Abstract:
PURPOSE: A cross-linked ceramic-coated separator is provided to suppress thermal shrinkage at a high temperature due to heat resistance and mechanical property of ceramic materials and to improve resistance to external penetration. CONSTITUTION: A method for manufacturing a cross-linked ceramic-coated separator containing an ionic polymer comprises the steps of: (i) preparing a polymer solution by dissolving an ionic polymer in a solvent; (ii) preparing inorganic dispersion by dispersing ceramic particles and functional inorganic compounds in a solvent; (iii) uniformly mixing a hardener and an initiator into the two obtained solutions; (iv) applying the coating material solution to one side or both sides of a porous film substrate; (v) cross-linking the coated substrate through thermal polymerization or UV irradiation; and (vi) drying the manufactured separators.
Abstract:
PURPOSE: An olivine type positive active material for a lithium second battery is provided to produce a lithium secondary battery with high energy density due to a carbon coating layer with high conductivity. CONSTITUTION: An olivine type positive active material for a lithium second battery comprises a core material represented by chemical formula 1: Li_xM_yM'_zXO_(4-w)B_w and a carbon coating layer with high conductivity which surrounds the core material. The carbon coating layer includes at least one or two kinds of carbon precursor selected from polyvinylpyrrolidone, water-soluble polymer and conductive polymer.
Abstract:
PURPOSE: A tube type battery is provided to obtain emission effect of heat generated in a central part of each battery by connecting each battery in serials and in parallel. CONSTITUTION: A tube type battery is prepared by forming a cooling passage to an outer material(12) covering a battery unit. The battery unit comprises a positive electrode plate, negative electrode plate and separator. The cooling passage is formed by penetrating a through hole(14) along lengthwise direction at the center of exterior material for a fuel cell.
Abstract:
PURPOSE: An organic electrolyte for a lithium-ion battery is provided to reduce initial irreversible capacity of a battery and to internal resistance of a battery after charge and discharge cycle, thereby improving charge and discharge cycle performance of a battery. CONSTITUTION: An organic electrolyte for a lithium-ion battery includes a lithium salt, an organic solvent, tris(2-chloroethyl) phosphate. The content of tris(2- chloroethyl) phosphate is 0.1 ~ 30 weight%. The lithium salt is used with one or two or more kinds selected from the group consisting of LiPF6, LiBF4, LiAsF6, LiClO4, LiCF3SO3, LiCF3SO3, LiC(SO2CF3)3, LiN(CF3SO2)2 and LiCH(CF3SO2)2. The organic solvent is one or two or more kinds of mixture selected from the group consisting of carbonate, ester, ether, and ketone.
Abstract translation:目的:提供一种用于锂离子电池的有机电解质,以减少电池的初始不可逆容量和充放电循环后电池的内部电阻,从而提高电池的充放电循环性能。 构成:用于锂离子电池的有机电解质包括锂盐,有机溶剂,磷酸三(2-氯乙基)酯。 磷酸三(2-氯乙基)的含量为0.1〜30重量%。 锂盐与选自LiPF 6,LiBF 4,LiAsF 6,LiClO 4,LiCF 3 SO 3,LiCF 3 SO 3,LiC(SO 2 CF 3)3,LiN(CF 3 SO 2)2和LiCH(CF 3 SO 2)2的一种或两种以上使用。 有机溶剂是选自碳酸酯,酯,醚和酮的一种或两种以上的混合物。
Abstract:
A method of preparing a positive active material is provided to save the production costs by not using inexpensive inert gas, to produce micro-sized particles with excellent crystallinity, and to cause no environmental contamination by using water as solven. A method of preparing a positive active material comprises the steps of: mixing a lithium precursor, transition metal precursor and phosphor precursor with a carbon precursor; after supplying the mixture with deionized water to a high pressure reactor(10), raising the temperature and pressure until they reach the supercritical water state in the high pressure reactor; after moving the materials synthesized by the supercritical water reaction in the high pressure reactor, to a cooling tank(20), cooling quickly while ejecting the synthesized materials, to grow the crystal to the circumference of the carbon precursor; and filtering the particles obtained from the crystal growth though a filter to obtain the C/LiMPO4 positive active material.