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    • 31. 发明授权
    • Mesoporous silica particles and preparation method thereof
    • 介孔二氧化硅颗粒及其制备方法
    • US08057772B2
    • 2011-11-15
    • US11877250
    • 2007-10-23
    • Jong-Yun KimSuk Bon YoonYong-Joon ParkMyung Ho LeeKwang-Yong Jee
    • Jong-Yun KimSuk Bon YoonYong-Joon ParkMyung Ho LeeKwang-Yong Jee
    • C01B33/12C01B33/154C01B33/146
    • C01B37/02
    • Disclosed are mesoporous silica particles and a preparation method thereof, particularly, a method of preparing mesoporous silica particles, including mixing a silica precursor, an alkylamine-based surfactant, and a phosphoric acid-based cosurfactant, thus preparing a mixture solution (a mother liquor); adding or not adding the mixture solution with an acid solution, and conducting stirring, thus providing mesoporous silica particles; and thermally treating the mesoporous silica particles. These mesoporous silica particles are prepared using a phosphoric acid-based cosurfactant for stabilizing the surface of the particles to prevent the aggregation thereof, thereby uniformly distributing the particles. Through a hydrothermal reaction, the mesoporous silica particles have various pore sizes, a large surface area, and a high pore volume, and thus are widely used in catalysts, adsorbents, low dielectrics, and separation and purification processes, and are useful as templates for the preparation of novel porous materials, including porous carbon.
    • 公开了介孔二氧化硅颗粒及其制备方法,特别是制备介孔二氧化硅颗粒的方法,包括混合二氧化硅前体,烷基胺基表面活性剂和磷酸系辅助表面活性剂,从而制备混合溶液(母液 ); 添加或不添加酸溶液混合溶液,进行搅拌,从而提供介孔二氧化硅颗粒; 并对介孔二氧化硅颗粒进行热处理。 这些介孔二氧化硅颗粒使用磷酸系辅助表面活性剂制备,以稳定颗粒的表面以防止其聚集,从而均匀分布颗粒。 通过水热反应,介孔二氧化硅颗粒具有各种孔径,表面积大,孔体积大,因此广泛用于催化剂,吸附剂,低电介质和分离纯化工艺中,可用作模板 新型多孔材料的制备,包括多孔碳。
    • 32. 发明申请
    • ORGANIC LIGHT EMITTING DIODE DISPLAY AND FABRICATING METHOD OF THE SAME
    • 有机发光二极管显示及其制作方法
    • US20110186847A1
    • 2011-08-04
    • US13020687
    • 2011-02-03
    • Jong-Yun KimIl-Jeong LeeDo-Hyun KwonJong-Mo Yeo
    • Jong-Yun KimIl-Jeong LeeDo-Hyun KwonJong-Mo Yeo
    • H01L51/52H01L51/56
    • H01L51/52H01L27/1255H01L29/4908H01L51/56
    • An organic light emitting diode display and a fabricating method of the same are disclosed. In one embodiment, the display includes i) a substrate having a thin film transistor region and a pixel region, ii) a semiconductor layer formed in the thin film transistor region, iii) a gate insulating layer formed on the substrate and the semiconductor layer and vi) a lower electrode formed on the gate insulating layer, wherein the lower electrode is formed in the pixel region. The display further includes i) a gate electrode formed on the gate insulating layer, wherein the gate electrode is formed substantially directly above the semiconductor layer, ii) an interlayer insulating layer formed on the gate insulating layer, the lower electrode and the gate electrode and iii) source and drain electrodes formed on the interlayer insulating layer and electrically connected with the semiconductor layer. Each of the lower electrode and the gate electrode is formed of a first conductive layer and a second conductive layer formed on the first conductive layer. The second conductive layer and the source/drain electrodes are formed of the same material.
    • 公开了一种有机发光二极管显示器及其制造方法。 在一个实施例中,显示器包括i)具有薄膜晶体管区域和像素区域的衬底,ii)形成在薄膜晶体管区域中的半导体层,iii)形成在衬底和半导体层上的栅极绝缘层,以及 vi)形成在栅绝缘层上的下电极,其中下电极形成在像素区域中。 所述显示器还包括i)形成在所述栅极绝缘层上的栅电极,其中所述栅电极基本上直接形成在所述半导体层上方,ii)形成在所述栅绝缘层,所述下电极和所述栅电极上的层间绝缘层,以及 iii)形成在层间绝缘层上并与半导体层电连接的源极和漏极。 下电极和栅电极各自由形成在第一导电层上的第一导电层和第二导电层形成。 第二导电层和源极/漏极由相同的材料形成。
    • 34. 发明申请
    • THIN FILM TRANSISTOR FOR FLAT PANEL DISPLAY AND METHOD OF FABRICATING THE SAME
    • 用于平板显示器的薄膜晶体管及其制造方法
    • US20080246034A1
    • 2008-10-09
    • US11949953
    • 2007-12-04
    • JONG-YUN KIM
    • JONG-YUN KIM
    • H01L29/04H01L21/336
    • H01L29/78645H01L29/42384H01L29/78696
    • A thin film transistor for a flat panel display, and more particularly to a thin film transistor for a flat panel display having a protrusion in a part of a gate electrode includes a substrate on which an insulating layer is deposited, a semiconductor layer, which is a layer having predetermined width and length on the insulating layer, provided with doping regions in a letter U shape and a channel region between the doping regions; a gate insulating layer formed on the semiconductor layer; a gate electrode formed on the gate insulating layer to traverse the doping region; and a protrusion, which is a part of the gate electrode, formed on the gate insulating layer to be opposed to the channel region.
    • 一种用于平板显示器的薄膜晶体管,更具体地说,涉及一种用于在栅电极的一部分具有突起的平板显示器用薄膜晶体管,其中沉积有绝缘层的基板,半导体层 在绝缘层上具有预定宽度和长度的层,设置有字母U形的掺杂区域和掺杂区域之间的沟道区域; 形成在所述半导体层上的栅极绝缘层; 形成在所述栅极绝缘层上以横越所述掺杂区域的栅电极; 以及作为栅电极的一部分的突起,形成在栅极绝缘层上以与沟道区相对。
    • 35. 发明申请
    • ORGANIC LIGHT EMITTING DIODE DISPLAY
    • 有机发光二极管显示
    • US20080246026A1
    • 2008-10-09
    • US11923917
    • 2007-10-25
    • JONG-YUN KIM
    • JONG-YUN KIM
    • H01L51/00H01J63/04H01L33/00
    • H01L27/3265H01L27/1255H01L27/3276
    • An organic light emitting diode display includes a substrate on which a transistor area and a capacitor area are defined, a semiconductor layer formed at the transistor area, and a capacitor having a plurality of electrodes. The plurality of electrodes include a first electrode, a second electrode that is disposed on the first electrode with an insulation layer formed between the first and second electrodes, and a third electrode that is disposed on the second electrode with an insulation layer formed between the second and third electrodes and connected to the first electrode through at least two contact holes.
    • 有机发光二极管显示器包括其上限定了晶体管区域和电容器区域的基板,形成在晶体管区域的半导体层,以及具有多个电极的电容器。 多个电极包括第一电极,第二电极,其设置在第一电极上,具有形成在第一和第二电极之间的绝缘层;以及第三电极,其设置在第二电极上,绝缘层形成在第二电极之间, 和第三电极,并通过至少两个接触孔与第一电极连接。
    • 36. 发明申请
    • Flat panel display device and method of fabricating the same
    • 平板显示装置及其制造方法
    • US20080237585A1
    • 2008-10-02
    • US12079720
    • 2008-03-28
    • Jong-Yun Kim
    • Jong-Yun Kim
    • H01L51/00H01L21/02
    • H01L27/3265H01L27/1255H01L27/3276H01L28/40
    • A flat panel display device including a first region having an organic light emitting diode and a thin film transistor and a second region having a capacitor is disclosed. The capacitor comprises first, second, and third electrodes, where the area of a third capacitor electrode is reduced, thereby ensuring a distance between a first power voltage line and the third capacitor electrode. The total area of the capacitor is compensated by increasing the area of the first capacitor electrode. Thus, the area of the third capacitor electrode is reduced while the total capacitance of the capacitor is maintained, thereby preventing a dark spot caused by a short circuit between the first power voltage line and the third capacitor electrode.
    • 公开了一种平板显示装置,其包括具有有机发光二极管的第一区域和薄膜晶体管以及具有电容器的第二区域。 电容器包括第一,第二和第三电极,其中第三电容器电极的面积减小,从而确保第一电源电压线和第三电容器电极之间的距离。 通过增加第一电容器电极的面积来补偿电容器的总面积。 因此,第三电容器电极的面积减小,同时保持电容器的总电容,从而防止由第一电源电压线和第三电容器电极之间的短路引起的暗斑。
    • 37. 发明授权
    • High resolution organic light emitting display with increased aperture ratio
    • 高分辨率有机发光显示屏,增加孔径比
    • US08445910B2
    • 2013-05-21
    • US13074142
    • 2011-03-29
    • Jong-Yun KimIl-Jeong LeeChoong-Youl Im
    • Jong-Yun KimIl-Jeong LeeChoong-Youl Im
    • H01L29/04
    • H01L27/3276H01L27/1255H01L27/3265
    • In an organic light emitting display, a conductive layer is formed on the bottom surface of a substrate, and the conductive layer is used as a wiring line for supplying a power source, and as the electrode of a capacitor. Therefore, it is possible to easily secure the aperture ratio of a pixel, to easily solve the problem of IR drops by controlling the area or thickness of the conductive layer, and to easily secure the electrostatic capacity of the capacitor. In particular, in the case of a front surface light emitting structure, since a capacitor of a metal/insulating layer/metal (MIM) structure may be formed in a light emitting region, enough aperture ratio and electrostatic capacity may be secured. Therefore, a high resolution organic light emitting display may be easily realized, and enough aperture ratio and electrostatic capacity are secured so as to realize high picture quality.
    • 在有机发光显示器中,在基板的底面上形成导电层,并且将导电层用作用于供电的布线和电容器的电极。 因此,可以容易地确保像素的开口率,通过控制导电层的面积或厚度容易地解决IR滴的问题,并且容易地确保电容器的静电容量。 特别地,在前面发光结构的情况下,由于可以在发光区域形成金属/绝缘层/金属(MIM)结构的电容器,因此可以确保足够的开口率和静电容量。 因此,可以容易地实现高分辨率有机发光显示器,并且确保足够的开口率和静电容量,以便实现高画质。
    • 39. 发明申请
    • Organic Light Emitting Display
    • 有机发光显示
    • US20110291091A1
    • 2011-12-01
    • US13074142
    • 2011-03-29
    • Jong-Yun KimIl-Jeong LeeChoong-Youl Im
    • Jong-Yun KimIl-Jeong LeeChoong-Youl Im
    • H01L51/52
    • H01L27/3276H01L27/1255H01L27/3265
    • In an organic light emitting display, a conductive layer is formed on the bottom surface of a substrate, and the conductive layer is used as a wiring line for supplying a power source, and as the electrode of a capacitor. Therefore, it is possible to easily secure the aperture ratio of a pixel, to easily solve the problem of IR drops by controlling the area or thickness of the conductive layer, and to easily secure the electrostatic capacity of the capacitor. In particular, in the case of a front surface light emitting structure, since a capacitor of a metal/insulating layer/metal (MIM) structure may be formed in a light emitting region, enough aperture ratio and electrostatic capacity may be secured. Therefore, a high resolution organic light emitting display may be easily realized, and enough aperture ratio and electrostatic capacity are secured so as to realize high picture quality.
    • 在有机发光显示器中,在基板的底面上形成导电层,并且将导电层用作用于供电的布线和电容器的电极。 因此,可以容易地确保像素的开口率,通过控制导电层的面积或厚度容易地解决IR滴的问题,并且容易地确保电容器的静电容量。 特别地,在前面发光结构的情况下,由于可以在发光区域形成金属/绝缘层/金属(MIM)结构的电容器,因此可以确保足够的开口率和静电容量。 因此,可以容易地实现高分辨率有机发光显示器,并且确保足够的开口率和静电容量,以便实现高画质。