• 제목/요약/키워드: nanostructured carbon

검색결과 110건 처리시간 0.031초

Nitrogen Incorporation of Nanostructured Amorphous Carbon Thin Films by Aerosol-Assisted Chemical Vapor Deposition

  • Fadzilah, A.N.;Dayana, K.;Rusop, M.
    • Transactions on Electrical and Electronic Materials
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    • 제14권4호
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    • pp.165-171
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    • 2013
  • Nanostructured pure a-C and nitrogen doped a-C: N thin films with small particle size of, ~50 nm were obtained by Aerosol-assisted CVD method from the natural precursor camphor oil. Five samples were prepared for the a-C and a-C: N respectively, with the deposition temperatures ranging from $400^{\circ}C$ to $600^{\circ}C$. At high temperature, the AFM clarifies an even smoother image, due to the increase of the energetic carbon ion bombardment at the surface of the thin film. An ohmic contact was acquired from the current-voltage solar simulator characterization. The higher conductivity of a-C: N, of ${\sim}{\times}10^{-2}Scm^{-1}$ is due to the decrease in defects since the spin density gap decrease with the nitrogen addition. Pure a-C exhibit absorption coefficient, ${\alpha}$ of $10^4cm^{-1}$, whereas for a-C:N, ${\alpha}$ is of $10^5cm^{-1}$. The high ${\sigma}$ value of a-C:N is due to the presence of more graphitic component ($sp^2$ carbon bonding) in the carbon films.

적층구조 촉매층(Al/Fe/Al)을 이용한 탄소나노튜브의 합성에서 최상층 알루미늄 층의 역할 (Role of Aluminum Top-layer on Synthesis of Carbon Nanotubes using Laminated Catalyst(Al/Fe/Al) layer)

  • 송우석;최원철;전철호;류동헌;이승엽;신용숙;박종윤
    • 한국진공학회지
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    • 제16권5호
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    • pp.377-382
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    • 2007
  • 적층구조 촉매층(Al/Fe/Al)을 이용하여 열 화학기상증착(thermal chemical vapor deposition ; TCVD)법을 통해 탄소 나노튜브를(carbon nanotubes ; CNTs)를 합성하였다. Raman spectroscopy, SEM 및 HR-TEM 분석결과, G/D는 22.7이며, 직경이 $1.14\;{\sim}\;1.32\;nm$인 금속성의 단일벽 탄소 나노튜브(single-walled CNTs ; SWCNTs)의 다발(bundle)들이 기판 전체에 network 구조로 형성되어 있는 것을 확인할 수 있었다. 이는 최상층의 Al이 촉매인 Fe의 응집현상(agglomeration)을 막아주는 역할을 하여 작고 균일한 핵 생성 사이트(nucleation site)를 통해 좁은 직경분포를 가진 단일벽 탄소 나노튜브가 합성되었음을 알 수 있다.

The density control of carbon nanotubes using spin-coated nanoparticle and its application to the electron emitter with triode structure

  • Kim, Do-Yoon;Yoo, Ji-Beom;Berdinski, A.S.;Han, In-Taek;Kim, Ha-Jong;Jin, Yong-Wan;Kim, Jong-Min
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2005년도 International Meeting on Information Displayvol.II
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    • pp.1016-1019
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    • 2005
  • We studied the density control of carbon nanotubes (CNTs) which were grown on the iron nanoparticles prepared from iron-acetate [$Fe(II)(CH_3COO)_2$] solution using freeze-dry method. The density of CNTs was controlled for the enhancement of field emission. The patterning process of iron-acetate catalyst-layer for the fabrication of electronic device was simply achieved by using alkaline solution, TMAH (tetramethylammonium hydroxide). We applied this patterning process of catalyst layer to formation of the electron emitter with under gate type triode structure.

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The density control of carbon nanotubes using spin-coated nanoparticle and its application to the electron emitter with triode structure

  • Kim, Do-Yoon;Yoo, Ji-Beom;Berdinski, A.S.;Han, In-Taek;Kim, Ha-Jong;Jin, Yong-Wan;Kim, Jong-Min
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2005년도 International Meeting on Information Displayvol.II
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    • pp.1455-1458
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    • 2005
  • We studied the density control of carbon nanotubes (CNTs) which were grown on the iron nanoparticles prepared from iron-acetate $[Fe(II)(CH_3COO)_2]$ solution using freeze-dry method. The density of CNTs was controlled for the enhancement of field emission. The patterning process of iron-acetate catalyst-layer for the fabrication of electronic device was simply achieved by using alkaline solution, TMAH (tetramethylammonium hydroxide). We applied this patterning process of catalyst layer to formation of the electron emitter with under-gate type triode structure.

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Tissue and Immune Responses on Implanted Nanostructured Biomaterials

  • Khang, Dong-Woo;Kang, Sang-Soo;Nam, Tae-Hyun
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2009년도 춘계학술발표대회
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    • pp.47.1-47.1
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    • 2009
  • Nanostructured biomaterials have increased those potential for utilizing in many medical applications. In this study, benefit of nanotechnology for the response with biological targets will be described in terms of size, effective surface area and surface energy (physical aspect). Also, correlations between physical and biological interactions (greater protein adsorption on nano surface roughness) will be discussed for understanding biocompatibility of nanostructured biomaterials including carbon nanotube composites and nanostructured titanium surfaces. In the application parts, various major tissue cells, such as bone, cartilage, vascular and bladder cell responses will be discussed with suggested nanomaterials. Lastly, immune responses with macrophage (adhesion and several major cytokines) on nanostructured biomaterials will be described for evasive immune response.

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Simple fabrication process and characteristic of a screen-printed triode-CNT field emission arrays for the flat lamp application

  • Jung, Y.J.;Park, J.H.;Jeon, S.Y.;Park, S.J.;Alegaonkar, P.S.;Yoo, J.B.;Park, C.Y.
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2006년도 6th International Meeting on Information Display
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    • pp.1214-1218
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    • 2006
  • We introduced simple fabrication process for field emission devices based on carbon nanotubes (CNTs) emitters. Instead of using the ITO material as a transparent electrode, a metal (Au) with thickness of 5-20nm was used. Moreover, the ITO patterning process was eliminated by depositing metal layer, before the CNT printing process. In addition, the thin metal layer on photo resist (PR) layer was used as UV block. We fabricated the CNT field emission arrays of triode structure with simple process. And I-V characteristics of field emission arrays were measured. The maximum current density of $254{\mu}A/cm2$ was achieved when the gate and the anode voltage was kept 150V and 3000V, respectively. The distance between anode and cathode was kept constant.

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Carbon Nitrides 나노구조체를 이용한 CO2 포집 연구의 최신동향 (A Review on Nanostructured Carbon Nitrides for CO2 Capture)

  • 하성진;이동기;김문희;박대환
    • 세라미스트
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    • 제22권3호
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    • pp.316-327
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    • 2019
  • Carbon nitride has drawn broad interdisciplinary attention in diverse fields such as catalyst, energy storage, gas adsorption, biomedical sensing and even imaging. Intensive studies on carbon dioxide (CO2) capture using carbon nitride materials with various nanostructures have been reported since it is needed to actively remove CO2 from the atmosphere against climate change. This is mainly due to its tunable structural features, excellent physicochemical properties, and basic surface functionalities based on the presence of a large number of -NH or -NH2 groups so that the nanostructured carbon nitrides are considered as suitable materials for CO2 capture for future utilization as well. In this review, we summarize and highlight the recent progress in synthesis strategies of carbon nitride nanomaterials. Their superior CO2 adsorption capabilities are also discussed with the structural and textural features. An outlook on possible further advances in carbon nitride is also included.

Synthesis and Properties of Carbon Nanotube Paste with Different Inorganic Binders for Field Emission Display

  • Park, Jae-Hong;Moon, Jin-San;Nam, Joong-Woo;Park, Jong-Hwan;Berdinsky, A.S.;Yoo, Ji-Beom;Lee, C.G.;Park, Chong-Yun
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2004년도 Asia Display / IMID 04
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    • pp.468-470
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    • 2004
  • CNT pastes with different inorganic binder such as glass frit and spin on glass (SOG) were synthesized by using multi-walled nanotube (MWNT) grown by CVD. The uniformity of cathode layer after firing was enhanced and the emission current density at an applied field of 7.95V/${\mu}m$ increased from 133${\mu}A$/$cm^2$ to 265${\mu}A$/$cm^2$ when inorganic binder changed from glass frit to SOG. The emission properties of CNT pastes with SOG were stable and uniform although firing was carried out at relatively high temperature of 450$^{\circ}C$ under air. It is concluded that SOG is more suitable inorganic binder than glass frit for field emission application.

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