• 제목/요약/키워드: CVD-graphene

검색결과 143건 처리시간 0.037초

Carbon nanotubes-properties and applications: a review

  • Ibrahim, Khalid Saeed
    • Carbon letters
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    • 제14권3호
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    • pp.131-144
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    • 2013
  • The carbon nanotube (CNT) represents one of the most unique inventions in the field of nanotechnology. CNTs have been studied closely over the last two decades by many researchers around the world due to their great potential in different fields. CNTs are rolled graphene with $SP^2$ hybridization. The important aspects of CNTs are their light weight, small size with a high aspect ratio, good tensile strength, and good conducting characteristics, which make them useful as fillers in different materials such as polymers, metallic surfaces and ceramics. CNTs also have potential applications in the field of nanotechnology, nanomedicine, transistors, actuators, sensors, membranes, and capacitors. There are various techniques which can be used for the synthesis of CNTs. These include the arc-discharge method, chemical vaporize deposition (CVD), the laser ablation method, and the sol gel method. CNTs can be single-walled, double-walled and multi-walled. CNTs have unique mechanical, electrical and optical properties, all of which have been extensively studied. The present review is focused on the synthesis, functionalization, properties and applications of CNTs. The toxic effect of CNTs is also presented in a summarized form.

Synthesis of Vertically Aligned SiNW/Carbon Core-shell Nanostructures

  • 김준희;김민수;김동환
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.488.2-488.2
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    • 2014
  • Carbon-based materials such as carbon nanotubes and graphene have emerged as promising building blocks in applications for nanoelectronics and energy devices due to electrical property, ease of processability, and relatively inert electrochemistry. In recent years, there has been considerable interest in core-shell nanomaterials, in which inorganic nanowires are surrounded by inorganic or organic layers. Especially, carbon encapsulated semiconductor nanowires have been actively investigated by researchers in lithium ion batteries. We report a method to synthesize silicon nanowire (SiNW) core/carbon shell structures by chemical vapor deposition (CVD), using methane (CH4) as a precursor at growth temperature of $1000{\sim}1100^{\circ}C$. Unlike carbon-based materials synthesized via conventional routes, this method is of advantage of metal-catalyst free growth. We characterized these materials with FE-SEM, FE-TEM, and Raman spectroscopy. This would allow us to use these materials for applications ranging from optoelectronics to energy devices such as solar cells and lithium ion batteries.

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그래핀과 h-BN을 이용한 고성능·유연성 마이크로 히터 (High performance Transparent Flexible and Robust Graphene & h-BN stacked Micro-Heater)

  • 최승;김태호;김상우
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2018년도 춘계학술대회 논문집
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    • pp.123-123
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    • 2018
  • 최근 웨어러블 디바이스에 연구가 집중되면서 투명하고 유연한 마이크로 히터의 필요성이 증가되고 있다. 그럼에도 불구하고, 기존의 사용되는 마이크로 히터들은 딱딱하고 불투명하다. 게다가, 기존의 금속성의 마이크로 히터들의 경우 저항이 너무 작아 웨어러블 디바이스에 사용되는 에너지 하베스터로 구동되기에 효율이 떨어지는 경향이 있다. 이 논문에서 우리는 CVD 방식으로 성장된 그래핀으로 열 발생 라인을 패시베이션 레이어로 h-BN을 이용하여 투명하고 유연한 마이크로 히터를 제작하였다. 제작한 마이크로 히터는 균일한 온도 분포와 200도까지의 온도 상승에 걸리는 시간이 4초 정도로 굉장히 좋은 성능을 보유하고 있다. 또한 소비 전력은 39mW 이하로 효율적이다. 또한 기존의 메탈릭 히터에 비해 저항이 굉장히 높기 때문에 웨어러블 에너지 하베스터로 작동하기 적합하다. 또한 미래의 휴대용/웨어러블 개인 전자기기와 무선 헬스케어 제품, 휴대용 환경 센서에도 적용될 것으로 기대한다.

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N2+H2 ICP 표면처리를 이용한 CVD 그래핀 도핑 연구

  • 이승환;최민섭;임영대;유원종
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2012년도 추계총회 및 학술대회 논문집
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    • pp.181-182
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    • 2012
  • 본 연구에서는 반도체 기술의 핵심으로 알려있는 플라즈마 표면 처리 공정을 이용하여 인위적으로 그래핀과 기능기 반응을 통한 도핑효과를 일으켜, 전계효과(Electric Field Effect)를 인가하였을 때 그래핀 내에서 발생하는 Electron & Hole carrier 들의 accumulation & Depletion 효과에 의한 Charge Density 변화를 Graphene Field Effect Transistors (GFETs) 소자의 전기적 특성 변화를 확인하였다. 특히, 그래핀 내 Conduction of electron을 높이기 위하여, $N_2+H_2$ 가스 조합을 플라즈마 방전가스로 사용하였으며, Optical Emission Spectroscopy (OES) 및 Langmuir-probe 측정을 통하여 합성가스의 ICP 방전 상태 및 효과를 예측하였다.

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Hexagonal Boron Nitride Monolayer Growth without Aminoborane Nanoparticles by Chemical Vapor Deposition

  • Han, Jaehyu;Yeo, Jong-Souk
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.409-409
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    • 2014
  • Recently hexagonal boron nitride (h-BN), III-V compound of boron and nitrogen with strong covalent $sp^2$ bond, is a 2 dimensional insulating material with a large direct band gap up to 6 eV. Its outstanding properties such as strong mechanical strength, high thermal conductivity, and chemical stability have been reported to be similar or superior to graphene. Because of these excellent properties, h-BN can potentially be used for variety of applications such as dielectric layer, deep UV optoelectronic device, and protective transparent substrate. Ultra flat and charge impurity-free surface of h-BN is also an ideal substrate to maintain electrical properties of 2 dimensional materials such as graphene. To synthesize a single or a few layered h-BN, chemical vapor deposition method (CVD) has been widely used by using an ammonia borane as a precursor. Ammonia borane decomposes into hydrogen (gas), monomeric aminoborane (solid), and borazine (gas) that is used for growing h-BN layer. However, very active monomeric aminoborane forms polymeric aminoborane nanoparticles that are white non-crystalline BN nanoparticles of 50~100 nm in diameter. The presence of these BN nanoparticles following the synthesis has been hampering the implementation of h-BN to various applications. Therefore, it is quite important to grow a clean and high quality h-BN layer free of BN particles without having to introduce complicated process steps. We have demonstrated a synthesis of a high quality h-BN monolayer free of BN nanoparticles in wafer-scale size of $7{\times}7cm^2$ by using CVD method incorporating a simple filter system. The measured results have shown that the filter can effectively remove BN nanoparticles by restricting them from reaching to Cu substrate. Layer thickness of about 0.48 nm measured by AFM, a Raman shift of $1,371{\sim}1,372cm^{-1}$ measured by micro Raman spectroscopy along with optical band gap of 6.06 eV estimated from UV-Vis Spectrophotometer confirm the formation of monolayer h-BN. Quantitative XPS analysis for the ratio of boron and nitrogen and CS-corrected HRTEM image of atomic resolution hexagonal lattices indicate a high quality stoichiometric h-BN. The method presented here provides a promising technique for the synthesis of high quality monolayer h-BN free of BN nanoparticles.

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OLED소자를 위한 그래핀 투명전극에 대한 연구

  • 김영훈;박준균;정영종;노용한
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.237.1-237.1
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    • 2015
  • OLED의 낮은 외부 광자 효율 문제를 해결하기 위해서는 발광층은 물론 전극 재료에 대한 연구가 함께 진행되어야 한다. 최근 플렉서블 디스플레이(Flexible Display) 분야에서 투명전극(Transparent Electrode)은 큰 주목을 받고 있다. 기존 전자소자의 투명전극으로는 인듐산화물(ITO, Indium Tin Oxide)이 널리 사용되어 왔으나, ITO의 주원료인 인듐(Indium)은 희소성으로 인해 앞으로 30년 후에 고갈될 것으로 예상되어 ITO를 대체할만한 투명전극 재료가 필요하게 되었다. 인듐이 포함되지 않은(Indium-free) 투명전극을 개발하려는 많은 연구들이 진행 중인데, 본 연구에서는 PEN(Polyethylene Naphthalate) 유연기판 상에 그래핀(Graphene)을 투명전극으로 구현하여 OLED의 효율을 높이는데 이용하고자 하였다. 화학 기상 증착(CVD, Chemical Vapor Deposition) 방법을 이용하여 Cu 호일 위에 그래핀을 성장시킨 후 PEN 유연기판에 전사하여 그래핀 투명전극을 구현하면서 그래핀 성장층을 단층 또는 다층으로 구분하여 성장시켜 각각의 투명전극을 구현해보았다. 유연기판 상의 그래핀의 상태를 확인하기 위해 라만 분광(Raman Spectroscopy) 분석을 이용하여 그래핀 고유의 라만 꼭지점(Raman peak)인 G 꼭지점(G peak: 1580 cm-1), 2D 꼭지점(2D peak: ~2700 cm-1)을 확인하였는데 그래핀 전사 상태가 양호하여 D 꼭지점(D peak: ~1360 cm-1)은 나타나지 않았다. 원자힘 현미경(AFM, Atomic Force Microscope) 분석을 통해 다층 및 단층 그래핀 표면의 거칠기(Roughness) 및 두께(Thickness)를 각각 확인할 수 있었고 자외선-가시광선 분광법(UV-Visible Spectroscopy) 분석으로 그래핀 투명전극과 유연기판의 투과도(Transmittance)를 분석하였으며, 단층 그래핀 투과도가 90%수준의 높은 값이 나타나 ITO보다 개선됨을 확인하였다. 그래핀 면저항은 TLM(Transmission Line Measurement)법을 통해 측정하였는데, 단층 그래핀의 경우 $800{\Omega}/{\square}$ 내외 수준임을 확인할 수 있었다. 본 연구에서는 근자외선 영역에서 높은 투과도와 우수한 전기적 특성을 가지는 그래핀 투명 전도성 전극 구조를 제안하고, 나아가 가시영역에서 ITO를 대체할 수 있는 투명 전도성 전극 물질을 개발함으로써 발광다이오드의 광효율을 높일 수 있는 투명 전도성 전극을 구현하였다.

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Optimized Decomposition of Ammonia Borane for Controlled Synthesis of Hexagonal Boron Nitride Using Chemical Vapor Deposition

  • Han, Jaehyu;Kwon, Heemin;Yeo, Jong-Souk
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.285-285
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    • 2013
  • Recently, hexagonal boron nitride (h-BN), which is III-V compound of boron and nitride by strong covalent sp2 bonds has gained great interests as a 2 dimensional insulating material since it has honeycomb structure with like graphene with very small lattice mismatch (1.7%). Unlike graphene that is semi-metallic, h-BN has large band gap up to 6 eV while providing outstanding properties such as high thermal conductivity, mechanical strength, and good chemical stability. Because of these excellent properties, hBN can potentially be used for variety of applications such as dielectric layer, deep UV optoelectronic device, and protective transparent substrate. Low pressure and atmospheric pressure chemical vapor deposition (LPCVD and APCVD) methods have been investigated to synthesize h-BN by using ammonia borane as a precursor. Ammonia borane decomposes to polyiminoborane (BHNH), hydrogen, and borazine. The produced borazine gas is a key material that is a used for the synthesis of h-BN, therefore controlling the condition of decomposed products from ammonia borane is very important. In this paper, we optimize the decomposition of ammonia borane by investigating temperature, amount of precursor, and other parameters to fabricate high quality monolayer h-BN. Synthesized h-BN is characterized by Raman spectroscopy and its absorbance is measured with UV spectrophotometer. Topological variations of the samples are analyzed by atomic force microscopy. Scanning electron microscopy and Scanning transmission Electron microscopy are used for imaging and analysis of structures and surface morphologies.

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Fabrication of Two-dimensional MoS2 Films-based Field Effect Transistor for High Mobility Electronic Device Application

  • Joung, DaeHwa;Park, Hyeji;Mun, Jihun;Park, Jonghoo;Kang, Sang-Woo;Kim, TaeWan
    • Applied Science and Convergence Technology
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    • 제26권5호
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    • pp.110-113
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    • 2017
  • The two-dimensional layered $MoS_2$ has high mobility and excellent optical properties, and there has been much research on the methods for using this for next generation electronics. $MoS_2$ is similar to graphene in that there is comparatively weak bonding through Van der Waals covalent bonding in the substrate-$MoS_2$ and $MoS_2-MoS_2$ heteromaterial as well in the layer-by-layer structure. So, on the monatomic level, $MoS_2$ can easily be exfoliated physically or chemically. During the $MoS_2$ field-effect transistor fabrication process of photolithography, when using water, the water infiltrates into the substrate-$MoS_2$ gap, and leads to the problem of a rapid decline in the material's yield. To solve this problem, an epoxy-based, as opposed to a water-based photoresist, was used in the photolithography process. In this research, a hydrophobic $MoS_2$ field effect transistor (FET) was fabricated on a hydrophilic $SiO_2$ substrate via chemical vapor deposition CVD. To solve the problem of $MoS_2$ exfoliation that occurs in water-based photolithography, a PPMA sacrificial layer and SU-8 2002 were used, and a $MoS_2$ film FET was successfully created. To minimize Ohmic contact resistance, rapid thermal annealing was used, and then electronic properties were measured.

Preparation of Carbon Nanofibers by Catalytic CVD and Their Purification

  • Lim, Jae-Seok;Lee, Seong-Young;Park, Sei-Min;Kim, Myung-Soo
    • Carbon letters
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    • 제6권1호
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    • pp.31-40
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    • 2005
  • The carbon nanofibers (CNFs) were synthesized through the catalytic decomposition of hydrocarbons in a quartz tube reactor. The CNFs prepared from $C_3H_8$ at $550^{\circ}C$ was selected as the purification sample due to the higher content of impurity than that prepared from other conditions. In this study, we carried out the purification of CNFs by oxidation in air or carbon dioxide after acid treatment, and investigated the influence of purification parameters such as kind of acid, concentration, oxidation time, and oxidation temperature on the structure of CNFs. The metal catalysts could be easily eliminated from the prepared CNFs by liquid phase purification with various acids and it was verified by ICP analysis, in which, for example, Ni content decreased from 2.51% to 0.18% with 8% nitric acid. However, the particulate carbon and heterogeneous fibers were not removed from the prepared CNFs by thermal oxidation in air and carbon dioxide. This result can be explained by that the direction of graphene sheet in CNFs is vertical to the fiber axis and the CNFs are oxidized at about the similar rate with the impurity carbon.

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Electrical Properties of Local Bottom-Gated MoS2 Thin-Film Transistor

  • Kwon, Junyeon;Lee, Youngbok;Song, Wongeun;Kim, Sunkook
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.375-375
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    • 2014
  • Layered semiconductor materials can be a promising candidate for large-area thin film transistors (TFTs) due to their relatively high mobility, low-power switching, mechanically flexibility, optically transparency, and amenability to a low-cost, large-area growth technique like thermal chemical vapor deposition (CVD). Unlike 2D graphene, series of transition metal dichalcogenides (TMDCs), $MX_2$ (M=Ta, Mo, W, X=S, Se, Te), have a finite bandgap (1~2 eV), which makes them highly attractive for electronics switching devices. Recently, 2D $MoS_2$ materials can be expected as next generation high-mobility thin-film transistors for OLED and LCD backplane. In this paper, we investigate in detail the electrical characteristics of 2D layered $MoS_2$ local bottom-gated transistor with the same device structure of the conventional thin film transistor, and expect the feasibility of display application.

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