Electrochemical in-situ generation of Ni-Mn MOF nanomaterials as anode materials for lithium-ion batteries

被引:15
作者
Lin, Shengnan [1 ]
Zhang, Tingan [1 ]
机构
[1] Northeastern Univ, Sch Met, Key Lab Ecol Met Multi Met Intergrown Ores, Minist Educ, Shenyang 110819, Liaoning, Peoples R China
基金
中国国家自然科学基金;
关键词
PTA; MOFs; Li-ion Battery; Ni(OH)(2); Mn3O4; METAL-ORGANIC FRAMEWORK; THIN-FILMS; PERFORMANCE; CARBON; MICROSTRUCTURES; BETA-NI(OH)(2); NANOPARTICLES; NANOTUBES; COMPOSITE; CAPACITY;
D O I
10.1016/j.jallcom.2023.168926
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Due to their low cost and high theoretical lithium storage capacity, binary transition metal materials are very suitable as anode materials for lithium-ion batteries (LIBs). However, the low electrical conductivity and poor cycling stability caused by volume change during the charge-discharge process limit its appli-cation as an energy storage material. Herein, in this paper, the preparation of Ni/Mn binary compounds and the in-situ synthesis of metal-organic framework (MOF) nanosheets were realized by the one-step elec-troconversion method for the first time. In this method, NiMn-MOF nanomaterials were successfully pre-pared by using the characteristics that the cathode can generate OH- ions and the organic framework (p-phthalic acid, PTA) can be dissolved in alkali solution so that PTA was uniformly coated on the surface of Ni -Mn hydroxide. NiMn-MOF exhibits excellent performance as an anode for Li-ion batteries. Its charge-dis-charge specific capacity is 1024/1554 mAh center dot g-1, with a small charge transfer impedance, but it inherits the poor rate performance of transition metals. After 1000 cycles, the coulombic efficiency is 100%. Even after 600 cycles, the charge and discharge capacity rises steadily. MOF-derived porous structures can not only provide conductive pathways and increase the transport of electrons and lithium ions but also alleviate volume expansion. As the first successful in-situ electroconversion of PTA to synthesize NiMn-MOF, this method's low cost and good electrochemical performance provide hope for its large-scale application in Li-ion batteries. (c) 2023 Elsevier B.V. All rights reserved.
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页数:10
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