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    • 5. 发明授权
    • Encapsulation method of a polymer or organic light emitting device
    • 聚合物或有机发光装置的封装方法
    • US6150187A
    • 2000-11-21
    • US122755
    • 1998-07-27
    • Tae Hyoung ZyungDo Hoon HwangSang Don Jung
    • Tae Hyoung ZyungDo Hoon HwangSang Don Jung
    • H05B33/04H01L51/52H01L21/00H01L21/44H01L21/48H01L21/50
    • H01L51/5253
    • The present invention relates to the encapsulation for extending the lifetime of a flexible organic or polymer light emitting device and, more particularly, to encapsulation by sealing with multiple polymer films to prevent the penetration of oxygen and moisture into an organic or polymer light emitting device. Due to the encapsulation of polymer light emitting device with the multiple polymer films, exposure to moisture and oxygen are prevented, which are causes of device degradation. When using a plastic substrate whose the thermal endurance is high, simultaneously, it has a thermal endurance effect to the Joule heat during device operation. Accordingly, there can be fabricated an organic or polymer light emitting display whose lifetime is extended through the encapsulation of an organic of polymer light emitting device with multiple polymer films.
    • 本发明涉及用于延长柔性有机或聚合物发光器件的寿命的封装,更具体地说,涉及通过用多个聚合物膜密封以防止氧气和水分渗透到有机或聚合物发光器件中的封装。 由于聚合物发光器件与多个聚合物膜的封装,防止暴露于水分和氧气,这是器件劣化的原因。 当同时使用耐热性高的塑料基板时,在器件操作期间对焦耳热具有热耐久性。 因此,可以制造有机或聚合物发光显示器,其寿命通过具有多个聚合物膜的聚合物发光器件的有机物的封装而延伸。
    • 9. 发明授权
    • Capacitive gas sensor and method of fabricating the same
    • 电容式气体传感器及其制造方法
    • US07816681B2
    • 2010-10-19
    • US12502824
    • 2009-07-14
    • Jaehyun MoonSu Jae LeeJin Ah ParkTae Hyoung Zyung
    • Jaehyun MoonSu Jae LeeJin Ah ParkTae Hyoung Zyung
    • H01L21/28H01L29/22
    • G01N27/227Y10S977/921
    • A capacitive gas sensor and a method of fabricating the same are provided. The capacitive gas sensor includes an insulating substrate, a metal electrode and a micro thin-film heater wire integrally formed on the same plane of the insulating substrate, and an oxide detection layer coated on the metal electrode and the micro thin-film heater wire. The fabrication method includes depositing a metal layer on an insulating substrate, etching the metal layer so that a metal electrode and a micro thin-film heater wire form an interdigital transducer on the same plane, and forming a nano crystal complex oxide thin film or a complex oxide nano fiber coating layer on the metal electrode and the micro thin-film heater wire as a detecting layer. The capacitive gas sensor can be easily fabricated and can have excellent characteristics such as high sensitivity, high selectivity, high stability, and low power consumption.
    • 提供了一种电容式气体传感器及其制造方法。 电容性气体传感器包括绝缘基板,金属电极和整体形成在绝缘基板的同一平面上的微薄膜加热丝,以及涂覆在金属电极和微薄膜加热丝上的氧化物检测层。 该制造方法包括在绝缘基板上沉积金属层,蚀刻金属层,使得金属电极和微薄膜加热丝线在同一平面上形成叉指式换能器,并形成纳米晶体复合氧化物薄膜或 金属电极上的复合氧化物纳米纤维涂层和微薄膜加热丝作为检测层。 电容气体传感器可以容易地制造,并且可以具有优异的特性,例如高灵敏度,高选择性,高稳定性和低功耗。