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    • 3. 发明申请
    • DYE-SENSITIZED SOLAR CELL MODULE AND THE MANUFACTURING METHOD USING CARBON NANOTUBE ELECTRODE
    • 透明的太阳能电池模块和使用碳纳米管电极的制造方法
    • WO2007064164A1
    • 2007-06-07
    • PCT/KR2006/005135
    • 2006-11-30
    • KOREA ELECTROTECHNOLOGY RESEARCH INSTITUTELEE, Dong YoonLEE, Won JaeSONG, Jae SungKOO, Bo KunKIM, Hyun Ju
    • LEE, Dong YoonLEE, Won JaeSONG, Jae SungKOO, Bo KunKIM, Hyun Ju
    • H01L31/042
    • H01G9/2031B82Y10/00H01G9/2022H01L51/444Y02E10/542Y02P70/521
    • Disclosed herein is a dye-sensitized solar cell module having carbon nanotube electrodes, the solar cell module comprising: upper and lower transparent substrates; conductive transparent electrodes formed on the inner surfaces of the upper and lower transparent substrates; a plurality of porous oxide semiconductor negative electrodes formed on the upper conductive transparent electrode at a constant interval and having a dye adsorbed on the surface thereof; counter electrodes formed on the lower conductive transparent electrode in a thin film form and made of a carbon nanotube layer as a positive electrode portion corresponding to the negative electrodes; grid electrodes formed on the upper and lower conductive transparent electrodes between unit electrodes, each consisting of the negative electrode and the counter electrode corresponding thereto, the grid electrodes serving to collect electrons generated by photosensitization; connecting electrodes formed on the upper and lower conductive transparent electrodes and electrically connected with the grid electrode so as to transfer electrons moved from the grid electrodes to the outside; and electrolyte placed between the negative electrodes and the counter electrodes. Also disclosed is a method for manufacturing the solar cell module. According to the disclosed invention, a high-efficiency, large-area, dye-sensitized solar cell comprising carbon nanotubes is realized by forming a plurality of dye sensitized solar cell units in a module arrangement, and forming grid electrodes and connection electrodes for the collection and movement of electrons. Thus, the disclosed invention has high practical utility.
    • 本发明公开了一种具有碳纳米管电极的染料敏化太阳能电池模块,该太阳能电池组件包括:上下透明基板; 形成在上下透明基板的内表面上的导电透明电极; 多个多孔氧化物半导体负电极,其间隔一定间隔地形成在上导电性透明电极上,并且在其表面吸附有染料; 在下导电性透明电极上形成薄膜状的对置电极,由作为与负极对应的正极部的碳纳米管层构成; 形成在单元电极之间的上下导电透明电极上的栅电极,每个由对应于其的负电极和对电极组成,用于收集通过光敏化产生的电子的栅电极; 连接电极,形成在上下导电透明电极上并与栅电极电连接,以将从电极移动的电子转移到外部; 和放置在负电极和对电极之间的电解质。 还公开了一种太阳能电池模块的制造方法。 根据所公开的发明,通过在模块配置中形成多个染料敏化太阳能电池单元,形成包含碳纳米管的高效率,大面积的染料敏化太阳能电池,并形成用于收集的栅电极和连接电极 和电子的运动。 因此,所公开的发明具有很高的实用性。
    • 4. 发明申请
    • PORTABLE CHARGER HAVING BUILT-IN SECONDARY LITHIUM BATTERY
    • 具有二次锂电池的便携式充电器
    • WO2005034303A1
    • 2005-04-14
    • PCT/KR2003/002290
    • 2003-10-29
    • E SQUARE TECHNOLOGIES CO., LTD.LEE, Won JaeKIM, Woo Young
    • LEE, Won JaeKIM, Woo Young
    • H02J7/04
    • H02J7/35H02J7/0054
    • Disclosed is a portable charger that includes a solar cell panel for converting solar energy into electric energy; a first switch for selecting either the output voltage of the solar cell panel or output voltage of an adapter that converts AC into DC; a protection circuit for, when the voltage outputted from the first switch is charged in the built-in secondary lithium battery, monitoring the charged voltage, to protect the secondary lithium battery from over-current, over-charging and over-discharging; the secondary lithium battery in which charging voltage outputted from the protection circuit is charged; a contact switch for confirming the quantity of voltage charged in the secondary lithium battery; a battery remaining capacity indicator for detecting the quantity of voltage charged in the secondary lithium battery and visually indicating it when the contact switch is operated; a second switch for forming a path of charging voltage when a user device is charged; a booster for boosting the charging voltage supplied through the second switch to rapidly charge the user device; a reverse voltage prevention module for preventing reverse current from flowing while the charging voltage boosted by the booster is charged in the user device; and a charging connector for appropriately providing the charging voltage delivered through the reverse voltage prevention module to various user devices.
    • 公开了一种便携式充电器,其包括用于将太阳能转换成电能的太阳能电池面板; 用于选择太阳能电池板的输出电压或将AC转换成DC的适配器的输出电压的第一开关; 保护电路,当从第一开关输出的电压在内置二次锂电池中充电时,监视充电电压,以保护二次锂电池免受过电流,过充电和过放电; 从保护电路输出的充电电压被充电的二次锂电池; 用于确认在二次锂电池中充电的电压量的接触开关; 电池剩余容量指示器,用于检测在所述二次锂电池中充电的电压量,并且当所述接触开关操作时可视地指示; 用于在用户装置被充电时形成充电电压的路径的第二开关; 用于升高通过第二开关提供的充电电压以对使用者装置进行快速充电的助力器; 反向电压防止模块,用于在所述用户装置中充电所述升压器的充电电压时,防止反向电流流动; 以及用于将通过反向电压防止模块传送的充电电压适当地提供给各种用户装置的充电连接器。
    • 5. 发明申请
    • TRAY HAVING HOLDER FUNCTION
    • 托盘支架功能
    • WO2015174606A1
    • 2015-11-19
    • PCT/KR2015/000286
    • 2015-01-12
    • LEE, Won Jae
    • LEE, Won Jae
    • A47G23/06A47G23/02
    • A47G23/0641
    • A tray for carrying containers with a tapered shape includes a rectangular plate having container insert holes (13) wherein the containers are to be inserted in the container insert holes at a predetermined depth to be held and a tray supporter (12) consisting of the four edges of the rectangular plate being obliquely bent down, wherein the four edges are the legs of the tray when the rectangular plate is set down on the floor. Additional holes (15) for carrying forks or teaspoons with the tray are also provided. If the containers are in the shape of a mug with a handle, knob holding grooves (14) adjacent to the container insert holes ( 1 3) are also provided on the tray.
    • 用于承载具有锥形形状的容器的托盘包括具有容器插入孔(13)的矩形板,其中容器将以预定的保持深度插入到容器插入孔中,并且托架支撑件(12)由四个 矩形板的边缘倾斜地向下弯曲,其中当矩形板被放置在地板上时,四个边缘是托盘的腿部。 还提供了用于与托盘一起携带叉子或茶匙的附加孔(15)。 如果容器是具有把手的杯子的形状,则在托盘上还设置有与容器插入孔(13)相邻的旋钮保持槽(14)。