Invention Grant
- Patent Title: Method for preparing lithium iron phosphate nanopowder
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Application No.: US14429066Application Date: 2014-01-09
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Publication No.: US09608270B2Publication Date: 2017-03-28
- Inventor: In Kook Jun , Seung Beom Cho , Myoung Hwan Oh
- Applicant: LG Chem, Ltd.
- Applicant Address: KR
- Assignee: LG Chem, Ltd.
- Current Assignee: LG Chem, Ltd.
- Current Assignee Address: KR
- Agency: Lerner, David, Littenberg, Krumholz & Mentlik, LLP
- Priority: KR10-2013-0003032 20130110; KR10-2013-0055476 20130516; KR10-2014-0002572 20140108
- International Application: PCT/KR2014/000264 WO 20140109
- International Announcement: WO2014/109574 WO 20140717
- Main IPC: H01M4/13
- IPC: H01M4/13 ; H01M4/58 ; H01M4/00 ; H01M4/82 ; H01M6/00 ; H01M4/36 ; C01B25/45 ; H01M4/04 ; H01M4/136 ; H01M4/587 ; H01M10/052 ; H01M4/02 ; H01M4/62

Abstract:
The present invention relates to a method for preparing a lithium iron phosphate nanopowder, including the steps of (a) preparing a mixture solution by adding a lithium precursor, an iron precursor and a phosphorus precursor in a reaction solvent, and (b) putting the mixture solution into a reactor and heating to prepare the lithium iron phosphate nanopowder under pressure conditions of 1 to 10 bar, and a lithium iron phosphate nanopowder prepared by the method. When compared to a common hydrothermal synthesis method, a supercritical hydrothermal synthesis method and a glycothermal synthesis method, a reaction may be performed under a relatively lower pressure. Thus, a high temperature/high pressure reactor is not necessary and process safety and economic feasibility may be secured. In addition, a lithium iron phosphate nanopowder having uniform particle size and effectively controlled particle size distribution may be easily prepared.
Public/Granted literature
- US20150280236A1 METHOD FOR PREPARING LITHIUM IRON PHOSPHATE NANOPOWDER Public/Granted day:2015-10-01
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