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255 results about "Difluorophosphoric acid" patented technology

Difluorophosphoric acid is an inorganic compound with the formula HPO 2 F 2. It is a colorless liquid. It is a colorless liquid. The acid has limited applications, in part because it is thermally and hydrolytically unstable.

Lithium difluorophosphate, electrolyte containing lithium difluorophosphate, process for producing lithium difluorophosphate, process for producing nonaqueous electrolyte, nonaqueous electrolyte, and nonaqueous electrolyte secondary battery containing the same

A difluorophosphate salt, which is expensive and not readily available, can be produced with a high purity readily and efficiently from inexpensive and readily available materials. A nonaqueous electrolyte secondary battery that exhibits low-temperature discharge and heavy-current discharge characteristics and high-temperature preservation and cycle characteristics without impairing the battery safety. A hexafluorophosphate salt is reacted with a compound having a bond represented by the following formula (1) in the molecule:
Si—O—Si  (1)
A nonaqueous electrolyte used for nonaqueous electrolyte secondary batteries including a negative electrode and a positive electrode that can occlude and discharge ions, and a nonaqueous electrolyte is prepared from a mixture obtained by mixing at least one nonaqueous solvent, a hexafluorophosphate salt and a compound having a bond represented by the following formula (1), and removing low-boiling compounds newly formed in the system, the low-boiling compounds having a lower boiling point than that of the compound having the bond represented by the formula (1):
Si—O—Si  (1)
Owner:MITSUBISHI CHEM CORP

High-capacity lithium-ion battery electrolyte of considering high-and-low temperature performance, preparation method and lithium-ion battery

The invention discloses a high-capacity lithium-ion battery electrolyte of considering high-and-low temperature performance. The electrolyte comprises a non-aqueous solvent, lithium hexafluorophate, a negative film-forming additive, an inflatable inhibition additive and a low-impedance additive, wherein the negative film-forming additive is prepared from fluoroethylene carbonate which accounts for 3%-15% of total mass of the electrolyte; the inflatable inhibition additive is prepared from one or two of 1,3-propene sultone or anhydride compounds which account for 0.3%-5% of total mass of the electrolyte; and the low-impedance additive is prepared from one or two of lithium difluorophosphate and difluoride phosphate lithium oxalate which account for 0.2%-3% of total mass of the electrolyte. The electrolyte is suitable for a high-nickel positive electrode and silicon-carbon composite negative electrode lithium-ion battery; the high-temperature storage performance and the low-temperature discharge performance of the lithium-ion battery are improved while the room-temperature cycle performance is considered; and meanwhile, the invention further provides a preparation method of the electrolyte and the high-capacity lithium-ion battery of using the electrolyte.
Owner:GUANGZHOU TINCI MATERIALS TECH

Method for Producing Difluorophosphate, Non-Aqueous Electrolyte for Secondary Cell and Non-Aqueous Electrolyte Secondary Cell

ActiveUS20080305402A1Poor battery performanceExcellent coating agentPhosphorus halides/oxyhalidesNon-aqueous electrolyte accumulatorsDifluorophosphatePhysical chemistry
A difluorophosphate effective as an additive for a nonaqueous electrolyte for secondary battery is produced by a simple method from inexpensive common materials.The difluorophosphate is produced by reacting lithium hexafluorophosphate with a carbonate in a nonaqueous solvent. The liquid reaction mixture resulting from this reaction is supplied for providing the difluorophosphate in a nonaqueous electrolyte comprising a nonaqueous solvent which contains at least a hexafluorophosphate as an electrolyte lithium salt and further contains a difluorophosphate. Also provided is a nonaqueous-electrolyte secondary battery employing this nonaqueous electrolyte.
Owner:MU IONIC SOLUTIONS CORP +1

High-voltage rate electrolyte with high-and-low temperature performance and lithium ion battery using electrolyte

The invention discloses a high-voltage rate electrolyte with high-and-low temperature performance and a lithium ion battery using the electrolyte. The electrolyte comprises a non-aqueous solvent, a lithium salt dissolved in the non-aqueous solvent and additives, wherein the non-aqueous solvent comprises propylene carbonate (PC) and linear carboxylic ester; and the additives comprise citraconic anhydride, lithium difluorophosphate (LiPO<2>F<2>), fluoroethylene carbonate, ethylene sulfate and 1, 2-di(2-cyanoethoxyl)ethane. By applying the synergistic effect generated by the solvent system and the additive optimization combination to the lithium ion battery, excellent cycle life, low-temperature discharge characteristic and high-temperature storage characteristic of the battery still can be maintained at high-voltage rate.
Owner:EVE ENERGY CO LTD

Lithium ion battery electrolytic solution and lithium ion battery

InactiveCN111653829AImprove high temperature gas production performanceGood high-rate charging performanceSecondary cellsOrganic electrolytesElectrolytic agentPropane sultone
The invention discloses a lithium ion battery electrolytic solution, which comprises a film-forming additive, wherein the film-forming additive comprises vinylene carbonate, ethylene sulfate, 1,3-propane sultone and lithium difluorophosphate, wherein the vinylene carbonate accounts for 0.2%-3% of the total mass of the electrolytic solution, the ethylene sulfate accounts for 0.5%-5% of the total mass of the electrolytic solution, the 1,3-propane sultone accounts for 0.2%-3% of the total mass of the electrolytic solution, and the lithium difluorophosphate accounts for 0.2%-2% of the total mass of the electrolytic solution. According to the invention, vinylene carbonate and ethylene sulfate in the electrolytic solution form a stable and compact SEI film on the surface of the negative electrode of the battery in the formation, charging and discharging processes, and 1,3-propane sultone and lithium difluorophosphate form a passive film on the surface of the positive electrode, so that the high-temperature gas production performance of the battery is improved, the damage to the negative electrode due to dissolution of positive electrode transition metal elements in the quick charge cycleprocess is inhibited, the film forming structure of the positive electrode and the negative electrode can be improved, the side reaction is reduced, and the battery is ensured to have good high-ratecharging performance and cycle life.
Owner:CHINA AVIATION LITHIUM BATTERY RES INST CO LTD +1

Method for producing difluorophosphate

Provided is a method for producing difluorophosphate which is characterized by obtaining the difluorophosphate by reacting at least one salt, as a raw material, selected from a halide salt, a carbonate, a phosphate, a hydroxide and an oxide of an alkali metal, an alkali earth metal or an onium with a difluorophosphoric acid in the difluorophosphoric acid, then separating a precipitate from the difluorophosphoric acid by solid liquid separation, the precipitate being precipitated by crystallization operation in the difluorophosphoric acid, and distilling the difluorophosphoric acid contained in the precipitate.
Owner:STELLA CHEMIFA CORP

Preparation method of high purity difluorophosphate

The invention discloses a preparation method of high purity difluorophosphate. The preparation method comprises the following steps: dissolving meta-phosphoric acid in alcohol, then introducing hydrogen fluoride into the alcohol to carry out fluorination reactions to obtain monofluorophosphoric acid, reacting monofluorophosphoric acid with phosphorus oxyfluoride gas to obtain difluorophosphoric acid, then reacting difluorophosphoric acid with alkali metals or alkali-earth metal halides, and separating the reaction products to obtain high purity difluorophosphate. The preparation method has the advantages that the raw materials are cheap and easily-available, a homogenous reaction technology is adopted, thus the reaction speed is greatly increased; during the reaction process, the excess raw materials and solvents can be separated, recovered, and reused through fractionation, thus the amount of generated wastes is reduced; and during the whole process, no water is generated, so the product will not be hydrolyzed. The high purity difluorophosphate can be used to produce electronic chemicals.
Owner:GUANGZHOU TINCI MATERIALS TECH +1

Preparation method of difluorophosphoric acid alkali metal salt

The invention discloses a preparation method of difluorophosphoric acid alkali metal salt. In the method, the difluorophosphoric acid alkali metal salt is produced through a reaction of hexafluorophosphates of alkali metals and corresponding phosphates of the alkali metals in a solid phase or in a non-aqueous solvent, wherein the reaction equation is MPF6+M3PO4=2MPO2F2+2MF (M=Li, Na, K, Rb, Cs), the molar ratio of MPF6 to M3PO4 is 0.8-1.5:1, preferably 1.1-1.2:1, namely, the hexafluorophosphates of alkali metals is excessive properly to ensure reaction of the phosphates to be carried completely. The method can be used for preparing the difluorophosphoric acid alkali metal salt under safe situations, thereby improving safety of the preparation process and ensuring safety of preparation operators. The difluorophosphoric acid alkali metal salt is produced through a reaction of the hexafluorophosphates and the phosphates of the alkali metals, and the target product can be produced whether the reaction is carried out in solid phases or liquid phases under mild conditions without dangerous gas raw materials and generation of acidic gas or water which may damage performances of an electrolyte.
Owner:TIANJIN JINNIU POWER SOURCES MATERIAL +1

Electrolyte functional additive for lithium ion battery, lithium ion battery electrolyte and lithium ion battery

The invention relates to an electrolyte functional additive for a lithium ion battery, a lithium ion battery electrolyte and a lithium ion battery, and belongs to the technical field of lithium ion batteries. The electrolyte functional additive for the lithium ion battery is prepared from the following components in parts by weight: 0.2-2 parts of vinylene carbonate; 0.5-2.5 parts of ethylene sulfate; 0.2-1 part of lithium difluorophosphate; 0.2-1 part of a film-forming agent; and 0.5-2.5 parts of fluoroethylene carbonate. The film-forming agent is at least one of tris(trimethylsilane) borateand tris(trimethylsilane) phosphate. When the electrolyte functional additive for the lithium ion battery is used for the lithium ion battery made of a high-capacity ternary positive electrode material, excellent SEI films can be formed on the surfaces of the positive electrode and negative electrode of the lithium ion battery, so that direct contact between an electrolyte and the surface of the positive electrode can be effectively prevented, meanwhile, the dissolution of metal ions is reduced, and the cycle performance of the battery is obviously improved.
Owner:CHINA AVIATION LITHIUM BATTERY LUOYANG
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