• Title/Summary/Keyword: 탄소복합체

Search Result 260, Processing Time 0.021 seconds

Electrochemical Behavior of Si/Cu/Graphite Composite Anode for Lithium Secondary Battery (리튬이차전지용 Si/Cu/Graphite 복합체 음극의 전기화학적 거동)

  • Kim, Hyung-Sun;Chung, Kyung-Yoon;Cho, Won-Il;Cho, Byung-Won
    • Journal of the Korean Electrochemical Society
    • /
    • v.12 no.2
    • /
    • pp.162-166
    • /
    • 2009
  • The carbon-coated Si/Cu powders were synthesized by mechanical ball-milling and hydrocarbon gas decomposition methods at high temperature. The carbon-coated Si/Cu powder was used as anode for lithium secondary battery and its electrochemical behavior was investigated. In addition, the carbon-coated Si/Cu/graphite composite anode material was prepared using natural graphite powder and their electrochemical characteristics were compared with natural graphite anode. The specific capacity of carbon-coated Si/Cu anode increased to the initial 10 cycles. The carbon-coated Si/Cu/graphite composite anode exhibited the reversible specific capacity of 450mAh/g and the first cycle efficiency of 81.3% at $0.25mA/cm^2$. The cycling performance of the composite anode was similar to that of pure graphite anode except the reversible specific capacity value.

Synthesis of Multi-Walled Carbon Nanotube/Polystyrene (MWCNT/PS) Composites by Solution Process and Their Thermal Behavior (용액공정을 이용한 다중벽 탄소 나노튜브/폴리스티렌(MWCNT/PS) 복합체 합성 및 열적 거동)

  • Teng, Dayong;Shin, Young Hwan;Kwon, Younghwan
    • Applied Chemistry for Engineering
    • /
    • v.19 no.4
    • /
    • pp.421-426
    • /
    • 2008
  • Multi-walled carbon nanotube/polystyrene (MWCNT/PS) composites with various MWCNT contents were prepared by using a solution process with an aid of surfactant. Particularly, PS's with 3 different molecular weights (${\bar{M}}_n$ = 101500 g/mole for PS-1, ${\bar{M}}_n$ = 89900 g/mole for PS-2, and ${\bar{M}}_n$ = 85000 g/mole for PS-3) were used in this study. Thermal behavior of these composites was examined by using an oscillator rheometer at $210^{\circ}C$ and $180^{\circ}C$, of above and below the critical flow temperature ($T_{cf}{\sim}195^{\circ}C$) of PS matrix, respectively. The storage and loss modulus, and the complex viscosity of these composites increased with increasing MWCNT content at both temperatures. Largest increases in the frequency-dependent moduli and complex viscosity were observed between 2 wt% and 5 wt% of MWCNTs at $210^{\circ}C$ and $180^{\circ}C$. Only the composite at $210^{\circ}C$ showed the rheological phase transition from a viscous-dominant to an elastic-dominant behavior of the composites at a certain MWCNT content. The MWCNT content at the rheological phase transition of MWCNT/PS composites generally increased with decreasing molecular weight of PS, and was measured to be 3.5 wt% for MWCNT/PS-1, 3.2 wt% for MWCNT/PS-2, and 3.0 wt% for MWCNT/PS-3 composites.

Photo-catalytic Activity of CNT-TiO2 Nano Complex Prepared from Titanium Oxysulfate and Carbon Nanotube by Hydrosis (황산티타늄과 탄소나노튜브로부터 가수분해로 제조된 CNT-TiO2 나노복합체의 광촉매활성)

  • Kim, Sang Jin;Jung, Min-Jung;Lee, Young-Seak
    • Applied Chemistry for Engineering
    • /
    • v.21 no.1
    • /
    • pp.58-62
    • /
    • 2010
  • CNT-$TiO_{2}$ nano complexes were prepared from $TiOSO_4$ and multi-walled carbon nanotube (MWCNT) by hydrolysis. The CNTs were dispersed uniformly with anatase $TiO_{2}$ in the prepared $TiO_{2}$-CNT complexes. The increasing MWCNT ratio leads to increased crystalline carbon and O/Ti ratio. The decomposition degree of methylene blue was experienced according to UV radiation time for study adsorption and photocatalytic activity. The samples having high MWCNT ratio show high adsorption and photodegradation. The high specific surface area, functional group having oxygen, low band gap energy, high electric conductivity, high volume to surface ratio, uniform structure and properties of MWCNT assist photocatalytic activity of CNT-$TiO_{2}$ complex.

Ultrahigh Molecular Weight Polyethylene Hybrid Films with Functionalized-MWNT: Thermomechanical Properties, Morphology, Gas Permeability, and Optical Transparency (기능화된 탄소나노튜브를 이용한 초고분자량 폴리에틸렌 복합체 필름: 열적 기계적 성질, 모폴로지, 전기적 성질 및 기체 투과도)

  • Ko, Jeong-Ho;Kim, Jeong-Cheol;Chang, Jin-Hae
    • Polymer(Korea)
    • /
    • v.33 no.2
    • /
    • pp.97-103
    • /
    • 2009
  • Ultra-high molecular weight polyethylene (UHMWPE)/functionalized-MWNT hybrid films were prepared by the solution intercalation method, using 4-cumylphenol-MWNT (CP-MWNT) as the functionalized-MWNT. The variation of the thermomechanical properties, morphology, gas permeability, and optical transparency of the hybrid films with CP-MWNT content in the range of 0$\sim$2.00 wt% were examined. The newly synthesized UHMWPE/functionalized-MWNT hybrid films were characterized by using differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), scanning electron microscopy (SEM), and a universal tensile machine (UTM). It was found that the addition of only a small amount of functionalized-MWNT was sufficient to improve the thermomechanical properties of the UHMWPE hybrid films, with maximum enhancement being observed in the CP-MWNT loading in the range 0.50 to 1.00 wt%. The maximum enhancement in the oxygen gas barrier was also found at the functionalized MWNT content of 1.00 wt%. In this work, the thermomechanical properties and gas permeability of the hybrid films were found to be better than those of pure UHMWPE.

The Effect of Surface Modification on the Disperisibilities and the Thermal Conductivities of Single-Walled Carbon Nanotube (SWCNT)/Epoxy Composites (표면 기능화된 단일벽 탄소나노튜브/에폭시 복합체의 분산 및 열전도도 특성)

  • Kim, Jiwon;Im, Hyungu;Kim, Jooheon
    • Applied Chemistry for Engineering
    • /
    • v.22 no.3
    • /
    • pp.266-271
    • /
    • 2011
  • Single-walled carbon nanotube (SWCNT)/Epoxy composites were prepared for improving thermal conductivities and dispersion of SWCNTs in the epoxy matrix. Composites obtained different types of SWCNTs which are pristine and functionalized of the SWCNTs by acid and amine treatments. Three types of SWCNTs were dispersed in diglycidyl ether of bisphenol A (DGEBA) and bisphenol F (DGEBF). Enhanced interaction between functional groups on SWCNT and epoxy resins was evidenced by an improvement in the dispersion of the SWCNTs in the epoxy matrix. Thermal conductivity of composites containing acid SWCNTs were found to be much better than those containing pristine and amine treated SWCNTs.

Investigation and research trend and for SiC complex made by Si-vapor diffusion reaction on carbon surface (카본표면에서 Si 증기입자의 확산 반응에 의한 SiC 복합체형성 검토 및 연구동향)

  • Park, Jang-Sik;Hwang, Jeong-Tae
    • Proceedings of the Korean Institute of Surface Engineering Conference
    • /
    • 2014.11a
    • /
    • pp.195-195
    • /
    • 2014
  • 탄화규소(SiC)의 복합체는 고온강도, 내식성, 내마모성, 내화학 특성, 열충격성 및 기계적 특성이 우수하며 제조공정으로 CVD 공정은 많이 연구되어져 있으나 비교적 간단한 구조로 우수한 특성을 얻을 수 Si 증발입자 확산방법에 대한 체계적인 연구가 수행되고 있지 않다. 본 논문에서는 Si 증발입자가 탄소표면에서 확산 반응으로 형성되는 SiC 복합체에 대한 검토 및 연구 개발 동향을 기술한다.

  • PDF

Study on Physical Properties of Waterborne Polyurethane and Carbon Nanofiber Composites (수분산 폴리우레탄 및 탄소나노섬유 복합체의 물리적 특성)

  • Lim, Suk-Dae;Ko, Sang-Choel;Kwac, Lee-Ku
    • Journal of the Korean Society of Manufacturing Process Engineers
    • /
    • v.20 no.11
    • /
    • pp.24-29
    • /
    • 2021
  • In this study, the electrical and mechanical properties of carbon polymer composites, which have been gradually increasing in use in various fields, were investigated, and environment-friendly carbon nanofiber/waterborne polyurethane composites were prepared. Carbon nanofibers (diameter = approximately 100-300 mm) were synthesized using a relatively simple CVD process, obtaining a carbon material for application in ultrathin planar heating films and EMP shielding films in the future. The carbon nanofiber was dispersed, and mixed with water-dispersible polyurethane using a dispersing aid. According to the carbon nanofiber mass ratio, 20%-60% polyurethane/carbon nanofiber composites were manufactured. At a concentration of approximately 20%, the percolation threshold was determined, and at a concentration of approximately 50%, an electrical conductivity greater than 0.1 S/cm was determined. Moreover, a sample having a concentration of up to 60% was evaluated to further understand the mechanical properties. It was observed that as the concentration of the carbon nanofibers increased, the elongation decreased.