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    • 62. 发明授权
    • Field emission device with mesh grid
    • 带栅格的场发射装置
    • US07045948B2
    • 2006-05-16
    • US10743799
    • 2003-12-24
    • Hang-woo LeeJong-min KimPil-soo Ahn
    • Hang-woo LeeJong-min KimPil-soo Ahn
    • H01J1/62
    • H01J29/467H01J31/127
    • A field emission device for displaying images with good quality is provided. The field emission device includes an anode plate, an anode electrode and a phosphor layer are formed inside of the anode plate, a cathode plate, a plurality of electron emission sources for emitting electrons which correspond to the phosphor layer and a gate electrode having gate holes through which the electrons pass are formed inside of the cathode plate, a mesh grid which is provided between the cathode plate and the anode plate and in which a plurality of electron-controlling holes are formed in a region corresponding to the gate holes, a spacer which supports the mesh grid between the anode plate and the mesh grid, and insulating layers which are formed on both sides of the mesh grid and have windows through which the plurality of electron-controlling holes are exposed and which correspond to a region where the plurality of electron-controlling holes are formed.
    • 提供了用于显示质量好的图像的场致发射装置。 场致发射器件包括在阳极板内部形成阳极板,阳极电极和荧光体层,阴极板,用于发射与荧光体层相对应的电子的多个电子发射源和具有栅极孔的栅电极 电子通过的电子通过其形成在阴极板的内部,网格设置在阴极板和阳极板之间,并且在与栅极孔相对应的区域中形成有多个电子控制孔,间隔件 其支撑在阳极板和网格之间的网格,以及形成在网状网格的两侧上并具有多个电子控制孔的窗户的绝缘层,并且其中多个电子控制孔的多个 的电子控制孔。
    • 65. 发明授权
    • Method of manufacturing triode carbon nanotube field emitter array
    • 制造三极管碳纳米管场发射极阵列的方法
    • US06699642B2
    • 2004-03-02
    • US10035438
    • 2002-01-04
    • Deuk-seok ChungJong-min KimShang-hyeun ParkNae-sung LeeHang-woo Lee
    • Deuk-seok ChungJong-min KimShang-hyeun ParkNae-sung LeeHang-woo Lee
    • G03F726
    • B82Y10/00H01J9/022H01J2201/30469
    • A method of manufacturing a field emitter array using carbon nanotubes, low voltage field emission material, is provided. The method includes the steps of (a) forming a conductive thin film layer on the top of a transparent substrate having a transparent electrode and exposing a predetermined portion of the transparent electrode; (b) forming an opaque thin film layer on the exposed predetermined portion of the transparent electrode; (c) depositing an insulation material on the entire top surface of the transparent substrate and removing the insulation material from the top surfaces of the conductive thin film layer and the opaque thin film layer, thereby forming an insulation layer; (d) forming a gate layer on the top of the insulation layer; and (e) removing the opaque thin film layer and forming carbon nanotube tips on the top of the exposed transparent electrode. Accordingly, the triode carbon nanotube field emitter array can be easily manufactured using a small number of mask layers and without using a special aligner.
    • 提供了使用碳纳米管制造场致发射体阵列的方法,即低电压场发射材料。 该方法包括以下步骤:(a)在具有透明电极的透明基板的顶部上形成导电薄膜层,并暴露出透明电极的预定部分; (b)在所述透明电极的暴露的预定部分上形成不透明薄膜层; (c)在透明基板的整个顶表面上沉积绝缘材料,并从导电薄膜层和不透明薄膜层的顶表面去除绝缘材料,由此形成绝缘层; (d)在绝缘层的顶部上形成栅极层; 和(e)去除不透明薄膜层并在暴露的透明电极的顶部上形成碳纳米管尖端。 因此,可以使用少量掩模层容易地制造三极管碳纳米管场发射极阵列,并且不使用特殊的对准器。
    • 66. 发明授权
    • Method of vertically aligning carbon nanotubes on substrates at low pressure using thermal chemical vapor deposition with DC bias
    • 使用具有直流偏压的热化学气相沉积在低压下在基板上垂直排列碳纳米管的方法
    • US06673392B2
    • 2004-01-06
    • US09808011
    • 2001-03-15
    • Young-hee LeeNae-sung LeeJong-min Kim
    • Young-hee LeeNae-sung LeeJong-min Kim
    • C23C1626
    • B82Y30/00B82Y10/00B82Y40/00C01B32/162C01B2202/08C23C16/26C23C16/44C30B25/00C30B25/02C30B29/605H01J9/025H01J2201/30469Y10S427/102Y10S977/742Y10S977/842Y10S977/843Y10S977/89Y10S977/891
    • A method of vertically aligning pure carbon nanotubes on a large glass or silicon substrate at a low temperature using a low pressure DC thermal chemical vapor deposition method is provided. In this method, catalytic decomposition with respect to hydro-carbon gases is performed in two steps. Basically, an existing thermal chemical vapor deposition method using hydro-carbon gases such as acetylene, ethylene, methane or propane is used. To be more specific, the hydro-carbon gases are primarily decomposed at a low temperature of 400-500° C. by passing the hydro-carbon gases through a mesh-structure catalyst which is made of Ni, Fe, Co, Y, Pd, Pt, Au or an alloy of two or more of these materials. Secondly, the catalytically- and thermally-decomposed hydro-carbon gases pass through the space between a carbon nanotube growing substrate and an electrode substrate made of Ni, Fe, Co, Y, Pd, Pt, Au or an alloy of two or more of these materials or an electrode substrate on which Ni, Fe, Co, Y, Pd, Pt, Au or an alloy of two or more of these materials is thinly deposited by sputtering or electron-beam evaporation, the space to which DC voltage has been applied.
    • 提供了一种使用低压DC热化学气相沉积方法在低温下在大玻璃或硅衬底上将纯碳纳米管垂直排列的方法。 在这种方法中,相对于氢气气体的催化分解分两步进行。 基本上,使用使用诸如乙炔,乙烯,甲烷或丙烷之类的氢气气体的现有热化学气相沉积方法。 更具体地说,通过将碳氢气体通过由Ni,Fe,Co,Y,Pd制成的网状结构催化剂,氢气在400-500℃的低温下主要分解 ,Pt,Au或这些材料中的两种或更多种的合金。 其次,催化裂解和热分解的氢碳气体通过碳纳米管生长衬底和由Ni,Fe,Co,Y,Pd,Pt,Au或两种或更多种的合金制成的电极衬底之间的空间 这些材料或这些材料中的Ni,Fe,Co,Y,Pd,Pt,Au或这些材料中的两种或更多种的合金通过溅射或电子束蒸发薄片沉积在其上的电极基板,直流电压的空间 应用。
    • 67. 发明授权
    • Electric field emission display (FED) and method of manufacturing spacer thereof
    • 电场发射显示器(FED)及其制造方法
    • US06354898B2
    • 2002-03-12
    • US09847354
    • 2001-05-03
    • Jong-min Kim
    • Jong-min Kim
    • H01J924
    • H01J29/482H01J9/185H01J29/028H01J29/94H01J31/127H01J2329/46H01J2329/8625H01J2329/863H01J2329/864
    • An electric field emission display (FED) and a method for manufacturing a spacer thereof are provided. The FED includes a spacer having a structure in which a multi-focusing electrode layer, an electron beam amplifying layer and a getter layer are stacked between an anode and a cathode, or a spacer having a structure in which a first electrode layer, a first insulating layer, a second electrode layer, a second insulating layer, a third electrode layer, a third insulating layer and a fourth electrode layer are sequentially stacked. Thus, electron beams can be easily focused by the multi-focusing electrode of the spacer, and high luminance can be realized at low current due to electron beam amplification of the electron amplifying apparatus. Also, the diamond tip is used as an electron emission means, to thereby obtain a low driving voltage, stability at a high temperature, and high thermal conductivity. Also, a getter formed of a thin film is used, to thereby minimize a getter adhesion space, and an insulating layer formed of ceramic is used, to thereby suppress leakage current of the electrodes. According to the method for manufacturing the FED and a spacer thereof, time for manufacturing the spacer is reduced, and support stiffness is increased by the insulating layers formed of ceramic interposed between the electrode layers, to thereby increase the aspect ratio of the spacer to a desired level. Also, a multitude of electrode layers to which the negative voltage is applied, is provided in the spacer, to thereby suppress absorption of electrons to the surface of the spacer, and the number of electrons colliding against the fluorescent material is increased, to thereby increase the luminance of the device.
    • 提供了一种电场发射显示器(FED)及其制造方法。 FED包括具有多阳极和阴极之间堆叠多聚焦电极层,电子束放大层和吸气剂层的结构的隔离物或具有第一电极层,第一电极层 绝缘层,第二电极层,第二绝缘层,第三电极层,第三绝缘层和第四电极层。 因此,电子束可以通过间隔物的多聚焦电极容易地聚焦,并且由于电子放大装置的电子束放大,可以在低电流下实现高亮度。 此外,金刚石尖端用作电子发射装置,从而获得低驱动电压,高温下的稳定性和高导热性。 此外,使用由薄膜形成的吸气剂,从而使吸气剂粘附空间最小化,并且使用由陶瓷形成的绝缘层,从而抑制电极的漏电流。 根据用于制造FED的方法及其间隔件,制造间隔物的时间减少,并且由介于电极层之间的陶瓷形成的绝缘层使支撑刚度增加,从而将间隔物的纵横比增加到 期望水平。 此外,在间隔物中设置有施加负电压的多个电极层,从而抑制电子对间隔物的表面的吸收,并且与荧光材料碰撞的电子数量增加,从而增加 设备的亮度。
    • 69. 发明授权
    • Multiple micro-tips field emission device
    • 多个微尖端场发射装置
    • US5587588A
    • 1996-12-24
    • US509603
    • 1995-07-31
    • Jong-min Kim
    • Jong-min Kim
    • H01J9/02H01J1/30H01J1/304H01L29/06H01J1/46H01J21/10
    • H01J1/3042H01J2329/00
    • A multiple micro-tips field emission device includes a substrate, an adhesion layer formed on the substrate, a cathode formed in stripes on the adhesion layer, an insulation layer formed on the substrate on which the cathode is formed and having a hole formed therein, micro-tips for field emission, being multiply formed on the cathode in the hole, and a gate electrode formed on the insulation layer in stripes across the cathode and having an aperture for field emission from the micro-tips. The adjustment of the tip size is optionally available during the process. Also, the output current can be controlled in a wide range from nA to mA because of the multiple micro-tips. By forming the tips with tungsten, the device has good strength, oxidation characteristics and work function and has good electrical, chemical and mechanical endurance.
    • 多个微尖端场致发射器件包括衬底,形成在衬底上的粘合层,在粘合层上形成为条纹的阴极,形成在其上形成有阴极并具有孔的基底上的绝缘层, 用于场发射的微尖端,多孔地形成在空穴中的阴极上,以及栅极电极,其形成在绝缘层上,横跨阴极并且具有用于从微尖端发射的孔。 在此过程中可选择提供尖端尺寸的调节。 此外,由于多个微尖端,输出电流可以在从nA到mA的宽范围内控制。 通过钨形成尖端,该装置具有良好的强度,氧化特性和作用功能,具有良好的电气,化学和机械耐久性。