CARDO COPOLYBENZIMIDAZOLES, GAS SEPARATION MEMBRANES AND PREPARATION METHOD THEREOF
    2.
    发明申请
    CARDO COPOLYBENZIMIDAZOLES, GAS SEPARATION MEMBRANES AND PREPARATION METHOD THEREOF 有权
    CARDO共聚苯二甲酸酐,气体分离膜及其制备方法

    公开(公告)号:US20140224124A1

    公开(公告)日:2014-08-14

    申请号:US13892548

    申请日:2013-05-13

    Abstract: Provided are cardo copolybenzimidazoles, a gas separation membrane using the same and a method for preparing the same. More particularly, provided are cardo copolybenzimidazoles obtained by introducing cardo groups and aromatic ether groups to a polybenzimidazole backbone, a gas separation membrane having significantly improved oxygen permeability by using the same, and a method for preparing the same. The cardo copolybenzimidazoles have improved solubility as compared to the polybenzimidazole polymers according to the related art, show excellent mechanical properties while maintaining thermal stability so as to be formed into a film shape, and provide a gas separation membrane having significantly improved gas permeability, particularly, oxygen permeability.

    Abstract translation: 提供的是共聚苯并咪唑类,其使用的气体分离膜及其制备方法。 更具体地说,提供了通过将聚苯并咪唑主链导体基团和芳族醚基团引入的共聚苯并咪唑,通过使用它们具有显着改善的氧渗透性的气体分离膜及其制备方法。 与根据现有技术的聚苯并咪唑聚合物相比,卡诺共聚苯并咪唑具有改善的溶解性,显示优异的机械性能,同时保持热稳定性以形成膜状,并提供具有显着改善的气体渗透性的气体分离膜, 透氧性。

    PROCESS OF PREPARING CARBON-SUPPORTED METAL CATALYST BY PHYSICAL DEPOSITION
    3.
    发明申请
    PROCESS OF PREPARING CARBON-SUPPORTED METAL CATALYST BY PHYSICAL DEPOSITION 有权
    通过物理沉积制备碳负载金属催化剂的方法

    公开(公告)号:US20140221192A1

    公开(公告)日:2014-08-07

    申请号:US14171906

    申请日:2014-02-04

    CPC classification number: H01M4/9083 H01M4/9041 H01M4/921 H01M4/926 Y02E60/50

    Abstract: The present disclosure relates to a method and an apparatus for preparing nanosized metal or alloy nanoparticles by depositing metal or alloy nanoparticles with superior size uniformity on the surface of a powder as a base material by vacuum deposition and then dissolving or melting the base material using a solvent or heat. The method solves the problems of the existing expensive multi-step synthesis method based on chemical reduction and allows effective synthesis of metal or alloy nanoparticles with very uniform size and metal or alloy catalyst nanoparticles supported on carbon at low cost.

    Abstract translation: 本公开内容涉及一种通过在真空沉积作为基材的粉末表面上沉积具有优异尺寸均匀性的金属或合金纳米颗粒来制备纳米尺寸金属或合金纳米颗粒的方法和装置,然后使用 溶剂或热量。 该方法解决了基于化学还原的现有昂贵的多步合成方法的问题,并且能够有效合成具有非常均匀尺寸的金属或合金纳米颗粒,并以低成本负载在碳上的金属或合金催化剂纳米颗粒。

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