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Composite and method of manufacturing the same

a technology of composite materials and manufacturing methods, applied in the field of composite materials, can solve problems such as lowering electric conductivity, and achieve the effect of reducing the length of the cross-linked site between the carbon nanotubes and stable chemical structur

Inactive Publication Date: 2007-06-28
FUJIFILM BUSINESS INNOVATION CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

The present invention provides a ceramics composite with enhanced mechanical strength and improved thermal or electric conductivity by using a carbon nanotube structure. The carbon nanotube structure is formed by chemically bonding functional groups to multiple carbon nanotubes and cross-linking them with a cross-linking agent. The cross-linking agent is not self-polymerizable, which ensures a high degree of cross-linking and minimal polymerization. The carbon nanotube structure is a network structure with a satisfactory mechanical strength and high electrical or thermal conductivity. The ceramics composite can be used in various applications such as oxide-based ceramics, nitride-based ceramics, carbide-based ceramics, boride-based ceramics, and silicide-based ceramics.

Problems solved by technology

However, in the mixing process, organopolysiloxane adheres to a carbon nanotube surface, thus merely incidentally prompting contact between the carbon nanotubes surfaces and lowering the electric conductivity owing to a coarse electrical path.

Method used

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  • Composite and method of manufacturing the same
  • Composite and method of manufacturing the same
  • Composite and method of manufacturing the same

Examples

Experimental program
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example

(A) Applying Step

(A-1) Preparation of Cross-Linking Application Liquid (Addition Step)

(a) Addition of Carboxyl Group . . . . Synthesis of Carbon Nanotube Carboxylic Acid

[0171] 30 mg of multi-wall carbon nanotube powder (purity: 90%, average diameter: 30 nm, average length: 3 μm, available from Science Laboratory Inc.) was added to 20 ml of concentrated nitric acid (a 60 mass % aqueous solution, available from KANTO KAGAKU) for reflux at 120° C. for 20 hours to synthesize carbon nanotube carboxylic acid. A reaction scheme of the above is shown in FIG. 1. In FIG. 1, a carbon nanotube (CNT) portion is represented by two parallel lines (same applies for other figures relating to reaction schemes).

[0172] The temperature of the liquid solution was returned to room temperature, and the liquid solution was centrifuged at 5,000 rpm for 15 minutes to separate a supernatant liquid from a precipitate. The recovered precipitate was dispersed in 10 ml of pure water, and the dispersion liqu...

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Abstract

To provide a composite excellent in mechanical strength or in electric conductivity and obtained by combining a carbon nanotube structure and ceramics, and a method of manufacturing the same. The composite is composed of the carbon nanotube structure and the ceramics, and, in the carbon nanotube carbon nanotube structure, functional groups bonded to multiple carbon nanotubes are chemically bonded to mutually cross-link to construct a network structure.

Description

FIELD OF THE INVENTION AND RELATED ART STATEMENT [0001] The present invention relates to a composite formed by combining a carbon nanotube structure and ceramics and a method of manufacturing the same. [0002] Carbon nanotubes (CNTs), with their unique shapes and characteristics, are being considered for various applications. A carbon nanotube has a tubular shape of one-dimensional nature which is obtained by rolling one or more graphene sheets composed of six-membered rings of carbon atoms into a tube. A carbon nanotube that is formed from one graphene sheet is called a single-wall nanotube (SWNT) while a carbon nanotube that is formed from graphene sheet layers is called a multi-wall nanotube (MWNT). Single-wall nanotubes are about 1 nm in diameter whereas multi-wall carbon nanotubes measure several tens nm in diameter, and both are far thinner than their predecessors, which are called carbon fibers. [0003] One of the characteristics of carbon nanotubes resides in that the aspect r...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): H01B1/12B82B1/00C01B31/02C04B35/52C04B35/83H01B1/04
CPCB82Y30/00B82Y40/00C01B31/0253C01B31/0273C01B2202/06H01B1/04Y10S977/748Y10S977/745C01B32/168C01B32/174
Inventor ANAZAWA, KAZUNORIMANABE, CHIKARAHIRAKATA, MASAKIKISHI, KENTAROSHIGEMATSU, TAISHIWATANABE, MIHOWATANABE, HIROYUKIISOZAKI, TAKASHIOOMA, SHIGEKIOKADA, SHINSUKE
Owner FUJIFILM BUSINESS INNOVATION CORP
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