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    • 6. 发明申请
    • METHOD OF PREPARING HIGH DENSITY METAL OXIDE LAYERS AND THE LAYERS PRODUCED THEREBY
    • 制备高密度金属氧化物层的方法及其生产的层
    • US20090148714A1
    • 2009-06-11
    • US12206210
    • 2008-09-08
    • Andrew B. BocarslyBrent KirbyDavid Dowling
    • Andrew B. BocarslyBrent KirbyDavid Dowling
    • C01D1/02B32B15/04
    • C23F13/08
    • A method for the production of an oxide layer, involving oxidizing a metal surface, wherein the metal surface is electrically connected to an electronic control unit (ECU); wherein the metal oxide layer produced has an amount of metal present in said metal oxide layer that is higher than that present in a metal oxide layer produced by oxidizing the metal surface in the absence of the ECU; or oxidizing an oxidizable non-metallic conductive surface, wherein the oxidizable non-metallic conductive surface is electrically connected to an electronic control unit (ECU); wherein the oxide layer produced is denser than that produced by oxidizing the oxidizable non-metallic conductive surface in the absence of the ECU; and the metal oxide or oxide layers produced thereby.
    • 一种用于生产氧化物层的方法,包括氧化金属表面,其中金属表面电连接到电子控制单元(ECU); 其中所生成的金属氧化物层的金属含量高于在不存在ECU的情况下通过氧化金属表面而生成的金属氧化物层中存在的金属; 或氧化可氧化的非金属导电表面,其中所述可氧化的非金属导电表面电连接到电子控制单元(ECU); 其中所生成的氧化物层比在不存在ECU的情况下氧化可氧化的非金属导电表面产生的氧化物层更致密; 和由此制备的金属氧化物或氧化物层。
    • 8. 发明申请
    • ADVANCED AROMATIC AMINE HETEROCYCLIC CATALYSTS FOR CARBON DIOXIDE REDUCTION
    • 用于二氧化碳还原的高级芳族胺杂环化合物催化剂
    • US20120175269A1
    • 2012-07-12
    • US13340733
    • 2011-12-30
    • Andrew B. BocarslyAmanda MorrisPrasad LakkarajuRaymond Dominey
    • Andrew B. BocarslyAmanda MorrisPrasad LakkarajuRaymond Dominey
    • C25B1/00C25B9/00
    • C25B1/003C25B3/04
    • Methods and systems for electrochemical reduction of carbon dioxide using advanced aromatic amine heterocyclic catalysts are disclosed. A method for electrochemical reduction of carbon dioxide may include, but is not limited to, steps (A) to (C). Step (A) may introduce water to a first compartment of an electrochemical cell. Said first compartment may include an anode. Step (B) may introduce carbon dioxide to a second compartment of said electrochemical cell. Said second compartment may include a solution of an electrolyte, a catalyst, and a cathode. Said catalyst may include at least two aromatic amine heterocycles that are at least one of (a) fused or (b) configured to become electronically conjugated upon one electron reduction. Step (C) may apply an electrical potential between said anode and said cathode in said electrochemical cell sufficient for said cathode to reduce said carbon dioxide to a product mixture.
    • 公开了使用先进的芳族胺杂环催化剂电化学还原二氧化碳的方法和系统。 二氧化碳的电化学还原的方法可以包括但不限于步骤(A)至(C)。 步骤(A)可以将水引入电化学电池的第一隔室。 所述第一隔室可包括阳极。 步骤(B)可以将二氧化碳引入所述电化学电池的第二隔室。 所述第二隔室可以包括电解质,催化剂和阴极的溶液。 所述催化剂可以包括至少两个芳族胺杂环,其至少一个(a)稠合或(b)配置成在一次电子还原时电子共轭。 步骤(C)可以在所述电化学电池中的所述阳极和所述阴极之间施加足以使所述阴极将所述二氧化碳还原成产物混合物的电势。