TRANSPARENT CARBON NANOTUBE ELECTRODE USING CONDUCTIVE DISPERSANT AND PRODUCTION METHOD THEREOF
    42.
    发明申请
    TRANSPARENT CARBON NANOTUBE ELECTRODE USING CONDUCTIVE DISPERSANT AND PRODUCTION METHOD THEREOF 有权
    透明碳纳米管电极,使用导电分散剂及其生产方法

    公开(公告)号:US20120141666A1

    公开(公告)日:2012-06-07

    申请号:US13372881

    申请日:2012-02-14

    Abstract: Disclosed is a transparent carbon nanotube (CNT) electrode using a conductive dispersant. The transparent CNT electrode comprises a transparent substrate and a CNT thin film formed on a surface the transparent substrate wherein the CNT thin film is formed of a CNT composition comprising CNTs and a doped dispersant. Further disclosed is a method for producing the transparent CNT electrode.The transparent CNT electrode exhibits excellent conductive properties, can be produced in an economical and simple manner by a room temperature wet process, and can be applied to flexible displays. The transparent CNT electrode can be used to fabricate a variety of devices, including image sensors, solar cells, liquid crystal displays, organic electroluminescence (EL) displays and touch screen panels, that are required to have both light transmission properties and conductive properties.

    Abstract translation: 公开了使用导电分散剂的透明碳纳米管(CNT)电极。 透明CNT电极包括透明基板和形成在透明基板的表面上的CNT薄膜,其中CNT薄膜由包含CNT和掺杂分散剂的CNT组合物形成。 进一步公开的是制造透明CNT电极的方法。 透明CNT电极具有优异的导电性能,可以通过室温湿法以经济和简单的方式制造,并且可以应用于柔性显示器。 透明CNT电极可用于制造具有透光性和导电性两者所需的各种装置,包括图像传感器,太阳能电池,液晶显示器,有机电致发光(EL)显示器和触摸屏面板。

    TRANSISTOR AND FLAT PANEL DISPLAY INCLUDING THIN FILM TRANSISTOR
    48.
    发明申请
    TRANSISTOR AND FLAT PANEL DISPLAY INCLUDING THIN FILM TRANSISTOR 有权
    晶体管和平板显示器,包括薄膜晶体管

    公开(公告)号:US20110095268A1

    公开(公告)日:2011-04-28

    申请号:US12911316

    申请日:2010-10-25

    CPC classification number: H01L29/78696 H01L29/78684

    Abstract: A transistor includes at least three terminals comprising a gate electrode, a source electrode and a drain electrode, an insulating layer disposed on a substrate, and a semiconductor layer disposed on the substrate, wherein a current which flows between the source electrode and the drain electrode is controlled by application of a voltage to the gate electrode, where the semiconductor layer includes a graphene layer and at least one of a metal atomic layer and a metal ion layer, and where the metal atomic layer or the metal ion layer is interposed between the graphene layer and the insulating layer.

    Abstract translation: 晶体管包括至少三个端子,包括栅电极,源电极和漏电极,设置在基板上的绝缘层和设置在基板上的半导体层,其中在源电极和漏极之间流动的电流 通过向栅电极施加电压来控制,其中半导体层包括石墨烯层和金属原子层和金属离子层中的至少一个,并且其中金属原子层或金属离子层介于 石墨烯层和绝缘层。

    CARBON NANO-TUBE FILM WITH A TRANSFORMED SUBSTRATE STRUCTURE AND A MANUFACTURING METHOD THEREOF
    49.
    发明申请
    CARBON NANO-TUBE FILM WITH A TRANSFORMED SUBSTRATE STRUCTURE AND A MANUFACTURING METHOD THEREOF 有权
    具有改性基板结构的碳纳米管薄膜及其制造方法

    公开(公告)号:US20100316813A1

    公开(公告)日:2010-12-16

    申请号:US12854386

    申请日:2010-08-11

    Abstract: A carbon nanotube (CNT) film having a transformed substrate structure and a manufacturing method thereof. The CNT film includes a transparent substrate, a plurality of three-dimensional (3D) structures formed distant from each other on the transparent substrate, and carbon nanotubes (CNTs) deposited on the transparent substrate where the plurality of 3D structures is not formed. The method includes forming a plurality of 3D structures distant from each other on a transparent substrate, and depositing a CNT solution on the substrate with the plurality of 3D structures formed thereon, wherein the CNT solution is deposited into a portion of the transparent substrate where the 3D structures are not formed. Thus, the deposition mechanism of the CNT solution is controlled to thereby increase the transparency of the CNT film and the electrical conductivity of an electrode including the CNT film.

    Abstract translation: 具有转化基板结构的碳纳米管(CNT)膜及其制造方法。 CNT膜包括透明基板,在透明基板上彼此远离形成的多个三维(3D)结构以及沉积在不形成多个3D结构的透明基板上的碳纳米管(CNT)。 该方法包括在透明基板上形成彼此远离的多个3D结构,并且在其上形成有多个3D结构的基板上沉积CNT溶液,其中将CNT溶液沉积到透明基板的一部分中,其中 没有形成3D结构。 因此,控制CNT溶液的沉积机理,从而提高CNT膜的透明度和包括CNT膜的电极的导电性。

    CARBON NANO-TUBE (CNT) LIGHT EMITTING DEVICE AND METHOD OF MANUFACTURING THE SAME
    50.
    发明申请
    CARBON NANO-TUBE (CNT) LIGHT EMITTING DEVICE AND METHOD OF MANUFACTURING THE SAME 失效
    碳纳米管(CNT)发光装置及其制造方法

    公开(公告)号:US20100252806A1

    公开(公告)日:2010-10-07

    申请号:US11961577

    申请日:2007-12-20

    Abstract: Disclosed are a carbon nano-tube (CNT) light emitting device and a method of manufacturing the same. Specifically, the CNT light emitting device comprises: a CNT thin film formed using a CNT dispersed solution; a n-doping polymer formed on one end of the CNT thin film; a p-doping polymer formed on the other end of the CNT thin film; and a light emitting part between the n-doping polymer and the p-doping polymer. In addition, the method of manufacturing a CNT light emitting device comprises steps of: mixing CNTs with a dispersing agent or dispersing solvent to prepare a CNT dispersed solution; forming a CNT thin film using the CNT dispersed solution; coating a n-doping polymer on one end of the CNT thin film; and coating a p-doping polymer on the other end of the CNT thin film. According to the invention, the n-doping polymer and the p-doping polymer are respectively coated on the CNT having a CNT random network structure to implement a p-n junction, thereby implementing a light emitting device in a simple and low-priced process.

    Abstract translation: 公开了一种碳纳米管(CNT)发光器件及其制造方法。 具体地,CNT发光器件包括:使用CNT分散溶液形成的CNT薄膜; 形成在CNT薄膜一端的n掺杂聚合物; 形成在CNT薄膜的另一端的p掺杂聚合物; 以及n掺杂聚合物和p掺杂聚合物之间的发光部分。 此外,制造CNT发光元件的方法包括以下步骤:将CNT与分散剂或分散溶剂混合以制备CNT分散溶液; 使用CNT分散溶液形成CNT薄膜; 在CNT薄膜的一端涂覆n掺杂聚合物; 并在CNT薄膜的另一端涂覆p掺杂聚合物。 根据本发明,将n掺杂聚合物和p掺杂聚合物分别涂覆在具有CNT随机网络结构的CNT上以实现p-n结,从而以简单且低价格的方法实现发光器件。

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