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    • 3. 发明授权
    • Method of more simple separation and collection of carbon nanotubes
    • 更简单地分离和收集碳纳米管的方法
    • US08512668B2
    • 2013-08-20
    • US13068842
    • 2010-06-22
    • Takeshi TanakaHiromichi KatauraHuaping Liu
    • Takeshi TanakaHiromichi KatauraHuaping Liu
    • D01F9/12
    • B82Y40/00B82Y30/00C01B32/168
    • To provide a method for separating metallic CNT and semiconducting CNT by treating a CNT-containing gel or a CNT dispersion as combined with a gel, according to a physical separation means to thereby make semiconducting CNT exist in gel and metallic CNT exist in solution, in which the semiconducting CNT adsorbed by gel are collected in a more simplified manner not dissolving the gel.A CNT-containing gel or a CNT dispersion combined with a gel is treated according to a physical separation means of a centrifugal method, a freezing squeezing method, a diffusion method or a permeation method, to thereby make semiconducting CNT exist in gel and metallic CNT exist in solution so that the metallic CNT and the semiconducting CNT are separated from each other, and further, a suitable eluent is made to react on the gel that adsorbs semiconducting CNT to elute the semiconducting CNT from the gel.
    • 为了提供一种通过与凝胶结合处理含CNT凝胶或CNT分散体来分离金属CNT和半导体CNT的方法,根据物理分离手段,由此使凝胶中存在半导体CNT,溶液中存在金属CNT, 其中以更简化的方式收集由凝胶吸附的半导体CNT而不溶解凝胶。 根据离心法,冷冻挤压法,扩散法或渗透法的物理分离方法处理含有凝胶或含有CNT的凝胶或凝胶分散体,从而使凝胶和金属CNT中存在半导体CNT 存在于溶液中,使得金属CNT和半导体CNT彼此分离,此外,使合适的洗脱液在凝胶上反应,吸附半导体CNT以从凝胶中洗脱半导体CNT。
    • 4. 发明申请
    • Method of more simple separation and collection of carbon nanotubes
    • 更简单地分离和收集碳纳米管的方法
    • US20110280791A1
    • 2011-11-17
    • US13068842
    • 2010-06-22
    • Takeshi TanakaHiromichi KatauraHuaping Liu
    • Takeshi TanakaHiromichi KatauraHuaping Liu
    • D01F9/12B82Y40/00
    • B82Y40/00B82Y30/00C01B32/168
    • To provide a method for separating metallic CNT and semiconducting CNT by treating a CNT-containing gel or a CNT dispersion as combined with a gel, according to a physical separation means to thereby make semiconducting CNT exist in gel and metallic CNT exist in solution, in which the semiconducting CNT adsorbed by gel are collected in a more simplified manner not dissolving the gel.A CNT-containing gel or a CNT dispersion combined with a gel is treated according to a physical separation means of a centrifugal method, a freezing squeezing method, a diffusion method or a permeation method, to thereby make semiconducting CNT exist in gel and metallic CNT exist in solution so that the metallic CNT and the semiconducting CNT are separated from each other, and further, a suitable eluent is made to react on the gel that adsorbs semiconducting CNT to elute the semiconducting CNT from the gel.
    • 为了提供一种通过与凝胶结合处理含CNT凝胶或CNT分散体来分离金属CNT和半导体CNT的方法,根据物理分离手段,由此使凝胶中存在半导体CNT,溶液中存在金属CNT, 其中以更简化的方式收集由凝胶吸附的半导体CNT而不溶解凝胶。 根据离心法,冷冻挤压法,扩散法或渗透法的物理分离方法处理含有凝胶或含有CNT的凝胶或凝胶分散体,从而使凝胶和金属CNT中存在半导体CNT 存在于溶液中,使得金属CNT和半导体CNT彼此分离,此外,使合适的洗脱液在凝胶上反应,吸附半导体CNT以从凝胶中洗脱半导体CNT。
    • 5. 发明申请
    • USING TIME-DIFFERENCE-OF-ARRIVAL TO DETECT A POSITION OF A TARGET TRANSMITTER
    • 使用时间差异来检测目标发射器的位置
    • US20140225780A1
    • 2014-08-14
    • US14174322
    • 2014-02-06
    • Huaping Liu
    • Huaping Liu
    • G01S5/04
    • G01S5/06
    • Multiple time-difference-of-arrival units, each having two or more receiver antennas can be used to determine a location of a target transmitter without synchronizing or connecting together the units. Specifically, a clock on each unit can be used to determine a difference of arrival of radio-frequency signals amongst antennas on the units. Each unit's clock can be asynchronous with the clocks on the other units. Target estimation can therefore be achieved easily with limited wiring and the problems associated with synchronization can be reduced or eliminated. The multiple time-difference-of-arrival units can be used in indoor, outdoor (or a combination thereof) applications.
    • 可以使用多个具有两个或更多个接收机天线的到达时间单元来确定目标发射机的位置,而不需要使单元同步或连接在一起。 具体地,可以使用每个单元上的时钟来确定单元之间的天线之间的射频信号的到达差异。 每个单元的时钟可以与其他单元上的时钟异步。 因此,可以通过有限的布线容易地实现目标估计,并且可以减少或消除与同步相关的问题。 多个时差到达单元可用于室内(或其组合)应用。