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    • 3. 发明申请
    • Polymer/carbon nanotube composites, methods of use and methods of synthesis thereof
    • 聚合物/碳纳米管复合材料,其使用方法及其合成方法
    • US20080306184A1
    • 2008-12-11
    • US11607772
    • 2006-12-01
    • Julie P. HarmonLaNetra M. Clayton
    • Julie P. HarmonLaNetra M. Clayton
    • G21F1/02
    • C08K7/24B82Y30/00C08J3/215C08J5/005C08K2201/011
    • Polymer/carbon nanotube composites including single-wall or multi-wall carbon nanotubes incorporated into the matrix of a polymer are provided. These composites can be used in environments exposed to galactic cosmic radiation. Accordingly, the composites are useful in deep space applications like space vehicles, space stations, personal equipment as well as applications in the biomedical arts and atom splitting research. The composites can be modified with organic dyes containing at least one phenyl ring and the resulting doped composite is useful as a radiation detector. The preferred polymer is poly(4-methyl-1-pentene). At low nanotube concentrations (i.e., about 0.5 wt % or less), the composites exhibit transparent optical qualities. At higher nanotube concentrations (i.e., about 0.6 wt % or more), the composites are non-transparent.
    • 提供了包含掺入聚合物基质中的单壁或多壁碳纳米管的聚合物/碳纳米管复合材料。 这些复合材料可用于暴露于星系宇宙辐射的环境中。 因此,该复合材料在诸如太空车辆,空间站,个人设备以及生物医学和原子分裂研究中的应用等深空应用中是有用的。 复合材料可以用含有至少一个苯环的有机染料进行改性,所得到的掺杂复合材料可用作辐射探测器。 优选的聚合物是聚(4-甲基-1-戊烯)。 在低纳米管浓度(即约0.5重量%或更少)下,复合材料表现出透明的光学质量。 在较高的纳米管浓度(即约0.6wt%或更高)时,复合材料是不透明的。
    • 4. 发明授权
    • Polymer/carbon nanotube composites, methods of use and methods of synthesis thereof
    • 聚合物/碳纳米管复合材料,其使用方法及其合成方法
    • US07754055B2
    • 2010-07-13
    • US11607772
    • 2006-12-01
    • Julie P. HarmonLaNetra M. Clayton
    • Julie P. HarmonLaNetra M. Clayton
    • B01J19/10B01J19/00C08J3/28C08F2/42
    • C08K7/24B82Y30/00C08J3/215C08J5/005C08K2201/011
    • Polymer/carbon nanotube composites including single-wall or multi-wall carbon nanotubes incorporated into the matrix of a polymer are provided. These composites can be used in environments exposed to galactic cosmic radiation. Accordingly, the composites are useful in deep space applications like space vehicles, space stations, personal equipment as well as applications in the biomedical arts and atom splitting research. The composites can be modified with organic dyes containing at least one phenyl ring and the resulting doped composite is useful as a radiation detector. The preferred polymer is poly(4-methyl-1-pentene). At low nanotube concentrations (i.e., about 0.5 wt % or less), the composites exhibit transparent optical qualities. At higher nanotube concentrations (i.e., about 0.6 wt % or more), the composites are non-transparent.
    • 提供了包含掺入聚合物基质中的单壁或多壁碳纳米管的聚合物/碳纳米管复合材料。 这些复合材料可用于暴露于星系宇宙辐射的环境中。 因此,该复合材料在诸如太空车辆,空间站,个人设备以及生物医学和原子分裂研究中的应用等深空应用中是有用的。 复合材料可以用含有至少一个苯环的有机染料进行改性,所得到的掺杂复合材料可用作辐射探测器。 优选的聚合物是聚(4-甲基-1-戊烯)。 在低纳米管浓度(即约0.5重量%或更少)下,复合材料表现出透明的光学质量。 在较高的纳米管浓度(即约0.6wt%或更高)时,复合材料是不透明的。