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    • 5. 发明授权
    • Method of producing nano-size graphene-based material and an equipment for producing the same
    • 制造纳米尺寸石墨烯材料的方法及其制造方法
    • US08968695B2
    • 2015-03-03
    • US13389868
    • 2009-08-11
    • Young Jin KwonJa Woon GuWon Hyung ParkCheol Min ShinByoung Kyu JiDoo Hyo Kwon
    • Young Jin KwonJa Woon GuWon Hyung ParkCheol Min ShinByoung Kyu JiDoo Hyo Kwon
    • C01B31/00B01J8/08C01B31/04B01J6/00B01J19/00B82Y30/00B82Y40/00
    • C01B31/043B01J6/004B01J19/0093B01J2219/0081B01J2219/00867B01J2219/00873B01J2219/00932B82Y30/00B82Y40/00C01B32/182C01B32/19C01B32/192C01B32/23C01B2204/04C01B2204/32Y10S977/734Y10S977/847
    • The present invention is directed to a method of producing nano-size graphene-based material and an equipment for producing the same. The present invention provides a method of producing graphitic oxide by forcing graphite sulfuric slurry and KMnO4 sulfuric solution into a lengthy micro-channel and by sustaining the mixture of the said graphite sulfuric slurry and the said KMnO4 sulfuric solution in the said micro-channel at predetermined temperatures, by putting the said aqua solution of hydrogen peroxide to the reaction mixture to terminate oxidation, and by washing and drying the reaction mixture. The present invention provides a method of producing nano-size graphene-based material by exfoliating graphitic oxide by thermal shock in a vertical fluidized furnace. According to the present invention, graphitic oxide can be produced massively without risks of explosion by forcing all reagents as liquid phase continuously into a lengthy micro-channel surrounded and thermally controlled strictly by heat exchangers. Nano-size graphene-based material derived by exfoliating thus produced graphitic oxide can be imported into compositions and composites for various uses since it has physical characteristics comparable to carbon nanotube and dispersibility superior to carbon nanotube via residual functional groups.
    • 本发明涉及一种生产纳米尺寸石墨烯材料的方法及其制造方法。 本发明提供了一种通过将石墨硫酸浆料和KMnO 4硫酸溶液强制到长时间的微通道中并通过将预定的所述微通道中的所述石墨硫酸浆料和所述KMnO 4硫酸溶液的混合物维持在所述微通道中的方式来生产石英氧化物的方法 通过将所述过氧化氢水溶液置于反应混合物中以终止氧化,并通过洗涤和干燥反应混合物来实现。 本发明提供了一种通过在垂直流化炉中通过热冲击剥离石墨氧化物来生产纳米尺寸石墨烯材料的方法。 根据本发明,通过将所有试剂作为液相连续进入严格由热交换器包围和热控制的长时间的微通道,可以大量生产石墨氧化物而没有爆炸的危险。 通过剥离由此产生的石英氧化物衍生的纳米尺寸石墨烯材料可以被导入用于各种用途的组合物和复合材料中,因为其具有与碳纳米管相当的物理特性,并且通过残余官能团优于碳纳米管的分散性。
    • 9. 发明申请
    • WEATHER STATION
    • 天气站
    • US20080117073A1
    • 2008-05-22
    • US11562677
    • 2006-11-22
    • Raymond CHAN
    • Raymond CHAN
    • G08B5/00
    • G01W1/02G01W1/10G09F9/33
    • A weather station for determining and indicating weather data including a weather forecast, comprises a base, three LEDs in the base, and a microprocessor-based operating circuit in the base for operation and control, including determining weather data and operating the LEDs. There is a crystal indicator supported on the base for illumination by the LEDs to indicate a weather forecast determined by the operating circuit. The indicator includes three graphical weather images etched therein by laser for selective illumination by the LEDs to indicated respective “Sunny”, “Cloudy” or “Rainy” forecast forecasts of the weather.
    • 用于确定和指示包括天气预报的天气数据的气象站包括基座,基座中的三个LED以及用于操作和控制的基座中的基于微处理器的操作电路,包括确定天气数据和操作LED。 底座上有一个水晶指示器,用于照亮LED以指示由操作电路确定的天气预报。 该指示器包括通过激光来蚀刻在其中的三个图形天气图像,以通过LED进行选择性照明,以指示相应的天气的“Sunny”,“Cloudy”或“Rainy”或“Rainy”预报。
    • 10. 发明申请
    • TIME PROJECTION CLOCK
    • 时间投影时钟
    • US20080112271A1
    • 2008-05-15
    • US11558054
    • 2006-11-09
    • Raymond CHAN
    • Raymond CHAN
    • G04C17/00
    • G04G9/00
    • A time projection clock comprises an operating circuit including a clock circuit for time keeping and producing a time signal, and a projection unit incorporating a projection circuit for receiving the time signal from the clock circuit and, in response, projecting a corresponding time image onto an external surface, based on the time signal. The projection circuit comprises a super-bright LED for emitting a light beam, a driver for driving the super-bright LED, and an LCD panel located in front of the super-bright LED and intersected by the light beam to produce the time image.
    • 时间投影时钟包括操作电路,其包括用于时间保持和产生时间信号的时钟电路,以及投影单元,其包括用于从时钟电路接收时间信号的投影电路,并且响应于将对应的时间图像投影到 外表面,基于时间信号。 投影电路包括用于发射光束的超亮LED,用于驱动超亮LED的驱动器和位于超亮LED前方并与光束相交以产生时间图像的LCD面板。