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    • 2. 发明授权
    • Method of making zinc oxide nanowires
    • 制备氧化锌纳米线的方法
    • US08723407B2
    • 2014-05-13
    • US12370499
    • 2009-02-12
    • James E. HutchisonDaisuke Ito
    • James E. HutchisonDaisuke Ito
    • H01J19/06H01K1/04
    • H01J1/304H01J2201/30469
    • Methods for selectively depositing nanostructures on a support layer include contacting the support layer with functionalized catalyst particles. The functionalized catalyst particles can form a self-assembled monolayer of catalyst particles on the support layer and the functionalized catalyst particles can be used to catalyze nanostructure growth. In one embodiment of the disclosed method, zinc oxide nanowires are grown on a patterned substrate using functionalized gold nanoparticles. Patterned arrays of self-assembled nanostructures and nanoscale devices using such nanostructure arrays are also described.
    • 将纳米结构选择性沉积在支撑层上的方法包括使支撑层与官能化的催化剂颗粒接触。 官能化催化剂颗粒可以在载体层上形成催化剂颗粒的自组装单层,并且官能化的催化剂颗粒可用于催化纳米结构生长。 在所公开的方法的一个实施方案中,使用官能化的金纳米颗粒在图案化的衬底上生长氧化锌纳米线。 还描述了使用这种纳米结构阵列的自组装纳米结构和纳米级器件的图案阵列。
    • 6. 发明授权
    • Diamond electron emission cathode, electron emission source, electron microscope, and electron beam exposure device
    • 金刚石电子发射阴极,电子发射源,电子显微镜和电子束曝光装置
    • US07737614B2
    • 2010-06-15
    • US11665459
    • 2006-06-19
    • Akihiko UedaYoshiyuki YamamotoYoshiki NishibayashiTakahiro Imai
    • Akihiko UedaYoshiyuki YamamotoYoshiki NishibayashiTakahiro Imai
    • H01J1/02H01J19/06
    • H01J1/15H01J1/14H01J37/06H01J2237/06308H01J2237/06316
    • An object is to provide an electron emission cathode and an electron emission source using diamond and having a high brightness and a small energy width that are suitable for electron ray and electron beam devices and vacuum tubes, in particular, electron microscopes and electron beam exposure devices, and also electronic devices using such cathode and source. A diamond electron emission cathode according to the present invention has single crystal diamond in at least part thereof, the diamond electron emission cathode having a columnar shape formed by a sharpened acute section and a heating section, being provided with one electron emitting portion in the sharpened acute section, and being constituted of at least two types of semiconductors that differ in electric properties. One of the types constituting the semiconductors is an n-type semiconductor containing n-type impurities at 2×1015 cm3 or higher, the other one is a p-type semiconductor containing p-type impurities at 2×1015 cm−3 or higher, the p-type semiconductor and the n-type semiconductor are joined together, the heating section is energized parallel to the junction surface and directly heated by a pair of current introducing terminals, and some of the introduced electrons are emitted from the electron emitting portion.
    • 目的是提供使用金刚石的电子发射阴极和电子发射源,其具有适用于电子射线和电子束装置和真空管,特别是电子显微镜和电子束曝光装置的高亮度和小的能量宽度 ,以及使用这种阴极和源的电子设备。 根据本发明的金刚石电子发射阴极在其至少一部分中具有单晶金刚石,金刚石电子发射阴极具有由锐化尖锐部分形成的柱状形状和加热部分,在锐化部分中设置有一个电子发射部分 并且由电性能不同的至少两种类型的半导体构成。 构成半导体的种类之一是含有2×1015cm3以上的n型杂质的n型半导体,另一种是含有2×10 15 cm -3以上的p型杂质的p型半导体, p型半导体和n型半导体结合在一起,加热部分被平行于接合面激励并被一对电流引入端直接加热,并且一些引入的电子从电子发射部分发射。
    • 8. 发明申请
    • Fabrication method for carbon fiber, carbon fiber electron source, and field emission display device
    • 碳纤维,碳纤维电子源和场致发射显示装置的制造方法
    • US20090051267A1
    • 2009-02-26
    • US12222973
    • 2008-08-21
    • Tomohiro Kato
    • Tomohiro Kato
    • H01J1/62H01J19/06H01J9/04
    • H01J9/025H01J2329/0428H01J2329/0431H01J2329/0455
    • A fabrication method for carbon fiber which can prevent abnormal growth from electrode wiring metal, and can be formed a carbon nano-tube with high-density and uniform, by a simple and cheap method and the fabrication method includes process steps: forming a cathode electrode on a substrate; forming a first insulating film on the cathode electrode; forming a gate electrode on the first insulating film; forming a hole which reaches to the cathode electrode surface into the first insulating film; forming a catalyst crystallite nucleus on a bottom of the hole; oxidized forming a second insulating film on the gate electrode surface; and forming a carbon nano-tube on the catalyst crystallite nucleus; a carbon fiber electron source of high-output current density; and FED device which has high-intensity and large capacity with high current density, are provided.
    • 一种碳纤维的制造方法,其可以防止电极配线金属的异常生长,并且可以通过简单且便宜的方法形成具有高密度和均匀的碳纳米管,并且制造方法包括以下步骤:形成阴极电极 在基材上 在阴极电极上形成第一绝缘膜; 在所述第一绝缘膜上形成栅电极; 形成到所述阴极电极表面的第一绝缘膜的孔; 在孔的底部形成催化剂微晶核; 氧化,在栅电极表面形成第二绝缘膜; 并在催化剂微晶核上形成碳纳米管; 高输出电流密度的碳纤维电子源; 并且提供具有高电流密度的高强度和大容量的FED装置。