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    • 4. 发明申请
    • A METHOD FOR PRODUCING A MULTILAYER STRUCTURE
    • 一种生产多层结构的方法
    • WO2009115317A1
    • 2009-09-24
    • PCT/EP2009/002008
    • 2009-03-18
    • TECHNICAL UNIVERSITY OF DENMARKMENON, MohanLARSEN, Peter, Halvor
    • MENON, MohanLARSEN, Peter, Halvor
    • C25D13/02C25D13/18C25D13/22C25D15/00C23C24/08B22F7/00
    • C25D15/00B01D53/326B01D2257/404B01D2257/702C23C24/08C23C26/00C25D13/02C25D13/18C25D13/22H01L41/273
    • Provided is method for producing a multilayer structure, one method comprising the steps of: providing a suspension comprising first particles and second particles, wherein the first and second particles have opposite charges; introducing an electrode and a counterelectrode into the suspension; applying a current to said electrode and counterelectrode, whereby at least one layer comprising said first particles is deposited on said electrode and at least one layer comprising said second particles is deposited on the counterelectrode; and changing the direction of the current applied to said electrode and said counterelectrode, whereby at least one layer comprising said second particles is deposited on the electrode and at least one layer comprising said first particles is deposited on the counterelectrode. In another embodiment, there is provided a method for producing a multilayer structure, comprising the steps of: providing a suspension comprising first particles and particles having magnetic properties, wherein the first particles are charged; introducing an electrode having electromagnetic properties and a counterelectrode into the suspension; applying current to said electromagnetic electrode and counterelectrode, whereby at least one layer comprising said first particles is deposited on said electrode; and applying an electromagnetic field to said electrode, whereby at least one layer comprising said particles having magnetic properties is deposited on said electrode. The present invention also provides multilayer structures obtainable by said processes.
    • 提供了一种制备多层结构的方法,一种方法包括以下步骤:提供包含第一颗粒和第二颗粒的​​悬浮液,其中第一和第二颗粒具有相反的电荷; 将电极和反电极引入悬浮液中; 向所述电极和反电极施加电流,由此在所述电极上沉积包含所述第一颗粒的至少一层,并且包含所述第二颗粒的​​至少一层沉积在所述反电极上; 并且改变施加到所述电极和所述反电极的电流的方向,由此将包含所述第二颗粒的​​至少一个层沉积在所述电极上,并且包含所述第一颗粒的至少一个层沉积在所述反电极上。 在另一个实施方案中,提供了一种制备多层结构的方法,包括以下步骤:提供包含第一颗粒和具有磁性的颗粒的悬浮液,其中第一颗粒被加料; 将具有电磁特性的电极和反电极引入所述悬浮液中; 向所述电磁电极和对电极施加电流,由此在所述电极上沉积包含所述第一颗粒的至少一层; 以及向所述电极施加电磁场,由此至少一层包含具有磁特性的颗粒沉积在所述电极上。 本发明还提供可通过所述方法获得的多层结构。
    • 8. 发明申请
    • THIN SOLID OXIDE CELL
    • 固体氧化物细胞
    • WO2008061782A3
    • 2008-12-24
    • PCT/EP2007010194
    • 2007-11-23
    • UNIV DENMARK TECH DTULARSEN PETER HALVORLINDEROTH SORENHENDRIKSEN PETER VANG
    • LARSEN PETER HALVORLINDEROTH SORENHENDRIKSEN PETER VANG
    • H01M8/12B01D71/02C01B3/50C01B13/02H01M4/86
    • H01M8/1213B01D67/0041B01D67/0046B01D69/12B01D71/024B01D2323/46B01D2325/08B01D2325/10H01M4/8621H01M4/8652H01M4/8885H01M4/90H01M4/9016H01M4/9033H01M4/9066H01M8/122H01M2300/0094Y02E60/521Y02E60/525
    • The present invention relates to a thin and in principle unsupported solid oxide cell, comprising at least a porous anode layer, an electrolyte layer and a porous cathode layer, wherein the anode layer and the cathode layer comprise an electrolyte material, at least one metal and a catalyst material, and wherein the overall thickness of the thin reversible cell is about 150 µm or less, and to a method for producing same. The present invention also relates to a thin and in principle unsupported solid oxide cell, comprising at least a porous anode layer, an electrolyte layer and a porous cathode layer, wherein the anode layer and the cathode layer comprise an electrolyte material and a catalyst material, wherein the electrolyte material is doper zirconia, and wherein the overall thickness of the thin reversible cell is about 150 µm or less, and to a method for producing same. The present invention further provides a thin separation membrane, comprising at least a porous anode layer, a membrane layer comprising a mixed conducting material and a porous cathode layer, wherein the anode layer and the cathode layer comprise the mixed conducting material and a catalyst material, and wherein the overall thickness of the thin separation membrane is about 150 µm or less.
    • 本发明涉及一种薄而且原则上未支撑的固体氧化物电池,其至少包括多孔阳极层,电解质层和多孔阴极层,其中阳极层和阴极层包括电解质材料,至少一种金属和 催化剂材料,并且其中薄可逆电池的总厚度为约150μm以下,以及其制造方法。 本发明还涉及一种薄而且原则上未支撑的固体氧化物电池,其至少包括多孔阳极层,电解质层和多孔阴极层,其中阳极层和阴极层包括电解质材料和催化剂材料, 其中所述电解质材料是多氧化锆,并且其中所述薄可逆电池的总厚度为约150μm以下,以及其制造方法。 本发明还提供一种薄分离膜,其至少包括多孔阳极层,包含混合导电材料的膜层和多孔阴极层,其中阳极层和阴极层包含混合导电材料和催化剂材料, 并且其中所述薄分离膜的总厚度为约150μm以下。
    • 9. 发明申请
    • REDOX-STABLE ANODE
    • 防氧化阳极
    • WO2006079558A1
    • 2006-08-03
    • PCT/EP2006/000813
    • 2006-01-31
    • RISOE NATIONAL LABORATORYLARSEN, Peter, HalvorCHUNG, CharissaMOGENSEN, Mogens
    • LARSEN, Peter, HalvorCHUNG, CharissaMOGENSEN, Mogens
    • H01M4/86H01M4/88
    • H01M4/8605H01M4/8652H01M4/8885H01M4/9033H01M8/1226H01M8/1253H01M2004/028Y02E60/525Y02P70/56
    • The present invention provides a method of producing a solid oxide fuel cell, comprising the steps of: forming an anode support layer; applying an anode layer on the anode support layer; applying an electrolyte layer on the anode layer; and sintering the obtained structure; wherein the anode support layer and/or the anode layer comprises a composition comprising doped zirconia, doped ceria and/or a metal oxide with an oxygen ion or proton conductivity, NiO and at least one oxide selected from the group consisting of AI 2 O 3 , TiO 2 , Cr 2 O 3 , Sc 2 O 3 , VO x , TaO x , MnO x , NbO x , CaO, Bi 2 O 3 , LnO x , MgCr 2 O 4 , MgTiO 3 , CaAI 2 O 4 , LaAIO 3 , YbCrO 3 , ErCrO 4 , NiTiO 3 , NiCr 2 O 4 , and mixtures thereof. According to the invention, a combination of nickel coarsening prevention due to specific Ni-particle growth inhibitors, and, at the same time, a strengthening of the ceramic structure of the anode support layer and/or the anode layer is achieved.
    • 本发明提供一种固体氧化物燃料电池的制造方法,其特征在于,包括:形成负极支撑层; 在阳极支撑层上施加阳极层; 在阳极层上施加电解质层; 烧结所得结构; 其中所述阳极支撑层和/或所述阳极层包括包含掺杂的氧化锆,掺杂的二氧化铈和/或具有氧离子或质子传导性的金属氧化物的组合物,NiO和选自以下的至少一种氧化物: 2个O 3,2个O 2,2个O 3,3个S 2, O 3,XO,XO,XO,XO,XO,XO, SUB,CaO,Bi 2 O 3,LnO x 2,MgCr 2 O 4,4 3,MgTiO 3,CaAl 2 O 4,LaAlO 3,YbCrO 3,/ 3 ,ErCrO 4,NiTiO 3,NiCr 2 O 4,以及它们的混合物。 根据本发明,可以实现由于特定的Ni-颗粒生长抑制剂而导致的防止镍粗化,同时强化阳极支撑层和/或阳极层的陶瓷结构的组合。