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    • 4. 发明授权
    • Composite material for negative electrode, method for fabricating the same and electrochemical device using the same
    • 负极复合材料及其制造方法及使用其的电化学装置
    • US08486563B2
    • 2013-07-16
    • US12910247
    • 2010-10-22
    • Kan-Sen ChouChen-Yu KaoYun-Ru Tsai
    • Kan-Sen ChouChen-Yu KaoYun-Ru Tsai
    • H01M4/52H01M4/62
    • H01B1/22H01M4/13H01M4/139H01M4/483H01M4/621H01M4/624H01M10/24
    • The present invention relates to a composite material for a negative electrode, including: a plurality of iron oxide particles; and a conductivity improver, which is selected form the group consisting of copper, cobalt, nickel, tin, antimony, bismuth, indium, silver, gold, lead, cadmium, carbon black, graphite, copper salt, cobalt salt, nickel salt, tin salt, antimony salt, bismuth salt, indium salt, silver salt, gold salt, lead salt, cadmium salt, copper hydroxide, cobalt hydroxide, nickel hydroxide, stannic hydroxide, antimony hydroxide, bismuth hydroxide, indium hydroxide, silver hydroxide, gold hydroxide, lead hydroxide, cadmium hydroxide and the combination thereof. In the case of applying the composite material for a negative electrode according to the present invention in an electrochemical device, the improved charge/discharge characteristics and high capacity can be achieved. In addition, the present invention further provides a method for fabricating the above-mentioned composite material for a negative electrode and an electrochemical device using the same.
    • 本发明涉及一种负极复合材料,包括:多个氧化铁颗粒; 和选自铜,钴,镍,锡,锑,铋,铟,银,金,铅,镉,炭黑,石墨,铜盐,钴盐,镍盐,锡的导电率改进剂 盐,锑盐,铋盐,铟盐,银盐,金盐,铅盐,镉盐,氢氧化铜,氢氧化钴,氢氧化镍,氢氧化锡,氢氧化锑,氢氧化铋,氢氧化铟, 氢氧化铅,氢氧化镉及其组合。 在根据本发明的用于负极的复合材料在电化学装置中的情况下,可以实现改进的充电/放电特性和高容量。 另外,本发明还提供一种制造上述负极复合材料的方法和使用其的电化学装置。
    • 5. 发明申请
    • High-concentration nanoscale silver colloidal solution and preparing process thereof
    • 高浓度纳米银胶体溶液及其制备方法
    • US20080064767A1
    • 2008-03-13
    • US11518200
    • 2006-09-11
    • Kan-Sen ChouYu-chieh Lu
    • Kan-Sen ChouYu-chieh Lu
    • B01F17/00
    • H05K1/097B01J13/0043B22F1/0022B22F9/24B82Y30/00C09D11/30
    • The present invention relates to a high-concentration nanoscale silver colloidal solution and the preparing process thereof. The colloidal solution of the present invention comprises a high content of silver particles, i.e. approximately 1.5 wt %. The mean size of the nanoscale silver is less than 10 nm. In the preparing process, silver salt, ionic chelating agent, stabilizing agent, reducing agent, solvent and reaction accelerator are homogeneously mixed together. The increase of reaction temperature by external heat source accelerates completed reaction. By using the specified reaction accelerator and chelating agent and under the operating condition of the present invention, high-density silver colloidal solution is obtained while inhibiting particle aggregation. Therefore, the resulting nanoscale silver colloidal solution contains very small-sized particles and the stability thereof is satisfactory.
    • 本发明涉及高浓度纳米级银胶体溶液及其制备方法。 本发明的胶体溶液包含高含量的银颗粒,即约1.5重量%。 纳米级银的平均尺寸小于10nm。 在制备过程中,将银盐,离子螯合剂,稳定剂,还原剂,溶剂和反应促进剂均匀混合在一起。 外部热源的反应温度升高加速完成反应。 通过使用规定的反应促进剂和螯合剂,在本发明的操作条件下,可以得到高密度银胶体溶液,同时抑制颗粒聚集。 因此,所得的纳米级银胶体溶液含有非常小的颗粒,其稳定性是令人满意的。