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    • 3. 发明授权
    • Fabrication of nanoporous membrane
    • 纳米孔膜的制备
    • US09353461B2
    • 2016-05-31
    • US14116403
    • 2012-05-10
    • Pitfee JaoYong-Kyu YoonGloria Jung-a Kim
    • Pitfee JaoYong-Kyu YoonGloria Jung-a Kim
    • B29C65/74B01D67/00D01D5/00B01D71/44D04H1/728D01F9/08
    • D01D5/0076B01D67/0032B01D71/44B01D2323/39B29C65/7451B29C65/7461D01D5/0069D01F9/08D04H1/728Y10T156/1062
    • Various methods and systems are provided for fabrication of nanoporous membranes. In one embodiment, among others, a system includes electrode pairs including substantially parallel electrodes, a controllable power supply to control the electrical potential of each of the electrode pairs, and a syringe to eject an electrically charged solution from a needle to form a nanofiber. The orientation of the nanofiber in a nanofiber layer is determined by the electrical potentials of the electrode pairs. In another embodiment, a method includes providing a nanoporous membrane including nanofiber layers between a transferor and a mainmold of a stamp-through-mold (STM) where adjacent nanofiber layers are approximately aligned in different directions. A patterned membrane is sheared from the nanoporous membrane using the transferor and the mainmold of the STM and transferred to a substrate.
    • 提供了用于制造纳米多孔膜的各种方法和系统。 在一个实施例中,系统包括电极对,其包括基本上平行的电极,用于控制每个电极对的电位的可控电源,以及用于从针头喷射带电溶液以形成纳米纤维的注射器。 纳米纤维层中纳米纤维的取向取决于电极对的电位。 在另一个实施方案中,一种方法包括提供一纳米多孔膜,该纳米多孔膜包括在相邻的纳米纤维层在不同方向上大致对齐的转印模和模印模(STM)的主模之间的纳米纤维层。 使用转移器和STM的主模,从纳米多孔膜剪切图案化的膜并转移到基底。
    • 4. 发明授权
    • Method of manufacturing a track membrane
    • 轨道膜的制造方法
    • US08980148B2
    • 2015-03-17
    • US13442799
    • 2012-04-09
    • Oleg FigovskyElena GotlibDmitry PashinAlexander Leykin
    • Oleg FigovskyElena GotlibDmitry PashinAlexander Leykin
    • B28B1/48B01D67/00B01D71/26B01D71/36
    • B01D67/0032B01D71/26B01D71/36B01D2323/44
    • Method of manufacturing track membranes by penetration of working substances into and through the membrane matrix of polymer material is disclosed. The matrix is placed into holder that is inserted into one end of a tubular shell, the other end of which contains a cartridge with an explosive material and a working substance in the form of a supersaturated solution of a water-soluble salt. When the explosive material is detonated, the particles of the water-soluble salt interact with the matrix in the form of a high-speed jet with the velocity of particles in the range of 3800 to 4200 m/sec. As a result of penetrating of the particles into and through the material of the matrix, a plurality of holes is formed in the matrix. The track membranes are produced by slicing the membrane matrix after removal of the residue of the particles by washing the pierced membrane with water.
    • 公开了通过将工作物质穿透聚合物材料的膜基质并通过聚合物材料的膜基质制造轨道膜的方法。 将基质放置在插入管状壳体的一端的保持器中,其另一端包含具有爆炸性材料的筒和作为水溶性盐过饱和溶液形式的工作物质。 当爆炸性材料被引爆时,水溶性盐的颗粒以高速射流的形式与基体相互作用,颗粒速度在3800至4200m / sec的范围内。 由于颗粒穿过基体的材料并穿过基体的材料,在基体中形成多个孔。 轨道膜通过在用水洗涤穿孔的膜去除颗粒残余物之后切片膜基质来制备。