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    • 3. 发明授权
    • Fabrication method for quantum dot sensitized solar cell using supercritical fluid or subcritical fluid and quantum dot sensitized solar cell prepared thereby
    • 使用由此制备的超临界流体或亚临界流体和量子点敏化太阳能电池的量子点敏化太阳能电池的制造方法
    • US08703526B2
    • 2014-04-22
    • US12969246
    • 2010-12-15
    • Jaehoon KimByoung Koun MinJae-Duck KimJong Min ParkWonho Jang
    • Jaehoon KimByoung Koun MinJae-Duck KimJong Min ParkWonho Jang
    • H01L31/0224H01L31/0352H01L31/18
    • H01G9/2031Y02E10/542
    • A method of fabricating a transparent electrode for use in a quantum dot sensitized solar cell, and a quantum dot sensitized solar cell fabricated according to the method are provided. According to the fabrication method, (S1) quantum dot precursor is introduced into a high pressure storage vessel and a quantum dot precursor is dissolved using subcritical fluid or supercritical fluid; (S2) the quantum dot precursor fluid prepared at (S1) is transported to contact with a conductive thin layer substrate comprised of a metal oxide placed in a high pressure reaction vessel, thereby causing the quantum dot precursor to be adsorbed in the metal oxide thin layer; (S3) non-adsorbed quantum dot precursor fluid of (S2) is transported and thus recovered to the high pressure storage vessel together with the subcritical fluid or supercritical fluid; and (S4) the subcritical fluid or supercritical fluid is removed from the high pressure reaction vessel, and the quantum dot precursor, adsorbed at (S2), is reacted with a second element which constitutes the quantum dot or a compound comprising the second element.
    • 提供一种制造用于量子点敏化太阳能电池的透明电极的方法和根据该方法制造的量子点敏化太阳能电池。 根据制造方法,将(S1)量子点前体引入高压储存容器中,并使用亚临界流体或超临界流体溶解量子点前体; (S2)将在(S1)中制备的量子点前体流体输送到与置于高压反应容器中的金属氧化物构成的导电薄层基板接触,由此使量子点前体被吸附在金属氧化物薄膜 层; (S2)的非吸附量子点前体流体(S3)被输送并与亚临界流体或超临界流体一起回收到高压储存容器中; 和(S4)从高压反应容器中除去亚临界流体或超临界流体,并将吸附在(S2)的量子点前体与构成量子点的第二元素或包含第二元素的化合物反应。
    • 7. 发明申请
    • FABRICATION OF CIS OR CIGS THIN FILM FOR SOLAR CELLS USING PASTE OR INK
    • 使用浆料或油墨制造太阳能电池的CIS或CIGS薄膜
    • US20120080091A1
    • 2012-04-05
    • US12986749
    • 2011-01-07
    • Byoung Koun MinSe Jin Park
    • Byoung Koun MinSe Jin Park
    • H01L31/0256
    • C09D11/037C09D11/52C23C18/1204C23C18/1208C23C18/1279C23C18/1295H01L21/02568H01L21/02573H01L21/02614H01L21/02628H01L31/0322Y02E10/541
    • Provided is a method for preparing a copper indium selenide (CIS) or copper indium gallium selenide (CIGS) thin film, including: (1) mixing Cu, In and Ga precursors in a solvent and adding a polymer binder to obtain a paste or ink; (2) coating the obtained CIG precursor paste or ink on a conductive substrate by printing, spin coating or spraying and heat-treating the same under air or oxygen gas atmosphere to remove remaining organic substances and obtain a CIG mixed oxide thin film; (3) heat-treating the obtained CIG mixed oxide thin film under hydrogen or sulfurizing gas atmosphere to obtain a reduced or sulfurized CIG mixed thin film; and (4) heat-treating the obtained reduced or sulfurized CIG mixed thin film under selenium-containing gas atmosphere to obtain a CIGS thin film. Since residual carbon resulting from organic additives, which is the biggest problem in the existing paste coating techniques, can be reduced remarkably, and CIGS crystal size can be improved, the disclosed method can improve efficiency of CIGS solar cells.
    • 提供了一种制备铜铟硒(CIS)或铜铟镓硒(CIGS)薄膜的方法,包括:(1)在溶剂中混合Cu,In和Ga前体,并加入聚合物粘合剂以获得糊或墨 ; (2)通过在空气或氧气气氛下进行印刷,旋涂或喷涂和热处理,将得到的CIG前体浆料或油墨涂布在导电性基材上,除去剩余的有机物质,得到CIG复合氧化物薄膜; (3)在氢气或硫化气体气氛下对获得的CIG混合氧化物薄膜进行热处理,得到还原或硫化的CIG混合薄膜; 和(4)在含硒气体气氛下对获得的还原或硫化CIG混合薄膜进行热处理,得到CIGS薄膜。 由于可以显着地降低作为现有糊料涂布技术中最大问题的有机添加剂产生的残留碳,并且可以提高CIGS晶体尺寸,所公开的方法可以提高CIGS太阳能电池的效率。
    • 9. 发明申请
    • ZINC AIR FUEL CELL WITH ENHANCED CELL PERFORMANCE
    • ZINC空气燃料电池,具有增强的电池性能
    • US20110117456A1
    • 2011-05-19
    • US12837750
    • 2010-07-16
    • Hong Gon KimDong Jin SuhChang Soo KimHyun Joo LeeByoung Koun Min
    • Hong Gon KimDong Jin SuhChang Soo KimHyun Joo LeeByoung Koun Min
    • H01M12/06H01M8/22
    • H01M12/065H01M2/162H01M2/1673H01M4/12H01M4/661H01M4/742H01M4/8652H01M4/8657H01M4/886H01M4/8882H01M4/9016
    • Provided is a zinc air fuel cell with enhanced cell performance, more particularly a zinc air fuel cell which includes a separator-electrode assembly including a perforated metal plate as a cathode current collector, a catalyst-coated carbon paper, a separator, a perforated metal plate as an anode current collector, and a tilted nonconductive support. Furthermore, a metal plate may be placed on the tilted nonconductive support and connected to the anode current collector in the separator-electrode assembly to enlarge the active area of the anode current collector. For the zinc air fuel cell according to the present invention, a manufacturing cost may be reduced by using a mixture of MnO2 and CeO2, which are low-priced metal oxides as catalyst materials for oxygen reduction, and by using a low-priced nylon filter, which has a micro-porous structure and shows high stability in alkaline electrolyte. According to the present invention, the performance of the zinc air fuel cell may be efficiently enhanced by using a separator-electrode assembly structure, which minimize a distance between the anode current collector and the cathode current collector, and by adding a metal plate which plays a role of an additional anode current collector on the tilted nonconductive support so as to increase the overall active area of anode current collector contacting with zinc pellets and to resultantly enhance the ionization of zinc.
    • 提供一种具有增强的电池性能的锌空气燃料电池,更具体地说,一种锌空气燃料电池,其包括:分隔电极组件,其包括作为正极集电器的穿孔金属板,催化剂涂覆的碳纸,隔板,穿孔金属 板作为阳极集电器,以及倾斜的非导电支撑。 此外,可以将金属板放置在倾斜的非导电支撑件上并连接到分离器 - 电极组件中的阳极集电器,以扩大阳极集电器的有效面积。 对于根据本发明的锌空气燃料电池,可以通过使用作为氧还原的催化剂材料的低价金属氧化物的MnO 2和CeO 2的混合物以及通过使用低价尼龙过滤器来降低制造成本 ,其具有微孔结构并且在碱性电解质中显示出高稳定性。 根据本发明,可以通过使用使阳极集电体和阴极集电体之间的距离最小化的分隔电极组件结构,并且通过添加播放的金属板来有效地提高锌空气燃料电池的性能 在倾斜的非导电载体上增加负极集电器的作用,以增加与锌粒子接触的阳极集流体的总有效面积并且最终增强锌的离子化。