Method of preparing catalyst for manufacturing carbon nanotubes
    61.
    发明申请
    Method of preparing catalyst for manufacturing carbon nanotubes 审中-公开
    制备碳纳米管制备催化剂的方法

    公开(公告)号:US20070020167A1

    公开(公告)日:2007-01-25

    申请号:US11158047

    申请日:2005-06-22

    CPC classification number: D01F9/12 B82Y30/00

    Abstract: A novel method of forming catalyst particles, on which carbon nanotubes grow based, on a substrate with increased uniformity, and a method of synthesizing carbon nanotubes having improved uniformity are provided. A catalytic metal precursor solution is applied to a substrate. The applied catalytic metal precursor solution is freeze-dried, and then reduced to catalytic metal. The method of forming catalyst particles can minimize agglomeration and/or recrystallization of catalyst particles when forming the catalyst particles by freeze-drying the catalyst metal precursor solution. The catalyst particles formed by the method has a very uniform particle size and are very uniformly distributed on the substrate.

    Abstract translation: 提供了在均匀性增加的基板上形成碳纳米管生长的催化剂颗粒的新方法,以及合成具有改善的均匀性的碳纳米管的方法。 将催化金属前体溶液施加到基底上。 将所施加的催化金属前体溶液冷冻干燥,然后还原成催化金属。 形成催化剂颗粒的方法可以通过冷冻干燥催化剂金属前体溶液形成催化剂颗粒来最小化催化剂颗粒的附聚和/或再结晶。 通过该方法形成的催化剂颗粒具有非常均匀的粒度并且非常均匀地分布在基材上。

    Ferroelectric cold cathode and ferroelectric field emission device including the ferroelectric cold cathode
    62.
    发明申请
    Ferroelectric cold cathode and ferroelectric field emission device including the ferroelectric cold cathode 审中-公开
    铁电冷阴极和铁电场发射器件包括铁电冷阴极

    公开(公告)号:US20060284543A1

    公开(公告)日:2006-12-21

    申请号:US11449736

    申请日:2006-06-09

    CPC classification number: H01J31/123 H01J1/304 H01J2201/30446

    Abstract: A ferroelectric cold cathode and a ferroelectric field emission device including the ferroelectric cold cathode includes: a substrate; a lower electrode layer arranged on a upper surface of the substrate, the lower electrode layer including a conductive material; a ferroelectric layer arranged on a upper surface of the lower electrode, the ferroelectric layer including a ferroelectric material; and an upper electrode including an ultrafine linear material net arranged on the ferroelectric layer and exposing a portion of the upper surface of the ferroelectric layer through a plurality of net holes of conductive ultrafine linear material particles distributed in a net structure.

    Abstract translation: 包括铁电冷阴极的铁电冷阴极和铁电场发射器件包括:衬底; 布置在所述基板的上表面上的下电极层,所述下电极层包括导电材料; 布置在下电极的上表面上的铁电层,所述铁电层包括铁电材料; 以及上部电极,其具有布置在所述强电介质层上的超细线状材料网,并且通过分布在网状结构中的多个导电性超细线性粒子的净孔露出所述强电介质层的上表面的一部分。

    Carbon-nano tube structure, method of manufacturing the same, and field emitter and display device each adopting the same
    63.
    发明申请
    Carbon-nano tube structure, method of manufacturing the same, and field emitter and display device each adopting the same 失效
    碳纳米管结构及其制造方法,以及场发射器和显示装置各自采用

    公开(公告)号:US20050046322A1

    公开(公告)日:2005-03-03

    申请号:US10929381

    申请日:2004-08-31

    Abstract: A carbon-nano tube (CNT) structure comprises a substrate and a plurality of CNTs, each CNT comprising a plurality of first CNTs grown perpendicular to the substrate and a plurality of second CNTs grown on sidewalls of the first CNTs. A method of manufacturing CNTs includes growing first CNTs on a substrate on which a catalyst material layer is formed, and growing second CNTs on surfaces of the first CNTs from a catalyst material on surfaces of the first CNTs. The second CNTs grown on the sidewalls of the first CNTs emit electrons at a low voltage. In addition, the CNT structure exhibits high electron emission current due to the second CNTs being used as electron emission sources, and exhibits uniform field emission due to the uniform diameter of the first CNTs. A display device incorporates the above-described structure.

    Abstract translation: 碳纳米管(CNT)结构包括衬底和多个CNT,每个CNT包括垂直于衬底生长的多个第一CNT和在第一CNT的侧壁上生长的多个第二CNT。 制造CNT的方法包括在其上形成有催化剂材料层的基板上生长第一CNT,以及在第一CNT的表面上从催化剂材料在第一CNT的表面上生长第二CNT。 在第一CNT的侧壁上生长的第二CNT在低电压下发射电子。 此外,由于第二CNT用作电子发射源,CNT结构表现出高的电子发射电流,并且由于第一CNT的直径均匀,表现出均匀的场发射。 显示装置结合了上述结构。

    HEATING MEMBER USING CARBON NANOTUBE AND FIXING UNIT USING THE HEATING MEMBER
    68.
    发明申请
    HEATING MEMBER USING CARBON NANOTUBE AND FIXING UNIT USING THE HEATING MEMBER 有权
    加热会员使用碳纳米管和固定单元使用加热会员

    公开(公告)号:US20100209154A1

    公开(公告)日:2010-08-19

    申请号:US12557783

    申请日:2009-09-11

    CPC classification number: G03G15/2053

    Abstract: A fixing unit includes a heating member which includes a core member, and a heating layer. The heating layer is disposed on an outer circumference of the core member. The heating layer includes an elastic material, and carbon nanotube doped with metal and distributed in the elastic material as a conductive filler of the heating layer. A press member faces the heating member to form a fixing nip. The fixing unit applies heat and pressure to toner on a medium passing through the fixing nip, to fix the toner on the medium.

    Abstract translation: 定影单元包括包括芯构件的加热构件和加热层。 加热层设置在芯构件的外周。 加热层包括弹性材料和掺杂有金属并分布在弹性材料中作为加热层的导电填料的碳纳米管。 加压构件面对加热构件以形成定影夹持部。 定影单元对通过定影辊隙的介质上的调色剂施加热量和压力,以将调色剂固定在介质上。

Patent Agency Ranking