Lithium ferrovanadium phosphate solid solution for positive material of lithium ion battery and preparation and application thereof
A lithium-ion battery, lithium vanadium iron phosphate technology, applied in the direction of battery electrodes, secondary batteries, circuits, etc., can solve the problems of attenuation, poor cycle performance of the main body, poor conductivity and current rate characteristics, etc., to achieve high safety, The effect of controllable particle size and high specific capacity
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Embodiment 1
[0048] X takes 0.1 to prepare LiFe 0.1 V 0.6 PO 4 Cathode material. Atomization drying carbothermal reduction method.
[0049] Step 1, raw material homogenization treatment: take lithium nitrate, iron nitrate, ammonium metavanadate, ammonium dihydrogen phosphate according to Li:Fe:V:P molar ratio is 1:0.1:0.6:1, dissolve in water, press The content of carbon accounts for 20wt% of the total amount of the matrix. Add carbon black, then add 5g of surfactant Tween 80, and prepare 1000mL suspension slurry with deionized water. After the mixture was fully stirred in a high-speed disperser for 2 hours, a well-dispersed suspension slurry was obtained as precursor liquid A.
[0050] Step 2. Precursor preparation: Dry and dehydrate the precursor solution A with a centrifugal atomization dryer, add the slurry to the spray dryer at a rate of 15mL / min, and keep the inlet and outlet temperatures at about 200°C and 100°C, respectively Left and right, the dried powder is collected in a c...
Embodiment 2
[0055] X takes 0.2 to prepare LiFe 0.2 V 0.53 PO 4 Cathode material. solid phase method.
[0056] Step 1, raw material homogenization treatment: according to Li: Fe: V: P molar ratio is 1: 0.2: 0.53: 1, weigh lithium carbonate, iron phosphate, vanadium pentoxide, account for 1wt of the total amount of matrix according to the content of carbon % add sucrose, add distilled water, place in a ball mill and grind for 12 hours to obtain precursor A.
[0057] Step 2, heat treatment: put this precursor A in a sintering furnace, and heat it under nitrogen at 800°C for 12 hours to prepare the positive electrode material LiFe for lithium-ion batteries. 0.2 V 0.53 PO 4 / C, the material is black powder. Its X-ray diffraction pattern (XRD) see figure 1 , indicating that there are no other impurities, a complete crystal is obtained, and the crystal structure is between the olivine structure and the NASCION structure. Its X-ray photoelectron spectroscopy (XPS) see figure 2 , indica...
Embodiment 3
[0059] X takes 0.3 to prepare LiFe 0.3 V 0.47 PO 4 Cathode material. Atomization drying carbothermal reduction method.
[0060] Step 1, raw material homogenization treatment: according to Li: Fe: V: P molar ratio is 1: 0.3: 0.47: 1, weigh lithium carbonate, ferric nitrate, ammonium metavanadate, diammonium hydrogen phosphate, dissolve in water, press The content of carbon accounts for 30wt% of the total amount of the matrix. Add acetylene black, then add 5g of cetyltrimethylammonium chloride, and make 1000mL suspension slurry with deionized water. After the mixture was fully stirred in a high-speed disperser for 2 hours, a well-dispersed suspension slurry was obtained as precursor liquid A.
[0061] Step 2. Precursor preparation: Dry and dehydrate the precursor solution A with a centrifugal atomization dryer, add the slurry to the spray dryer at a rate of 15mL / min, and keep the inlet temperature and outlet temperature at about 260°C and 100°C, respectively Left and right,...
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