Carbon nanotube cold cathode
    101.
    发明申请
    Carbon nanotube cold cathode 审中-公开
    碳纳米管冷阴极

    公开(公告)号:US20080012461A1

    公开(公告)日:2008-01-17

    申请号:US11270274

    申请日:2005-11-09

    Abstract: A carbon nanotube layer for a field emission cathode where individual carbon nanotubes or small groups of carbon nanotubes that stick out from the surface more than the rest of the layer are avoided. Electron fields will concentrate on these sharp points, creating an enhanced image on the phosphor, resulting in a more luminous spot than the surroundings. Activation processes further free such carbon nanotubes or groups of carbon nanotubes sticking out from the surface, exasperating the problem.

    Abstract translation: 一种用于场致发射阴极的碳纳米管层,其中避免了单层碳纳米管或从表面伸出的碳纳米管的小组。 电子场将集中在这些尖锐点上,在磷光体上产生增强的图像,导致比周围环境更亮的斑点。 激活过程进一步释放这种碳纳米管或从表面伸出的碳纳米管组,从而激怒了这个问题。

    Carbide nanostructures and methods for making same
    102.
    发明授权
    Carbide nanostructures and methods for making same 有权
    硬质合金纳米结构及其制备方法

    公开(公告)号:US07318763B2

    公开(公告)日:2008-01-15

    申请号:US10986599

    申请日:2004-11-10

    CPC classification number: H01J1/304 B82Y10/00 H01J9/025 H01J2201/30469

    Abstract: A structure includes a substrate and a metallized carbon nano-structure extending from a portion of the substrate. In a method of making a metallized carbon nanostructure, at least one carbon structure formed on a substrate is placed in a furnace. A metallic vapor is applied to the carbon nanostructure at a preselected temperature for a preselected period of time so that a metallized nanostructure.

    Abstract translation: 结构包括从衬底的一部分延伸的衬底和金属化的碳纳米结构。 在制造金属化碳纳米结构的方法中,将形成在基板上的至少一个碳结构放置在炉中。 将金属蒸气在预选温度下预选的时间段施加到碳纳米结构,使得金属化的纳米结构。

    FIELD EMISSION ELEMENT HAVING CARBON NANOTUBE AND MANUFACTURING METHOD THEREOF
    103.
    发明申请
    FIELD EMISSION ELEMENT HAVING CARBON NANOTUBE AND MANUFACTURING METHOD THEREOF 有权
    具有碳纳米管的场致发射元件及其制造方法

    公开(公告)号:US20070296323A1

    公开(公告)日:2007-12-27

    申请号:US11766998

    申请日:2007-06-22

    CPC classification number: H01J9/025 B82Y10/00 H01J1/304 H01J2201/30469

    Abstract: A given field emission element includes a carbon nanotube field emission wire and at least one supporting protective layer coating an outer surface of the carbon nanotube field emission wire. The carbon nanotube field emission wire is selected from a group consisting of a carbon nanotube yarn, a wire-shaped CNT-polymer composite, and a wire-shaped CNT-glass composite. A method for manufacturing the described field emission element includes the steps of: (a) providing one carbon nanotube field emission wire; (b) forming one supporting protective layer on an outer surface of the carbon nanotube field emission wire; and (c) cutting the carbon nanotube field emission wire to a predetermined length and treating the carbon nanotube emission wire to form the field emission element.

    Abstract translation: 给定的场发射元件包括碳纳米管场发射线和涂覆碳纳米管场发射线的外表面的至少一个支撑保护层。 碳纳米管场致发射线选自碳纳米管丝,线状CNT-聚合物复合物和线状CNT-玻璃复合物。 一种制造所述场发射元件的方法包括以下步骤:(a)提供一个碳纳米管场发射线; (b)在碳纳米管场发射线的外表面上形成一个支撑保护层; 和(c)将碳纳米管场致发射线切割成预定长度并处理碳纳米管发射线以形成场致发射元件。

    Field emission element and manufacturing method thereof
    104.
    发明申请
    Field emission element and manufacturing method thereof 有权
    场致发射元件及其制造方法

    公开(公告)号:US20070284987A1

    公开(公告)日:2007-12-13

    申请号:US11644257

    申请日:2006-12-21

    Abstract: A field emission element includes at least one supporting wire and at least one carbon nanotube wire. The supporting wire and the carbon nanotube wire are twisted together. A method for manufacturing the described field emission element is also provided. The method includes the steps of: (a) providing at least one carbon nanotube wire and at least one supporting wire; (b) twisting the carbon nanotube wire and the supporting wire together to form a multi-strand structure by a spinning process; and (c) cutting the multi-strand structure according to a predetermined length to form a field emission element.

    Abstract translation: 场发射元件包括至少一个支撑线和至少一个碳纳米管线。 支撑线和碳纳米管线被绞合在一起。 还提供了一种用于制造所述场致发射元件的方法。 该方法包括以下步骤:(a)提供至少一个碳纳米管线和至少一个支撑线; (b)通过纺丝工艺将碳纳米管线和支撑线扭绞在一起形成多股结构; 和(c)根据预定长度切割多股结构以形成场发射元件。

    METHOD FOR FABRICATING FIELD EMITTER ELECTRODE USING ARRAY OF CARBON NANOTUBES
    106.
    发明申请
    METHOD FOR FABRICATING FIELD EMITTER ELECTRODE USING ARRAY OF CARBON NANOTUBES 审中-公开
    使用碳纳米管阵列制备场致发射体电极的方法

    公开(公告)号:US20070275627A1

    公开(公告)日:2007-11-29

    申请号:US11681262

    申请日:2007-03-02

    CPC classification number: H01J9/025 B82Y10/00 H01J2201/30469

    Abstract: The present invention relates to a method for fabricating a field emitter electrode, in which carbon nanotubes (CNTs) are aligned in the direction of a generated magnetic field. Specifically, the method comprises the steps of dispersing a solution of carbon nanotubes (CNTs) diluted in a solvent, on a substrate fixed to the upper part of an electromagnetic field generator, and fixing the carbon nanotubes aligned in the direction of an electromagnetic field generated from the electromagnetic field generator. According to the disclosed method, high-density and high-capacity carbon nanotubes aligned in the direction of a generated electromagnetic field can be fabricated in a simple process and can be applied as positive electrode materials for field emission displays (FEDs), sensors, electrodes, backlights and the like.

    Abstract translation: 本发明涉及一种制造场致发射电极的方法,其中碳纳米管(CNT)沿所产生的磁场的方向排列。 具体地说,该方法包括以下步骤:将稀释在溶剂中的碳纳米管(CNT)的溶液分散在固定在电磁场发生器的上部的基板上,并将碳纳米管沿着产生的电磁场的方向 从电磁场发生器。 根据所公开的方法,可以以简单的工艺制造在所产生的电磁场方向上排列的高密度和高容量的碳纳米管,并且可以用作用于场发射显示器(FED),传感器,电极的正极材料 ,背光灯等。

    Method of Manufacturing Carbon Nanotubes Paste
    107.
    发明申请
    Method of Manufacturing Carbon Nanotubes Paste 审中-公开
    碳纳米管糊的制造方法

    公开(公告)号:US20070267602A1

    公开(公告)日:2007-11-22

    申请号:US11419235

    申请日:2006-05-19

    Applicant: Shie-Heng Lee

    Inventor: Shie-Heng Lee

    Abstract: A method of manufacturing carbon nanotube paste first dissolves or disperses carbon nanotube into a large amount of solvent of low boiling point to prepare carbon nanotube diluted solution. The carbon nanotube diluted solution is then mixed with carbon nanotube paste liquid for mesh-printing. A concentration step removes the solvent of low boiling point from the mixed solution. Therefore, the carbon nanotube can be uniformly dispersed in the carbon nanotube paste and the viscosity of the carbon nanotube paste can be well controlled.

    Abstract translation: 碳纳米管糊料的制造方法首先将碳纳米管溶解或分散到大量的低沸点溶剂中以制备碳纳米管稀释溶液。 然后将碳纳米管稀释溶液与用于网印的碳纳米管糊状液混合。 浓缩步骤从混合溶液中除去低沸点溶剂。 因此,能够将碳纳米管均匀地分散在碳纳米管糊中,能够良好地控制碳纳米管糊的粘度。

    Method of Selectively Applying Carbon Nanotube Catalyst
    108.
    发明申请
    Method of Selectively Applying Carbon Nanotube Catalyst 审中-公开
    选择性应用碳纳米管催化剂的方法

    公开(公告)号:US20070265158A1

    公开(公告)日:2007-11-15

    申请号:US11547105

    申请日:2005-03-28

    Abstract: A method for applying a carbon nanotube growth catalyst to at least one specified location on a substrate surface of a substrate formed of conductive material, and the method includes a preparation step for preparing on the substrate a coating layer having a hole contacting the substrate surface at a location corresponding to the specified location. The method also includes a deposition step for forming by deposition a conical deposited material on a substrate surface portion contacting the hole by irradiating the substrate with electrically conductive material particles in a oblique direction from above the coating layer while rotating the substrate about a shaft perpendicular to the substrate surface, and for forming by deposition an eaves-like deposited layer which extends to close an opening of the hole. The method also includes a determination step for measuring a size of the opening in accordance with extension of the eaves-like deposited layer, and a catalyst applying step for applying the catalyst to a tip of the conical deposited material by way of irradiation of material particles of the catalyst via the opening when the opening is measured to have a specified size.

    Abstract translation: 一种将碳纳米管生长催化剂施加到由导电材料形成的基板的基板表面上的至少一个特定位置的方法,该方法包括制备步骤,用于在基板上制备具有与基板表面接触的孔的涂层 与指定位置相对应的位置。 所述方法还包括沉积步骤,用于通过在与所述孔接触的基底表面部分上沉积圆锥形沉积材料,通过从所述涂层上方沿倾斜方向照射所述基底导电材料颗粒,同时沿垂直于 衬底表面,并且用于通过沉积形成延伸以封闭孔的开口的檐状沉积层。 该方法还包括用于根据檐状沉积层的延伸来测量开口的尺寸的确定步骤,以及用于通过材料颗粒的照射将催化剂施加到锥形沉积材料的尖端的催化剂施加步骤 当开口被测量为具有特定尺寸时,该催化剂通过开口。

    Field emission light source and a related backlight device
    109.
    发明授权
    Field emission light source and a related backlight device 有权
    场发射光源和相关的背光装置

    公开(公告)号:US07290916B2

    公开(公告)日:2007-11-06

    申请号:US11301581

    申请日:2005-12-13

    Applicant: Ga-Lane Chen

    Inventor: Ga-Lane Chen

    Abstract: A light source (100) provided herein generally includes a substrate (110), a cathode (120), an isolating layer (122), a light-permeable anode (152), and at least one fluorescent layer (154). The substrate has a surface, and the cathode, with at least one solid electron emitter formed thereon, is located on the surface of the substrate. The isolating layer is formed on the cathode. The light-permeable anode faces the field emitters and is spaced from the cathode to form a vacuum chamber. The at least one fluorescent layer is formed on the anode. Such a light source can then be incorporated, e.g., into a backlight module (300) for an LCD device.

    Abstract translation: 本文提供的光源(100)通常包括基板(110),阴极(120),隔离层(122),透光阳极(152)和至少一个荧光层(154)。 衬底具有表面,并且其上形成有至少一个固体电子发射体的阴极位于衬底的表面上。 隔离层形成在阴极上。 透光阳极面对场发射体并且与阴极间隔开以形成真空室。 在阳极上形成至少一个荧光层。 然后可以将这样的光源结合到例如用于LCD装置的背光模块(300)中。

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