• 제목/요약/키워드: Nanotube structure

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RF Plasma CVD법에 의해 증착된 카본나노튜브(CNT)의 특성에 대한 기판 온도의 영향 (The Effects of Substrate Temperature on Properties of Carbon Nanotube Films Deposited by RF Plasma CVD)

  • 김동선
    • Korean Chemical Engineering Research
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    • 제46권1호
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    • pp.50-55
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    • 2008
  • RF plasma CVD법을 이용하여 금속 촉매(Fe)가 증착된 $SiO_2$ 기판 위에 $H_2$$C_2H_2$의 혼합가스를 사용하여 증착된 탄소나노튜브(carbon nanotube, CNT)의 특성에 대한 기판의 온도의 영향을 조사하였다. $SiO_2$ 위에 철 촉매는 RF 마그네트론 스퍼터에 의해 만들어졌다. 고 순도의 나노튜브 박막을 얻기 위해서 기판 홀더 위에 접지된 그리드 메쉬 커버를 설치하였다. 증착된 CNT의 표면 미세구조 및 화학적 구조를 SEM, Raman, XPS, 그리고 TEM으로 측정하였다. 증착된 CNT 박막들은 대나무 같은 다중벽 구조를 가지는 탄소 파이버 형태였으며 $55^{\circ}C$에서 보다 $600^{\circ}C$에서 보다 더 치밀한 구조를 보이나 $650^{\circ}C$에서는 밀도가 다소 감소함을 알 수 있었다.

더블 게이트 구조의 탄소 나노 튜브 트랜지스터 바이오 센서의 제작 (Fabrication of the CNT-FET biosensors with a double-gate structure)

  • 조병현;임병현;신장규;최성욱;전향숙
    • 센서학회지
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    • 제18권2호
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    • pp.168-172
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    • 2009
  • In this paper, we present the carbon nanotube field-effect transistor(CNT-FET) with a double-gate structure. A Carbon nanotube film was aligned by the Langmuir-Blodgett technique and $SiN_x$ was deposited to protect from water, oxygen, and other contaminants. We measured the electrical characteristics of the proposed device as the function of the $V_{BG}$, $V_{TG}$. From this result, we can confirm that proposed device might be employed as a biosensor.

띠 모양의 에미터를 가지는 탄소나노튜브 삼전극 전계방출 디스플레이 소자의 시뮬레이션 (Simulation of the Strip Type CNT Field Emitter Triode Structure)

  • 류성룡;이태동;김영길;변창우;박종원;고성우;천현태;고남제
    • 한국전기전자재료학회논문지
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    • 제16권11호
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    • pp.1023-1028
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    • 2003
  • The field emission characteristics are studied by simulation for carbon nanotube triode structures with a strip-shaped emitter and a gate hole aligned with it. Two structures, one with double-edge and the other with single edge are analyzed. They show good emission characteristics. Emissions of electrons are concentrated on the edges of emitter and the emitted current increases as the distance between emitter and gate decreases. For single-edged emitter, the emitted electrons form a narow strip-shaped beam which has a good directionality. These triode structures have advantages in that they can be easily fabricated and aligned for assembly.

Effect of Liquid Surface Treatments on Field Emission Properties of Carbon Nanotube Cathodes

  • Lee, Ji-Eon;An, Young-Je;Shin, Heon-Cheol;Chung, Won-Sub;Cho, Young-Rae
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2007년도 7th International Meeting on Information Display 제7권1호
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    • pp.486-489
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    • 2007
  • Carbon nanotube (CNT) cathodes having a trench structure similar to the structure of the gated triodetype cathode were successfully fabricated by a screenprinting method with multi-walled carbon nanotubes. We observed that a liquid method not only readily removes the organic residues on the CNT films, but also satisfactorily protrudes the CNTs out of the electrode surface. The CNT cathodes prepared by the liquid method showed a turned-on field of $1.4\;V/{\mu}m$. The emission current density of them was about $3.1\;mA/cm^2$ at the electric field of $3\; V/{\mu}m$. The liquid method appears to be a promising surface treatment of CNT cathode for gated triode-type FEDs applications.

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보론 나이트라이드 나노튜브 합성 및 응용기술 (Boron Nit ride Nanotube Synthesis and Applications)

  • 조현진;김준희;김명종
    • 진공이야기
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    • 제3권3호
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    • pp.19-23
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    • 2016
  • BNNTs (Boron nitride nanotubes) is an analogue of CNTs (Carbon Nanotubes) in terms of lattice structure. In BNNTs, a boron atom forms sp2 hybridized bonding with three nitrogen atoms, and so does a nitrogen with three boron atoms in the honeycomb structure. Its innovative properties, such as high thermal conductivity, neutron shielding capability, superb oxidation resistance at $900^{\circ}C$, excellent chemical resistance, and superior mechanical properties are advantageous for a wide range of applications, especially for electric device packages, neutron shielding, protective coating materials, and functional composites. In this paper, boron nitride nanotube synthesis, properties and application are reviewed.

Multiscale modeling approach for thermal buckling analysis of nanocomposite curved structure

  • Mehar, Kulmani;Panda, Subrata Kumar
    • Advances in nano research
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    • 제7권3호
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    • pp.181-190
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    • 2019
  • The thermal buckling temperature values of the graded carbon nanotube reinforced composite shell structure is explored using higher-order mid-plane kinematics and multiscale constituent modeling under two different thermal fields. The critical values of buckling temperature including the effect of in-plane thermal loading are computed numerically by minimizing the final energy expression through a linear isoparametric finite element technique. The governing equation of the multiscale nanocomposite is derived via the variational principle including the geometrical distortion through Green-Lagrange strain. Additionally, the model includes different grading patterns of nanotube through the panel thickness to improve the structural strength. The reliability and accuracy of the developed finite element model are varified by comparison and convergence studies. Finally, the applicability of present developed model was highlight by enlighten several numerical examples for various type shell geometries and design parameters.

1차원 ZnO/$Al_2O_3$ core/shell 구조에서 core 물질 식각방법에 의한 $Al_2O_3$ 나노튜브제작 (Fabrication of $Al_2O_3$ nanotube with etching core material of one-dimensional ZnO/$Al_2O_3$ core/shell structure)

  • 황주원;민병돈;이종수;김상식
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2003년도 하계학술대회 논문집 Vol.4 No.1
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    • pp.37-40
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    • 2003
  • Amorphous $Al_2O_3$ nanotubes have been fabricated by utilizing the ZnO nanowires as template with wet etching method. ZnO nanowires synthesized by thermal evaporation are conformally coated with $Al_2O_3$ by atomic-layer deposition(ALD) method. The $Al_2O_3$-coated ZnO nanowires are of core-shell structure; ZnO core nanowires and $Al_2O_3$ shells. When the $ZnO/Al_2O_3$ core-shell structure is dipped in $H_3PO_4$ solution at $25^{\circ}C$ for a 6 min, the core ZnO materials are completely etched, and only $Al_2O_3$ nanotubes are remained. This nanotube fabrication is technically easier than others, and simply approachable. Transmission electron microscopy shows that the $Al_2O_3$ nanotubes have various thicknesses that can be controlled.

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산화철-탄소나노튜브 나노복합체의 암모니아 가스센서 응용 (Iron Oxide-Carbon Nanotube Composite for NH3 Detection)

  • 이현동;김다혜;고다애;김도진;김효진
    • 한국재료학회지
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    • 제26권4호
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    • pp.187-193
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    • 2016
  • Fabrication of iron oxide/carbon nanotube composite structures for detection of ammonia gas at room temperature is reported. The iron oxide/carbon nanotube composite structures are fabricated by in situ co-arc-discharge method using a graphite source with varying numbers of iron wires inserted. The composite structures reveal higher response signals at room temperature than at high temperatures. As the number of iron wires inserted increased, the volume of carbon nanotubes and iron nanoparticles produced increased. The oxidation condition of the composite structures varied the carbon nanotube/iron oxide ratio in the structure and, consequently, the resistance of the structures and, finally, the ammonia gas sensing performance. The highest sensor performance was realized with $500^{\circ}C/2h$ oxidation heat-treatment condition, in which most of the carbon nanotubes were removed from the composite and iron oxide played the main role of ammonia sensing. The response signal level was 62% at room temperature. We also found that UV irradiation enhances the sensing response with reduced recovery time.