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    • 3. 发明专利
    • Method for mass-producing metal-complexed organic nanotube
    • 用于生产金属复合有机纳米管的方法
    • JP2009233825A
    • 2009-10-15
    • JP2008085969
    • 2008-03-28
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • OGISO MAKIASAKAWA MASUMISHIMIZU TOSHIMI
    • B82B3/00
    • D01F6/68
    • PROBLEM TO BE SOLVED: To provide a method for drastically improving production efficiency in a method for producing a metal-complexed organic nanotube composed of a self-assembly of a peptide lipid.
      SOLUTION: The method for producing a metal-complexed organic nanotube comprises a process of suspending the peptide lipid expressed by general formula: RCO(NH-CHR'-CO)
      m OH (wherein, R represents a hydrocarbon group of carbon numbers 6-24, R' represents an amino acid side chain, and m represents an integer of 1-10) or H(NH-CHR'-CO)
      m NHR (wherein, R represents a hydrocarbon group of carbon numbers 7-25, R' represents an amino acid side chain, and m represents an integer of 1-10) in an organic solvent, a process of mixing a metal salt solution into the suspension, a process of generating the metal-complexed organic nanotube by leaving the suspension at rest at room temperature, and a process of collecting the metal-complexed organic nanotube from the suspension and air-drying the nanotubes at room temperature or drying under reduced pressure at room temperature.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供一种在由肽脂质的自组装构成的金属络合的有机纳米管的制造方法中大幅提高生产效率的方法。 解决方案:金属络合的有机纳米管的制造方法包括使由通式RCO(NH-CHR'-CO)表示的肽类脂质悬浮的方法,其中,R 表示碳原子数为6〜24的烃基,R'表示氨基酸侧链,m表示1-10的整数)或H(NH-CHR'-CO) 其中,R表示碳数为7〜25的烃基,R'表示氨基酸侧链,m表示1-10的整数),将金属盐溶液混入悬浮液中的方法, 通过将悬浮液在室温下静置而产生金属络合的有机纳米管的方法,以及从悬浮液中收集金属络合的有机纳米管并在室温下空气干燥纳米管或在室内减压干燥的方法 温度。 版权所有(C)2010,JPO&INPIT
    • 10. 发明专利
    • Method for producing hollow fiber-like organic nanotube in semi-wet system
    • 在半湿润系统中生产中空纤维有机纳米管的方法
    • JP2012127016A
    • 2012-07-05
    • JP2010277974
    • 2010-12-14
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • OGISO MAKIU RYEO-YEONAOYANAGI SUSUMUASAKAWA MASUMISHIMIZU TOSHIMI
    • D01F6/00
    • PROBLEM TO BE SOLVED: To provide a method for producing an organic nanotube by creating a solid-solid configuration change from a plate-like to a nanotube-like shape in a semi-wet system, that is different from a conventional production method utilizing self assembling of organic molecules in a solution system or a solution-solid equilibrium system or a generally known production method utilizing a lipid phase transition temperature.SOLUTION: The hollow fiber-like organic nanotube is obtained by adding an alkali to a dry powder of a peptide lipid represented by the general formula RCO(NH-CHR'-CO)OH (in the formula, R represents a 6-24C hydrocarbon group, R' represents an amino acid side chain, and m represents an integer of 1-10) to wet and then adding an acid, or by adding an alkali to a dry powder of a peptide lipid represented by the general formula HCl H(NH-CHR'-CO)NHR (in the formula, R represents a 7-25C hydrocarbon group, R' represents an amino acid side chain, and m represents an integer of 1-10) to wet in order to create a configuration change in a wet substance.
    • 解决的问题:为了提供一种通过在半湿式系统中产生从板状至纳米管状形状的固相配置变化来制造有机纳米管的方法,这与常规生产不同 在溶液系统或溶液 - 固体平衡系统中利用自组装有机分子的方法或利用脂质相转变温度的通常已知的生产方法。 解决方案:通过向通式RCO(NH-CHR'-CO)表示的肽脂质的干粉中加入碱来获得中空纤维状有机纳米管, / SB> OH(式中,R表示6-24C烃基,R'表示氨基酸侧链,m表示1-10的整数),然后加入酸,或加入碱 与通式为HCl H(NH-CHR'-CO)表示的肽脂质的干粉末(式中,R表示7-25C烃基) ,R'表示氨基酸侧链,m表示1-10的整数),以便产生湿物质中的构型变化。 版权所有(C)2012,JPO&INPIT