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    • 2. 发明申请
    • METHODS FOR CONTROLLING DENSITY, POROSITY, AND/OR GAP SIZE WITHIN NANOTUBE FABRIC LAYERS AND FILMS
    • 用于控制纳米纤维层和薄膜中密度,孔隙度和/或尺寸的方法
    • US20130052449A1
    • 2013-02-28
    • US13578691
    • 2011-02-14
    • Rahul SenJ. Thomas KocabFeng Gu
    • Rahul SenJ. Thomas KocabFeng Gu
    • H01B1/04B32B5/16B82Y30/00B82Y40/00
    • B82Y30/00C01B32/158C01B2202/02C01B2202/06C01B2202/22C01B2202/34C01B2202/36G11C13/025Y10S977/751Y10S977/752Y10T428/249921
    • A method for controlling density, porosity and/or gap size within a nanotube fabric layer is disclosed. In one aspect, this can be accomplished by controlling the degree of rafting in a nanotube fabric. In one aspect, the method includes adjusting the concentration of individual nanotube elements dispersed in a nanotube application solution. A high concentration of individual nanotube elements will tend to promote rafting in a nanotube fabric layer formed using such a nanotube application solution, whereas a lower concentration will tend to discourage rafting. In another aspect, the method includes adjusting the concentration of ionic particles dispersed in a nanotube application solution. A low concentration of ionic particles will tend to promote rafting in a nanotube fabric layer formed using such a nanotube application solution, whereas a higher concentration will tend to discourage rafting. In other aspects, both concentration parameters are adjusted.
    • 公开了一种用于控制纳米管织物层内的密度,孔隙率和/或间隙尺寸的方法。 在一个方面,这可以通过控制纳米管织物中漂流的程度来实现。 一方面,该方法包括调节分散在纳米管应用溶液中的单个纳米管元件的浓度。 单个纳米管元件的高浓度倾向于促进在使用这种纳米管施用溶液形成的纳米管织物层中的漂流,而较低浓度将倾向于阻止漂流。 另一方面,该方法包括调节分散在纳米管应用溶液中的离子颗粒的浓度。 低浓度的离子颗粒倾向于促进在使用这种纳米管施用溶液形成的纳米管织物层中的漂流,而较高的浓度将倾向于阻止漂流。 在其他方面,调整浓度参数。