Preparation and characterization of nanofibrous cellulose as solid polymer electrolyte for lithium-ion battery applications

被引:18
|
作者
Sabrina, Qolby [1 ,2 ]
Ratri, Christin Rina [1 ]
Hardiansyah, Andri [1 ]
Lestariningsih, Titik [1 ]
Subhan, Achmad [1 ]
Rifai, Abdulloh [1 ]
Yudianti, Rike [1 ]
Uyama, Hiroshi [2 ]
机构
[1] Indonesian Inst Sci, Res Ctr Phys, Kawasan Puspiptek Serpong Gd 442 Tangerang Selata, Banten 15314, Indonesia
[2] Osaka Univ, Grad Sch Engn, Dept Appl Chem, 2-1 Yamadaoka, Suita, Osaka 5650871, Japan
关键词
BACTERIAL CELLULOSE; COMPOSITE MEMBRANE; CONDUCTIVITY; ENHANCEMENT; PERFORMANCE; SEPARATORS; TRANSPORT;
D O I
10.1039/d1ra03480d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A novel bacterial cellulose (BC)-based nanofiber material has been utilized as an ionic template for the battery system solid polymer electrolyte (SPE). The effect of drying techniques such as oven and freeze-drying on the gel-like material indicate differences in both visual and porous structures. The morphological structure of BC after oven and freeze-drying observed by field-emission scanning electron microscopy indicates that a more compact porous structure is found in freeze-dried BC than oven-dried BC. After the BC-based nanofiber immersion process into lithium hexafluorophosphate solution (1.0 M), the porous structure becomes a host for Li-ions, demonstrated by significant interactions between Li-ions from the salt and the C = O groups of freeze-dried BC as shown in the infrared spectra. X-ray diffraction analysis of freeze-dried BC after immersion in electrolyte solution shows a lower degree of crystallinity, thus allowing an increase in Li-ion movement. As a result, freeze-dried BC has a better ionic conductivity of 2.71 x 10(-2) S cm(-1) than oven-dried BC, 6.00 x 10(-3) S cm(-1). Freeze-dried BC as SPE also shows a larger electrochemical stability window around 3.5 V, reversible oxidation/reduction peaks at 3.29/3.64 V, and an initial capacity of 18 mAHr g(-1) at 0.2C. The high tensile strength of the freeze-dried BC membrane of 334 MPa with thermal stability up to 250 degrees C indicates the potential usage of freeze-dried BC as flexible SPE to dampen ionic leakage transfer.
引用
收藏
页码:22929 / 22936
页数:8
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