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    • 3. 发明申请
    • Diffusion media with microporous layer
    • 扩散介质与微孔层
    • US20060046926A1
    • 2006-03-02
    • US10925853
    • 2004-08-25
    • Chunxin JiJeanette O'HaraMark Mathias
    • Chunxin JiJeanette O'HaraMark Mathias
    • H01M4/88B05D5/12H01M4/96H01M4/94
    • H01M4/8657H01M4/0471H01M4/8605H01M4/8817H01M8/0234
    • Specially prepared gas diffusion media improve the performance of PEM fuel cells. The media are made by first dipping an electrically conductive porous material such as carbon fiber paper into a suspension of hydrophobic polymer and drying the paper to create a desired deposition pattern of hydrophobic polymer on the substrate. Then a paste containing a fluorocarbon polymer and carbon particles is applied to a desired side of the substrate, and thereafter the paste and hydrophobic polymer are sintered together at high temperature on the paper. In particular, nonionic surfactants remain on the carbon fiber paper after the initial hydrophobic polymer is applied to the electrically conductive porous material. When the paste is coated on the dried paper, the paste is in contact with a hydrophilic surface.
    • 专门制备的气体扩散介质提高了PEM燃料电池的性能。 介质通过首先将诸如碳纤维纸的导电多孔材料浸渍到疏水性聚合物的悬浮液中并干燥纸以在基材上产生所需的疏水性聚合物沉积图案来制备。 然后将含有氟碳聚合物和碳颗粒的糊剂涂覆到基材的期望侧,然后将该糊状物和疏水性聚合物在高温下烧结在纸上。 特别地,在将初始疏水性聚合物施加到导电多孔材料之后,非离子表面活性剂残留在碳纤维纸上。 当糊料涂布在干燥的纸上时,糊料与亲水性表面接触。
    • 5. 发明授权
    • Electrode containing nanostructured thin catalytic layers and method of making
    • 含有纳米结构薄催化层的电极及其制备方法
    • US08802329B2
    • 2014-08-12
    • US12465913
    • 2009-05-14
    • Chunxin JiMatthew Dioguardi
    • Chunxin JiMatthew Dioguardi
    • H01M4/02H01M4/36H01M4/62H01M8/00
    • H01M4/881H01M4/8807H01M4/8814H01M4/8828H01M8/1004H01M2008/1095Y02P70/56
    • A method of transferring a nanostructured thin catalytic layer from its carrying substrate to a porous transfer substrate and further processing and restructuring the nanostructured thin catalytic layer on the porous transfer substrate is provided. The method includes transferring the nanostructured catalytic layer from its carrying substrate to a transfer substrate. The nanostructured catalytic layer then is processed and reconstructed, including removing the residual materials and adding additional components or layers to the nanostructured catalytic layer, on the transfer substrate. Methods of fabricating catalyst coated membranes with the reconstructed electrode including the nanostructured thin catalytic layer, reconstructed electrode decals, and catalyst coated proton exchange membranes are also described.
    • 提供将纳米结构的薄催化剂层从其承载基底转移到多孔转移基底并进一步处理和重组多孔转移基底上的纳米结构的薄催化层的方法。 该方法包括将纳米结构催化剂层从其承载基底转移到转移基底。 然后对纳米结构催化剂层进行处理和重建,包括在转移基板上除去残留的材料并向纳米结构的催化剂层添加额外的组分或层。 还描述了制备具有包括纳米结构薄催化层,重建电极贴花和催化剂涂覆的质子交换膜的重建电极的催化剂涂覆膜的方法。
    • 7. 发明授权
    • Diffusion media with hydrophobic and hydrophilic properties
    • 具疏水性和亲水性的扩散介质
    • US08241818B2
    • 2012-08-14
    • US10913860
    • 2004-08-06
    • Chunxin Ji
    • Chunxin Ji
    • H01M4/02
    • H01M8/0234H01M8/0239H01M8/0245H01M8/04164H01M8/04291H01M2008/1095
    • A diffusion medium for use in a PEM fuel cell contains hydrophobic and hydrophilic areas for improved water management. A hydrophobic polymer such as a fluororesin is deposited on the paper to define the hydrophobic areas, and an electroconductive polymer such as polyaniline or polypyrrole is deposited on the papers defining the hydrophilic areas. In various embodiments, a matrix of hydrophobic and hydrophilic areas on the carbon fiber based diffusion media is created by electropolymerization of a hydrophilic polymer onto a diffusion medium which has been previously coated with a hydrophobic polymer such as a fluorocarbon polymer. When an aqueous solution containing monomers for electropolymerization is contacted with a fluorocarbon coated diffusion medium, the hydrophilic polymer will be preferentially deposited on areas of the carbon fiber based diffusion medium that are not covered by the fluorocarbons.
    • 用于PEM燃料电池的扩散介质包含用于改善水管理的疏水和亲水区域。 疏水性聚合物如氟树脂沉积在纸上以限定疏水区域,导电聚合物如聚苯胺或聚吡咯沉积在限定亲水区域的纸上。 在各种实施方案中,基于碳纤维的扩散介质上的疏水和亲水区域的基质通过将亲水性聚合物电聚合到预先用疏水性聚合物如氟碳聚合物涂覆的扩散介质上而产生。 当含有用于电聚合的单体的水溶液与涂有碳氟化合物的扩散介质接触时,亲水性聚合物将优先沉积在未被碳氟化合物覆盖的碳纤维基扩散介质的区域上。
    • 10. 发明申请
    • Gas Diffusion Layer for Fuel Cell
    • 燃料电池气体扩散层
    • US20090148726A1
    • 2009-06-11
    • US11952491
    • 2007-12-07
    • Chunxin JiJeanette E. Owejan
    • Chunxin JiJeanette E. Owejan
    • H01M8/02B05D1/00
    • H01M8/0234H01M8/0239H01M8/0241
    • A gas diffusion layer for a fuel cell is described. The gas diffusion layer includes a carbon fiber mat having a substantially open structure. Bloomed fibrillated acrylic pulp is added into a microporous layer ink. Alternatively, the bloomed fibrillated acrylic pulp can first be disposed on the carbon fiber mat, with the microporous layer ink added thereafter. When the microporous layer ink/bloomed fibrillated acrylic pulp mixture is coated on the carbon fiber mat, the ink penetrates through the open substrate, and is locked into place by the bloomed acrylic pulp fibers. This allows for a buildup of microporous layer ink on top of the substrate for added thickness when the bloomed fibrillated acrylic pulp sits on top of the mat.
    • 对燃料电池用气体扩散层进行说明。 气体扩散层包括具有基本上开放结构的碳纤维垫。 将膨胀的原纤化丙烯酸纸浆加入到微孔层油墨中。 或者,将开花的原纤化丙烯酸纸浆首先设置在碳纤维垫上,然后再加入微孔层油墨。 当微孔层油墨/开花的原纤化丙烯酸浆纸混合物涂覆在碳纤维垫上时,油墨渗透通过开放的基材,并被开花的丙烯酸纸浆纤维锁定就位。 这使得当开花的原纤化丙烯酸浆料位于垫的顶部时,可以在基材的顶部上积累微孔层油墨以增加厚度。