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    • 1. 发明授权
    • Method of synthesizing small-diameter carbon nanotubes with electron field emission properties
    • 合成具有电子场发射特性的小直径碳纳米管的方法
    • US07618300B2
    • 2009-11-17
    • US11012341
    • 2004-12-16
    • Jie LiuChunsheng DuCheng QianBo GaoQi QiuOtto Z. Zhou
    • Jie LiuChunsheng DuCheng QianBo GaoQi QiuOtto Z. Zhou
    • H01J1/304
    • H01J9/025B82Y10/00B82Y30/00B82Y40/00C01B32/162C01B2202/04C01B2202/36H01J1/304H01J2201/30469
    • Carbon nanotube material having an outer diameter less than 10 nm and a number of walls less than ten are disclosed. Also disclosed are an electron field emission device including a substrate, an optionally layer of adhesion-promoting layer, and a layer of electron field emission material. The electron field emission material includes a carbon nanotube having a number of concentric graphene shells per tube of from two to ten, an outer diameter from 2 to 8 nm, and a nanotube length greater than 0.1 microns. One method to fabricate carbon nanotubes includes the steps of (a) producing a catalyst containing Fe and Mo supported on MgO powder, (b) using a mixture of hydrogen and carbon containing gas as precursors, and (c) heating the catalyst to a temperature above 950° C. to produce a carbon nanotube. Another method of fabricating an electron field emission cathode includes the steps of (a) synthesizing electron field emission materials containing carbon nanotubes with a number of concentric graphene shells per tube from two to ten, an outer diameter of from 2 to 8 nm, and a length greater than 0.1 microns, (b) dispersing the electron field emission material in a suitable solvent, (c) depositing the electron field emission materials onto a substrate, and (d) annealing the substrate.
    • 公开了外径小于10nm,壁数小于10的碳纳米管材料。 还公开了一种电子场发射器件,其包括衬底,任选层的粘附促进层和电子场发射材料层。 电子场发射材料包括碳纳米管,每个管具有多至2个至10个,外径为2至8nm的多个同心石墨烯壳,纳米管长度大于0.1微米。 一种制造碳纳米管的方法包括以下步骤:(a)制备负载在MgO粉末上的含有Fe和Mo的催化剂,(b)使用氢气和含碳气体的混合物作为前体,和(c)将催化剂加热至 高于950℃以产生碳纳米管。 制造电子场发射阴极的另一种方法包括以下步骤:(a)合成含有碳纳米管的电子场发射材料,每个管具有多个同心石墨烯,每个管数为2至10个,外径为2至8nm, 长度大于0.1微米,(b)将电子场发射材料分散在合适的溶剂中,(c)将电子场发射材料沉积到衬底上,和(d)使衬底退火。
    • 4. 发明申请
    • High power density supercapacitors with carbon nanotube electrodes
    • 具有碳纳米管电极的高功率密度超级电容器
    • US20080010796A1
    • 2008-01-17
    • US11281325
    • 2005-11-16
    • Ning PanChunsheng Du
    • Ning PanChunsheng Du
    • H01G9/00
    • H01G11/26H01G11/36H01G11/86H01M4/133H01M4/587Y02E60/13Y02T10/7022Y10T29/417
    • One embodiment of the present invention provides a process for fabricating an electrode for a capacitor using carbon nanotubes (CNTs), wherein the electrode comprises a metal substrate and a layer of active material (CNTs) coated onto the metal substrate. Specifically, the process starts by dispersing CNTs in a solvent to form a suspension. Next, the CNTs are charged in the suspension. The metal substrate is then immersed in the suspension. Next, the CNTs are deposited onto the metal substrate using electrophoretic deposition (EPD) to form the layer of active material on the metal substrate. In particular, the layer of active material is formed on the metal substrate without using a binder, which effectively reduces contact resistance between the active material and the metal substrate.
    • 本发明的一个实施例提供了一种使用碳纳米管(CNT)制造用于电容器的电极的方法,其中电极包括金属基底和涂覆在金属基底上的活性材料层(CNT)。 具体地,该方法通过将CNT分散在溶剂中以形成悬浮液而开始。 接下来,将CNT充入悬浮液中。 然后将金属基材浸入悬浮液中。 接下来,使用电泳沉积(EPD)将CNT沉积到金属基板上,以在金属基板上形成活性材料层。 特别地,在金属基板上形成活性物质层,而不使用粘合剂,这有效地降低了活性材料和金属基底之间的接触电阻。
    • 5. 发明授权
    • High power density supercapacitors with carbon nanotube electrodes
    • 具有碳纳米管电极的高功率密度超级电容器
    • US07553341B2
    • 2009-06-30
    • US11281325
    • 2005-11-16
    • Ning PanChunsheng Du
    • Ning PanChunsheng Du
    • H01G9/00
    • H01G11/26H01G11/36H01G11/86H01M4/133H01M4/587Y02E60/13Y02T10/7022Y10T29/417
    • One embodiment of the present invention provides a process for fabricating an electrode for a capacitor using carbon nanotubes (CNTs), wherein the electrode comprises a metal substrate and a layer of active material (CNTs) coated onto the metal substrate. Specifically, the process starts by dispersing CNTs in a solvent to form a suspension. Next, the CNTs are charged in the suspension. The metal substrate is then immersed in the suspension. Next, the CNTs are deposited onto the metal substrate using electrophoretic deposition (EPD) to form the layer of active material on the metal substrate. In particular, the layer of active material is formed on the metal substrate without using a binder, which effectively reduces contact resistance between the active material and the metal substrate.
    • 本发明的一个实施例提供了一种使用碳纳米管(CNT)制造用于电容器的电极的方法,其中电极包括金属基底和涂覆在金属基底上的活性材料层(CNT)。 具体地,该方法通过将CNT分散在溶剂中以形成悬浮液而开始。 接下来,将CNT充入悬浮液中。 然后将金属基材浸入悬浮液中。 接下来,使用电泳沉积(EPD)将CNT沉积到金属基板上,以在金属基板上形成活性材料层。 特别地,在金属基板上形成活性物质层,而不使用粘合剂,这有效地降低了活性材料和金属基底之间的接触电阻。