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    • 91. 发明申请
    • Method of Producing a Molecular Structure
    • 生产分子结构的方法
    • US20150064095A1
    • 2015-03-05
    • US14388222
    • 2013-04-05
    • Lancaster University Business Enterprise Limited
    • Colin LambertLaith AlgharagholySteven BaileyThomas Pope
    • C01B31/04C01B31/02
    • C01B32/15B82Y30/00B82Y40/00C01B32/05C01B32/152C01B32/176C01B32/194
    • A method of producing a molecular structure comprises determining a desired shape of the molecular structure; providing a multi-layer structure, the multilayer structure having at least first and second adjacent generally planar molecular layers, the first and second generally planar molecular layers each consisting of an array of covalently bonded atoms; arranging the multi-layer structure in a desired orientation relative to a cutter; using the cutter to break bonds within the first generally planar molecular layer to produce a first edge of a desired configuration corresponding to the desired shape of the molecular structure; and using the cutter to break bonds within the second generally planar molecular layer to produce a second edge of a desired configuration corresponding to the desired shape of the molecular structure; and allowing the first edge of the first generally planar molecular layer and the second edge of the second generally planar molecular layer to relax so that the first edge of the first generally planar molecular layer and the second edge of the second generally planar molecular layer covalently bond to one another.
    • 制备分子结构的方法包括确定分子结构的所需形状; 提供多层结构,所述多层结构具有至少第一和第二相邻的大致平面的分子层,所述第一和第二大致平面的分子层各自由共价键合原子的阵列组成; 将所述多层结构相对于切割器布置成期望的取向; 使用所述切割器来破坏所述第一通常平面的分子层内的结合,以产生对应于所述分子结构的所需形状的期望构型的第一边缘; 并且使用所述切割器来破坏所述第二基本平面分子层内的结合,以产生对应于所述分子结构的所需形状的期望构型的第二边缘; 并且允许第一大致平面分子层的第一边缘和第二大体平面分子层的第二边缘松弛,使得第一大体上平面的分子层的第一边缘和第二基本平面的分子层的第二边缘共价键合 彼此。
    • 100. 发明授权
    • Method for mechanically chopping carbon nanotube and nanoscale fibrous materials
    • 机械切割碳纳米管和纳米纤维材料的方法
    • US07641829B2
    • 2010-01-05
    • US11185317
    • 2005-07-20
    • Zhiyong LiangZhi WangBen WangChun Zhang
    • Zhiyong LiangZhi WangBen WangChun Zhang
    • B28B11/12
    • B82Y30/00B82Y40/00C01B32/174C01B32/176C01B2202/02C01B2202/28Y10S264/913Y10S264/916Y10S977/842
    • Methods are provided for mechanically chopping nanotubes and other nanoscale fibrous materials. The method includes forming a macroscale article which include the nanoscale fibers, and then mechanically cutting the macroscale article into a finely divided form. In one embodiment, these steps are repeated. The nanoscale fibers may be carbon nanotubes, which optionally are aligned in the macroscale article. The macroscale article may be in the form of or include one or more buckypapers. In one embodiment, the macroscale article further includes a solid matrix material in which the nanoscale fibers are contained or dispersed. The forming step can include making a suspension of nanoscale fibers dispersed in a liquid medium and then solidifying the liquid medium to form the macroscale article. After the mechanical cutting step, the medium can be dissolved or melted to enable separation of the chopped nanoscale fibers from the medium.
    • 提供了用于机械切割纳米管和其他纳米级纤维材料的方法。 该方法包括形成包括纳米尺度纤维的宏观制品,然后将宏观物品机械地切割成细碎的形式。 在一个实施例中,重复这些步骤。 纳米尺度纤维可以是碳纳米管,其可选地在宏观尺寸制品中对准。 宏观文章可以是或包括一个或多个克隆纸的形式。 在一个实施例中,宏观制品还包括其中纳米级纤维被包含或分散的固体基质材料。 形成步骤可以包括将纳米尺度纤维的悬浮液分散在液体介质中,然后固化液体介质以形成大尺度物品。 在机械切割步骤之后,可以将介质溶解或熔化,以使切碎的纳米级纤维与介质分离。