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    • 4. 发明申请
    • RHEOLOGY-CONTROLLED CONDUCTIVE MATERIALS, METHODS OF PRODUCTION AND USES THEREOF
    • 流变控制导电材料,其生产方法及其用途
    • US20090035707A1
    • 2009-02-05
    • US11832067
    • 2007-08-01
    • Yubing WangJames GuiheenYuan-Ping TingGary L. Martin
    • Yubing WangJames GuiheenYuan-Ping TingGary L. Martin
    • H01B1/00G03C5/00
    • C09D11/30C09D5/24C09D11/52H01B1/22H01B1/24
    • Compositions comprising at least one conductive nanomaterial and at least one rheology control additive are disclosed. These compositions can be used to form a film for uses requiring sufficient conductivity and light transparency. Methods of forming a conductive composition include: providing at least one conductive nanomaterial, providing at least one rheology control additive, and blending the at least one conductive nanomaterial and the at least one rheology control additive together to form the conductive composition. Methods of forming patterned transparent conductive coatings include: providing and applying a layer comprising at least one photosensitive or photoimageable composition to a surface, providing and applying a layer comprising at least one conductive nanomaterial and at least one rheology control additive, exposing and developing the layered material, and treating the layer comprising the at least one rheology control additive in order to remove at least part of the rheology control additive. Coating compositions, films, patterned films and structures containing these films and patterned films are also described.
    • 公开了包含至少一种导电纳米材料和至少一种流变控制添加剂的组合物。 这些组合物可用于形成需要足够导电性和光透明度的用途的膜。 形成导电组合物的方法包括:提供至少一种导电纳米材料,提供至少一种流变学控制添加剂,并将所述至少一种导电纳米材料和所述至少一种流变控制添加剂共混以形成导电组合物。 形成图案化的透明导电涂层的方法包括:提供和施加包含至少一种感光或可光成像组合物的层到表面,提供和施加包含至少一种导电纳米材料和至少一种流变学控制添加剂的层,暴露和显影分层 材料,以及处理包含至少一种流变控制添加剂的层以去除至少部分流变控制添加剂。 还描述了包含这些膜和图案化膜的涂料组合物,膜,图案化膜和结构。
    • 7. 发明授权
    • Virtual block mapping for relocating compressed and/or encrypted file data block blocks
    • 用于重新定位压缩和/或加密的文件数据块块的虚拟块映射
    • US08190850B1
    • 2012-05-29
    • US12571007
    • 2009-10-01
    • William C. DavenportPhilippe ArmangauSairam VeeraswamyJean-Pierre BonoYubing Wang
    • William C. DavenportPhilippe ArmangauSairam VeeraswamyJean-Pierre BonoYubing Wang
    • G06F12/00
    • G06F17/30067G06F11/1471
    • This invention is a system and a method for operating a storage server to provide read or write access to a data in a data network using a new architecture. The method of creating virtual block mapping pointer in response to a request by a client of the storage server to de-duplicate the file system data block or to allow compression of one or more file system data blocks into one or more physical data blocks. Further, the method relocates one or more file system data blocks from one part of the file system address space to another by using one or more virtual block mapping pointers that provides the mapping information for the one or more file system data blocks that are being relocated. The virtual block mapping pointer allows relocating of file system data blocks by same number of metadata operations regardless of number of files sharing the block that are being relocated and the state of those blocks (compressed or not).
    • 本发明是一种用于操作存储服务器以使用新架构提供对数据网络中的数据的读取或写入访问的系统和方法。 响应于存储服务器的客户端的请求来创建虚拟块映射指针的方法,以解除对文件系统数据块的复制或允许将一个或多个文件系统数据块压缩成一个或多个物理数据块。 此外,该方法通过使用一个或多个虚拟块映射指针将一个或多个文件系统数据块从文件系统地址空间的一部分重新定位到另一个,虚拟块映射指针为正被重定位的一个或多个文件系统数据块提供映射信息 。 虚拟块映射指针允许通过相同数量的元数据操作重新定位文件系统数据块,而不管共享被重新定位的块的文件数量以及这些块的状态(是否被压缩)。
    • 9. 发明申请
    • Integrated biofuel cell with aligned nanotube electrodes and method of use thereof
    • 具有排列的纳米管电极的集成生物燃料电池及其使用方法
    • US20080160384A1
    • 2008-07-03
    • US11784085
    • 2007-04-05
    • Zafar IqbalYubing Wang
    • Zafar IqbalYubing Wang
    • H01M8/16C12M1/40H01M4/00C23C16/44B05D3/12
    • H01M4/8803H01M4/8647H01M4/90H01M4/9083H01M8/16Y02E60/527Y02P70/56
    • The present disclosure provides for a method of forming, producing or manufacturing functionalized and soluble nanomaterials, most specifically carbon nanotubes on a substrate, which can be used in the production or manufacture of biofuel cells. One embodiment provides for the coupling of biofuel cells with a nanomaterial, wherein the nanomaterial supports catalytic enzymes. Another embodiment provides for a biofuel cell which uses enzymes immobilized on nanomaterials as electrodes. Another embodiment provides for the construction of a biofuel cell, wherein the application of a microwave process, and/or an electrochemical technique, is used to develop a biofuel cell having nanomaterial/enzyme-based electrodes on a substrate. Another embodiment provides for a composite of nanomaterial grown on a substrate, coupled to tethered or bonded enzymes, which makes it possible to fabricate direct electron transfer electrodes. Another embodiment provides for an implanted device. Another embodiment provides for a biofuel cell that can also function as a biosensor. A method for producing a nanomaterial-substrate system is also disclosed.
    • 本公开内容提供了可用于生产或制造生物燃料电池的功能化和可溶性纳米材料(特别是基底上的碳纳米管)的形成,制造或制造方法。 一个实施方案提供了生物燃料电池与纳米材料的偶联,其中纳米材料支持催化酶。 另一个实施方案提供了使用固定在纳米材料上的酶作为电极的生物燃料电池。 另一个实施方案提供了生物燃料电池的构造,其中使用微波过程和/或电化学技术来开发在衬底上具有纳米材料/酶基电极的生物燃料电池。 另一个实施方案提供了在衬底上生长的纳米材料的复合物,其与拴系或键合的酶偶联,这使得可以制造直接的电子转移电极。 另一实施例提供了植入装置。 另一个实施方案提供了还可以用作生物传感器的生物燃料电池。 还公开了一种用于生产纳米材料 - 衬底系统的方法。