Gel type polymer electrolyte framework material prepared from low-crystal porous nano fibers
A technology of polymer materials and nanofibers, applied in circuits, electrical components, secondary batteries, etc., can solve the problems of limiting the practical application of polymer electrolytes, low ion conductivity and energy density, and low solubility of lithium salts, and achieve stability Electrochemical window, good charge and discharge performance, effect of reducing crystallinity
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Embodiment 1
[0021] The polymer electrolyte skeleton material has a porosity of 72%, a saturated liquid absorption rate of 950% at room temperature, and a retention rate of 91% after being placed for 15 days; the lithium ion conductivity of the polymer electrolyte at room temperature is 4.6×10 -3 S cm -1 , the electrochemical stability window is 4.8V. A half-battery was assembled with a lithium metal sheet as the negative electrode and lithium cobaltate as the positive electrode. The constant current charge and discharge performance was tested. The charge and discharge rate was 0.1C. The capacity was stable in the first 50 cycles, and the capacity was 90% of the initial capacity after 50 cycles. .
[0022]
[0023] Example 2:
Embodiment 2
[0025] The polymer electrolyte skeleton material has a porosity of 73%, a saturated liquid absorption rate at room temperature of 970%, and a retention rate of 91% after being placed for 15 days; the lithium ion conductivity of the polymer electrolyte at room temperature is 4.5×10 -3 S cm -1 , the electrochemical stability window is 4.7V. A half-battery was assembled with a lithium metal sheet as the negative electrode and lithium cobaltate as the positive electrode. The constant current charge and discharge performance was tested. The charge and discharge rate was 0.1C. The capacity was stable in the first 50 cycles, and the capacity was 90% of the initial capacity after 50 cycles. .
[0026]
[0027] Example 3:
Embodiment 3
[0029] The porosity of the polymer electrolyte skeleton material is 76%, the saturated liquid absorption rate at room temperature is 1020%, and the retention rate of the absorbed electrolyte after 15 days of storage is 92%; the lithium ion conductivity of the polymer electrolyte at room temperature is 4.9×10 -3 S cm -1 , the electrochemical stability window is 4.7V. A half-battery was assembled with a lithium metal sheet as the negative electrode and lithium cobalt oxide as the positive electrode. The constant current charge and discharge performance was tested. The charge and discharge rate was 0.1C. The capacity in the first 50 cycles was stable, and the capacity after 50 cycles was 91% of the initial capacity. .
[0030]
[0031] Example 4:
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