Metal organic framework modified poly(vinylidene fluoride-co-hexafluoropropylene) separator membranes to improve lithium-ion battery capacity fading

被引:31
|
作者
Barbosa, J. C. [1 ,2 ]
Goncalves, R. [3 ]
Valverde, A. [4 ]
Martins, P. M. [5 ,6 ]
Petrenko, Viktor I. [4 ,7 ]
Marton, Marko [8 ]
Fidalgo-Marijuan, A. [4 ]
de Luis, R. Fernandez [1 ,4 ]
Costa, C. M. [1 ,2 ,6 ]
Lanceros-Mendez, S. [4 ,7 ]
机构
[1] Univ Minho, Phys Ctr Minho & Porto Univ CF UM UP, P-4710057 Braga, Portugal
[2] Univ Minho, Lab Phys Mat & Emergent Technol, LapMET, P-4710057 Braga, Portugal
[3] Univ Minho, Ctr Chem, P-4710057 Braga, Portugal
[4] Basque Ctr Mat Applicat & Nanostruct, BCMaterials, UPV EHU Sci Pk, Leioa 48940, Spain
[5] Univ Minho, Ctr Mol & Environm Biol, Campus Gualtar, P-4710057 Braga, Portugal
[6] Univ Minho, Inst Sci & Innovat Biosustainabil IB S, P-4710057 Braga, Portugal
[7] Basque Fdn Sci, Ikerbasque, Bilbao 48009, Spain
[8] Ctr Energy Res, Budapest, Hungary
关键词
Lithium-ion batteries; MOFs type; Neutron scattering; PVDF-HFP separator; PERFORMANCE; ELECTRODES; CELL;
D O I
10.1016/j.cej.2022.136329
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The use of metal-organic frameworks in the separator membrane of lithium-ion batteries is an interesting subject of study for the next generation of energy storage devices. In this work, different poly(vinylidene fluoride-cohexafluoropropylene) (PVDF-HFP) / metal-organic framework (MOF) based separators were prepared using three distinct MOFs, and the properties of these membranes were studied. The selected MOFs MOF-808, UiO-66NH2 and MIL-125 are characterized by sharing a common building block (cluster or linker) and possessing relatively similar surface areas and topologies. It is observed that there are significant variations in the porous structure of the separator membrane upon the introduction of the different MOFs. The use of MOFs reduces the resistivity of the assembled battery half-cells, leading to excellent battery performance, with high discharge capacity (145 mAh.g(-1) at C/8) and prolonged lifecycle, outperforming e conventional neat polymer separators due to the structure's stabilization effect of the MOF. Among the selected MOFs, the best results are achieved with UiO-66-NH2 based on its improved charge/discharge values due to the low resistivity value of the half-cell. The post-morten analysis shows that the MOF structure collapses during battery cycling, but that this fact does not significantly affect battery performance, as the produced nanofillers keep their role of minimizing battery capacity fading. Thus, it is demonstrated that adding MOFs to a polymeric separator structure is beneficial and suitable for high-performance battery applications.
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页数:13
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