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    • 5. 发明申请
    • POLY(ORGANOPHOSPHAZENE) CONTAINING DEGRADATION CONTROLLABLE IONIC GROUP, PREPARATION METHOD THEREOF AND USE THEREOF
    • 含有降解可控离子基团的聚(有机磷),其制备方法及其用途
    • US20140031289A1
    • 2014-01-30
    • US13569737
    • 2012-08-08
    • Soo-Chang SONGYoung-Min Kim
    • Soo-Chang SONGYoung-Min Kim
    • C08G79/02A61K47/34
    • C08G79/025A61K47/34
    • The present invention relates to a thermosensitive phosphazene-based polymer having a degradation controllable ionic group, a use thereof, and a use thereof as a material for delivering bioactive substances. The phosphazene-based polymer according to the present invention has the thermosensitivity of showing the temperature-dependent sol-gel phase transition. Thus, it forms a gel phase at the body temperature when it is injected into the body to make it easy to control the release of bioactive substances such as drugs, and has the functional groups capable of making chemical bonds such as ionic bond, covalent bond, coordinate bond, etc. with drugs and thus is excellent in bearing the drugs. Since it can control the degradation rate depending on the kind of ionic group, it can selectively control the release time depending on the characteristics of drugs. Furthermore, it has an excellent biocompatibility and thus is very useful as a material for delivery of bioactive substances such as drugs, etc.
    • 本发明涉及具有降解可控离子基团的热敏磷腈基聚合物,其用途及其用作输送生物活性物质的材料的用途。 根据本发明的磷腈基聚合物具有显示温度依赖性溶胶 - 凝胶相变的热敏性。 因此,当其注入体内时,其在体温下形成凝胶相,以便容易地控制生物活性物质如药物的释放,并且具有能够进行化学键的官能团,例如离子键,共价键 ,配合药物等,因此具有优异的耐药性。 由于可以根据离子基团的种类控制降解速率,因此可根据药物的特性选择性地控制释放时间。 此外,它具有优异的生物相容性,因此作为用于递送生物活性物质如药物等的材料是非常有用的。
    • 8. 发明授权
    • Display substrate, method of manufacturing the same and display panel having the same
    • 显示基板,其制造方法以及具有该基板的显示面板
    • US08241936B2
    • 2012-08-14
    • US13230111
    • 2011-09-12
    • Je-Hun LeeYoung-Min KimBo-Sung KimJun-Young LeeSung-Wook Kang
    • Je-Hun LeeYoung-Min KimBo-Sung KimJun-Young LeeSung-Wook Kang
    • H01L20/00
    • H01L51/102G02F1/13439H01L27/283H01L51/0541H01L51/0545
    • An improved display substrate is provided to reduce surface defects on insulating layers of organic thin film transistors. Related methods of manufacture are also provided. In one example, a display substrate includes a base, a plurality of data lines, a plurality of gate lines, a pixel defined by the data lines and the gate lines, an organic thin film transistor, and a pixel electrode. The data lines are on the base and are oriented in a first direction. The gate lines are oriented in a second direction that crosses the first direction. The organic thin film transistor includes a source electrode electrically connected to one of the data lines, a gate electrode electrically connected to one of the gate lines, and an organic semiconductor layer. The pixel electrode is disposed in the pixel and electrically connected to the organic thin film transistor. The pixel electrode comprises a transparent oxynitride.
    • 提供改进的显示基板以减少有机薄膜晶体管的绝缘层上的表面缺陷。 还提供了相关的制造方法。 在一个示例中,显示基板包括基底,多条数据线,多条栅极线,由数据线和栅极线限定的像素,有机薄膜晶体管和像素电极。 数据线在基座上并且朝向第一方向。 栅极线在与第一方向交叉的第二方向上取向。 有机薄膜晶体管包括电连接到数据线之一的源电极,电连接到栅极线之一的栅电极和有机半导体层。 像素电极设置在像素中并电连接到有机薄膜晶体管。 像素电极包括透明氧氮化物。
    • 9. 发明授权
    • Liquid crystal display and method for manufacturing the same
    • 液晶显示器及其制造方法
    • US08168977B2
    • 2012-05-01
    • US12622078
    • 2009-11-19
    • Tae-Young ChoiBo-Sung KimYoung-Min Kim
    • Tae-Young ChoiBo-Sung KimYoung-Min Kim
    • H01L29/04
    • H01L27/1225G02F1/136209G02F1/13624G02F2001/136222H01L27/1248H01L27/1288
    • The present invention provides a thin film transistor having high performance in a liquid crystal display, and a manufacturing method of a liquid crystal display according to an exemplary embodiment of the present invention that includes: forming a gate line including a gate electrode on a substrate; forming a gate insulating layer on the gate line; forming a data line including a source electrode and a drain electrode facing the source electrode on the gate insulating layer; forming a partition defining a pixel area and having an opening region exposing the gate insulating layer on the gate electrode, the source electrode and the drain electrode on the gate line, and the data line and the drain electrode; forming a semiconductor in the opening region; forming a color filter in the pixel area defined by the partition; and forming a pixel electrode connected to the drain electrode on the color filter.
    • 本发明提供一种在液晶显示器中具有高性能的薄膜晶体管,以及根据本发明的示例性实施例的液晶显示器的制造方法,包括:在基板上形成包括栅电极的栅极线; 在栅极线上形成栅极绝缘层; 在所述栅极绝缘层上形成包括与所述源电极相对的源电极和漏电极的数据线; 形成限定像素区域并具有使栅极电极上的栅极绝缘层,栅极线上的源极电极和漏极电极以及数据线和漏极电极露出的开口区域; 在开口区域形成半导体; 在由分区限定的像素区域中形成滤色器; 以及在滤色器上形成连接到漏电极的像素电极。
    • 10. 发明授权
    • Composite binder containing carbon nanotube and lithium secondary battery employing the same
    • 含有碳纳米管的复合粘合剂和使用其的锂二次电池
    • US08053113B2
    • 2011-11-08
    • US11515081
    • 2006-09-01
    • Eun-Suok OhYoung-Min KimJuhyun KimMinjung RyuSeungRim Yang
    • Eun-Suok OhYoung-Min KimJuhyun KimMinjung RyuSeungRim Yang
    • H01M4/13
    • H01M4/621H01M4/133H01M4/134H01M4/587H01M10/052
    • Provided is a nanocomposite binder for an electrode mix of a secondary battery, comprising carbon nanotubes in a photo- and/or thermo-polymerizable material or polymer, or a mixture thereof; and a lithium secondary battery comprising the same.The carbon nanotube-containing composite binder according to the present invention and a lithium secondary battery comprising the same employs a novel nanocomposite, prepared by combination of carbon nanotubes with a conventional binder material, as a binder of an anode. As a result, the present invention provides advantages such as improved conductivity of the anode due to decreased electrical resistance of the binder, and enhanced mechanical properties of the binder and thereby being capable of preventing the separation of an anode active material layer from a current collector due to volume changes occurring upon charge/discharge cycles.
    • 本发明提供一种用于二次电池的电极混合物的纳米复合粘合剂,其包含光 - 和/或热可聚合材料或聚合物中的碳纳米管或其混合物; 和包含该锂二次电池的锂二次电池。 根据本发明的含碳纳米管复合粘合剂和包含该纳米复合材料的锂二次电池使用通过碳纳米管与常规粘合剂材料组合制备的新型纳米复合材料作为阳极的粘合剂。 结果,本发明提供了优点,例如由于粘合剂的电阻降低导致阳极的导电性提高,粘合剂的机械性能的提高,从而能够防止阳极活性物质层与集电体分离 由于充放电循环时发生体积变化。