极(MoO/C)。均匀分布的MoO纳米颗粒、多孔的类木耳状碳基体以及碳材料的高度石墨化,有效缓解了循环过程中的巨大体积变化并提高了可逆容量,从而使其作为锂和钠存储的阳极具有出色的电化学性能,包括优异的倍率性能、高容量和出色的长期循环稳定性。特别是,MoO/C电极在5.0 A g的高电流密度下表现出超长的循环性能,作为锂存储阳极在经过2000次长时间循环后,可逆容量为363.2 mAh g。同时,MoO/C电极作为钠存储阳极在5.0 A g的电流密度下表现出3000次循环的超长循环寿命,可逆放电容量为193.5 mAh g。此外,对MoO/C-4电极作为锂/钠存储阳极进行了动力学分析,以进一步研究其电化学行为。高密度下的超长循环性能能够满足下一代锂/钠离子电池阳极电极的需求,推动了基于MoO的材料的商业化进程。