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    • 7. 发明授权
    • Emitting device having electron emitting nanostructures and method of operation
    • 具有电子发射纳米结构的发光装置及其操作方法
    • US07501750B2
    • 2009-03-10
    • US11142053
    • 2005-05-31
    • Bernard F. CollKenneth A. DeanYi Wei
    • Bernard F. CollKenneth A. DeanYi Wei
    • H01J63/04H01J19/06
    • H01J29/481B82Y10/00H01J29/04H01J2201/30469H01J2329/00Y10S977/742
    • An emission device is provided for extracting electrons onto an anode of a visual display. The emission device (10) includes a conductivity limited material (18) positioned between first and second electrodes (14, 16) and having a surface (26). A plurality of catalytic nanoparticles (22) are distributed throughout the conductivity limited material (18), wherein some of the catalytic particles (22) are contiguous to the surface (26). A plurality of nanostructures (24), such as carbon nanotubes, are grown from the catalytic nanoparticles (22) contiguous to the surface (26). A voltage is applied across the conductivity limited material (18) having a plurality of catalytic particles (22) embedded therein, thereby causing the electrons to tunnel between the catalytic particles (22). An anode (28) is spaced apart from the nanostructures (24) for extracting and receiving electrons emitted from the nanostructures (24) when a first potential is applied across the first and second electrodes (14, 16) and a second potential is applied to the anode (28).
    • 提供了用于将电子提取到视觉显示器的阳极上的发射装置。 发射装置(10)包括位于第一和第二电极(14,16)之间并具有表面(26)的导电性限制材料(18)。 多个催化纳米颗粒(22)分布在整个导电性限制材料(18)中,其中一些催化颗粒(22)与表面(26)邻接。 从与表面(26)相邻的催化纳米颗粒(22)生长多个纳米结构(24),例如碳纳米管。 跨越具有嵌入其中的多个催化颗粒(22)的导电性限制材料(18)施加电压,从而使电子在催化剂颗粒(22)之间隧穿。 当跨越第一和第二电极(14,16)施加第一电位时,阳极(28)与纳米结构(24)间隔开,用于提取和接收从纳米结构(24)发射的电子,并且将第二电位施加到 阳极(28)。