Lithium-ion battery separators based on sustainable collagen and chitosan hybrid membranes

被引:0
|
作者
Andonegi, Mireia [1 ,2 ,3 ]
Serra, Joao P. [2 ,3 ]
Silva, Maria M. [4 ]
Goncalves, Renato [4 ]
Costa, Carlos M. [2 ,3 ,5 ]
Lanceros-Mendez, Senentxu [2 ,3 ,6 ,7 ]
de la Caba, Koro [1 ,6 ]
Guerrero, Pedro [1 ,6 ,8 ]
机构
[1] Univ Basque Country UPV EHU, Escuela Ingn Gipuzkoa, BIOMAT Res Grp, Plaza Europa 1, Donostia San Sebastian 20018, Spain
[2] Univ Minho, Phys Ctr Minho & Porto Univ CF UM UP, P-4710057 Braga, Portugal
[3] Univ Minho, Lab Phys Mat & Emergent Technol, LapMET, P-4710057 Braga, Portugal
[4] Univ Minho, Ctr Chem, P-4710057 Braga, Portugal
[5] Univ Minho, Inst Sci & Innovat Biosustainabil IB S, P-4710053 Braga, Portugal
[6] Basque Ctr Mat Applicat & Nanostruct, BCMat, UPV EHU Sci Pk, Leioa 48940, Spain
[7] Ikerbasque, Basque Fdn Sci, Bilbao 48009, Spain
[8] Proteinmat Mat SL, Ave Tolosa 72, Donostia San Sebastian 20018, Spain
关键词
Collagen; Chitosan; Porous membranes; Lithium-ion batteries; SILK FIBROIN; PERFORMANCE; SCAFFOLD; CONDUCTIVITY; SOLVENT;
D O I
10.1016/j.electacta.2025.146087
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
This work focuses on the production of sustainable membranes based on collagen and chitosan as separators in lithium-ion batteries. Membranes were prepared by freeze-drying with varying collagen and chitosan contents. All membranes show interconnected pores with different pore sizes and porosity above 90 %, allowing high values of electrolyte uptake. As for thermal and mechanical characteristics, the addition of chitosan improves both thermal and mechanical stability. After 1 M LiPF6 in EC:DMC electrolyte uptake, the ionic conductivity is above 0.49 mS & sdot;cm-1 for all membranes and is most affected by the collagen content. Furthermore, the membranes present a lithium transfer number value of 0.2. In cathodic half-cells with LiFePO4, the obtained room temperature discharge capacity is above 140 mAh & sdot;g-1 at C/8 rate. For high C rates (C and 2C rates), the membranes with 80 wt % of collagen and 20 wt % of chitosan present 42 mAh & sdot;g-1 after 100 cycles at C rate, demonstrating adequate reversibility. Considering the need for more environmentally friendly materials and methods compatible with a circular economy, the bio-based membranes developed in this work constitute an alternative for synthetic separators.
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页数:11
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