Li-ion battery and its electrode structure
A lithium-ion battery and electrode structure technology, which is applied to battery electrodes, non-aqueous electrolyte battery electrodes, batteries, etc., can solve the problems of insufficient sensitivity of temperature sensing and inability to sense the protective effect in real time, and achieve the improvement of battery safety performance. Safety, effect of suppressing charge and discharge
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experiment example 1
[0047] First, 0.4mol% niobium doped (Nb doped) Ba 0.9 Sr 0.1 TiO 3 It is mixed with polyethylene (PE) at a weight ratio of 8:2, 6:4, 5:5, 2:8, and then 5wt% of conductive particles (Super ), after mixing it evenly and making it into a coating, then measuring the change of its impedance value with the increase of temperature, the results are shown in image 3 .
[0048] From image 3 It can be seen that the coating in Experimental Example 1 can achieve two stages of impedance change. Although the ratio of PPTC material to CPTC material is about 2:8~8:2 from Experimental Example 1, once the material system is changed, the ratio may not necessarily be in this range.
experiment example 2
[0050] First, 0.4mol%Nb doped Ba 0.9 Sr 0.1 TiO 3 Mix with polyethylene (PE) in a weight ratio of 6:4, and then add 5wt% conductive particles (Super ), after mixing it evenly and making it into a coating, then measuring the change of its impedance value with the increase of temperature, the results are shown in Figure 4 . From Figure 4 The impedance value change of two stages can also be achieved.
experiment example 3
[0052] First, 0.4mol%Nb doped Ba 0.85 Sr 0.15 TiO 3 Mix with polyethylene (PE) at a weight ratio of 2:1, and then add 10wt% conductive particles (Super ), after mixing it evenly and making it into a coating, then measuring the change of its impedance value with the increase of temperature, the results are shown in Figure 5 ,From Figure 5 The change of the resistance value of the two sections can also be observed.
[0053] Figure 6 is a schematic cross-sectional view of a lithium-ion battery according to another embodiment of the present invention.
[0054] exist Figure 6 Among them, the lithium-ion battery at least includes an electrolyte solution 604 and an electrode group, and the electrode group includes a positive electrode 600, a negative electrode 602, and a separator 606, and the separator 606 is located between the positive electrode 600 and the negative electrode 602, wherein the positive electrode 600 and the negative electrode 602 can be figure 1 The el...
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