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    • 3. 发明授权
    • Spatial localization of dispersed single walled carbon nanotubes into useful structures
    • 分散的单壁碳纳米管的空间定位成有用的结构
    • US07731929B2
    • 2010-06-08
    • US10943018
    • 2004-09-17
    • Mark S. F. Clarke
    • Mark S. F. Clarke
    • D01F9/12
    • B82Y30/00D01F11/14Y10S977/745Y10S977/845Y10T428/2918
    • Methods of aligning single walled carbon nanotube structures into selected orientations for a variety of different applications are achieved by initially dispersing the nanotube structures in aqueous solutions utilizing a suitable dispersal agent. The dispersal agent coats each individual nanotube structure in solution. The dispersal agent may be substituted with a suitable functional group that reacts with a corresponding binding site. Dispersed nanotube structures coated with substituted dispersal agents are exposed to a selected array of binding sites such that the nanotubes align with the binding sites due to the binding of the substituted functional groups with such binding sites. Alternatively, crystalline nanotube material is formed upon deposition of dispersed nanotube structures within solution into channels disposed on the surface of the substrate. Combining dispersal agent chemical modification techniques with deposition of the nanotubes into substrate channels is also utilized to produce useful structures.
    • 通过使用合适的分散剂将纳米管结构初步分散在水溶液中来实现将单壁碳纳米管结构对准用于各种不同应用的选定取向的方法。 分散剂在溶液中涂覆每个单独的纳米管结构。 分散剂可以用与相应结合位点反应的合适官能团取代。 涂覆有取代的分散剂的分散的纳米管结构暴露于所选择的结合位点阵列,使得由于取代的官能团与这种结合位点的结合,纳米管与结合位点对准。 或者,在分散的纳米管结构在溶液中沉积到设置在基底表面上的通道中之后形成结晶纳米管材料。 将分散剂化学修饰技术与纳米管沉积到基底通道中相结合也被用于产生有用的结构。
    • 6. 发明授权
    • Spatial localization of dispersed single walled carbon nanotubes into useful structures
    • 分散的单壁碳纳米管的空间定位成有用的结构
    • US06896864B2
    • 2005-05-24
    • US09983830
    • 2001-10-26
    • Mark S. F. Clarke
    • Mark S. F. Clarke
    • B82B3/00C01B31/02D01F11/14D01F9/12
    • B82Y30/00D01F11/14Y10S977/745Y10S977/845Y10T428/2918
    • Methods of aligning single walled carbon nanotube structures into selected orientations for a variety of different applications are achieved by initially dispersing the nanotube structures in aqueous solutions utilizing a suitable dispersal agent. The dispersal agent coats each individual nanotube structure in solution. The dispersal agent may be substituted with a suitable functional group that reacts with a corresponding binding site. Dispersed nanotube structures coated with substituted dispersal agents are exposed to a selected array of binding sites such that the nanotubes align with the binding sites due to the binding of the substituted functional groups with such binding sites. Alternatively, crystalline nanotube material is formed upon deposition of dispersed nanotube structures within solution into channels disposed on the surface of the substrate. Combining dispersal agent chemical modification techniques with deposition of the nanotubes into substrate channels is also utilized to produce useful structures.
    • 通过使用合适的分散剂将纳米管结构初步分散在水溶液中来实现将单壁碳纳米管结构对准用于各种不同应用的选定取向的方法。 分散剂在溶液中涂覆每个单独的纳米管结构。 分散剂可以用与相应结合位点反应的合适的官能团代替。 涂覆有取代的分散剂的分散的纳米管结构暴露于所选择的结合位点阵列,使得由于取代的官能团与这种结合位点的结合,纳米管与结合位点对准。 或者,在分散的纳米管结构在溶液中沉积到设置在基底表面上的通道中之后形成结晶纳米管材料。 将分散剂化学修饰技术与纳米管沉积到基底通道中相结合也被用于产生有用的结构。