A liquid phase synthesis b 3+ , la 3+ Doped orthogonal structure bismuth fluoride lithium ion battery positive electrode material and preparation method thereof
A lithium-ion battery, liquid-phase synthesis technology, applied in battery electrodes, non-aqueous electrolyte battery electrodes, secondary batteries, etc., can solve the problems of great influence of electron transport characteristics, harsh process conditions, and low electron conductivity, etc. Achieve excellent electrochemical performance, avoid side reaction products, and achieve high product purity
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Embodiment 1
[0021] Example 1: Prepare 200mL of aqueous solution A consisting of 5wt% bismuth nitrate, 1wt% dilute nitric acid, 0.1wt% boric acid, 0.1wt% lanthanum nitrate, and 0.1wt% ethanolamine; prepare 200mL of 15wt% ammonium fluoride, 0.1wt% %Aqueous solution B of polyvinylpyrrolidone with an average molecular weight between 20000-30000; the preparation composition is an aqueous solution of 0.1wt% perfluoroheptanoic acid and 0.1wt% polyethylene oxide and polylactic acid block copolymer PEO-b-PLA C; Put the aqueous solution C into a cylindrical reactor with a volume of 2L and an inner diameter of 15 cm to 1 / 3 of the total volume of the reactor, set the temperature of the aqueous solution C at 40°C and use a polytetrafluoroethylene with a diameter of 10 cm The vinyl paddle was agitated at a speed of 1250 rpm. Use a peristaltic pump to simultaneously pump the aqueous solution A and the aqueous solution B into the reactor at a speed of 0.1 mL / min until all the prepared aqueous solutions A...
Embodiment 2
[0022] Embodiment 2: preparation 300mL is composed of 15wt% bismuth nitrate, 0.5wt% boric acid, 0.4wt% lanthanum nitrate, 5wt% dilute nitric acid, 0.5wt% aqueous solution A of triethanolamine hydrochloride; preparation 300mL is composed of 45wt% ammonium fluoride, 0.5wt% aqueous solution B of polyvinyl alcohol with an average molecular weight of 10,000-20,000; the preparation composition is 0.5wt% 2,2-difluorocyclopropanecarboxylic acid and 0.5wt% polyethylene oxide and poly(1,2-butylene oxide) Aqueous solution C of block copolymer PEO-b-PBO; put aqueous solution C into a cylindrical reactor with a volume of 2L and an inner diameter of 20 cm to 1 / 2 of the total volume of the reactor, and set the temperature of aqueous solution C at 60 °C while stirring at a speed of 1500 rpm using a polytetrafluoroethylene stirring paddle with a diameter of 15 cm. Use a peristaltic pump to simultaneously pump the aqueous solution A and the aqueous solution B into the reactor at a rate of 1 mL / ...
Embodiment 3
[0023] Embodiment 3: preparation 250mL is composed of 10wt% bismuth nitrate, 0.3wt% boric acid, 0.3wt% lanthanum nitrate, 3wt% dilute nitric acid, 0.3wt% triethanolamine aqueous solution A; preparation 250mL is composed of 30wt% ammonium fluoride, 0.3 Aqueous solution B of wt% op-10; aqueous solution C composed of 0.3wt% perfluoroglutaric acid and 0.3wt% polyethylene oxide and poly-N-isopropylacrylamide block copolymer PEO-b-PNIPAM ;Put the aqueous solution C into a 2L volume cylindrical reactor with an inner diameter of 17 cm to 2 / 5 of the total volume of the reactor, set the temperature of the aqueous solution C at 50°C and use a polytetrafluoroethylene with a diameter of 12 cm The stirring paddle was stirred at a speed of 1350 rpm. Use a peristaltic pump to simultaneously pump the aqueous solution A and the aqueous solution B into the reactor at a speed of 0.5 mL / min until all the prepared aqueous solutions A and B are pumped out. The inlet of the aqueous solution A into t...
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