• 제목/요약/키워드: Oxide nano powder

검색결과 177건 처리시간 0.043초

Effect of Nozzle Tip Size on the Fabrication of Nano-Sized Nickel Oxide Powder by Spray Pyrolysis Process

  • Kim, Donghee;Yu, Jaekeun
    • 한국재료학회지
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    • 제23권9호
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    • pp.489-494
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    • 2013
  • In this study, by using nickel chloride solution as a raw material, a nano-sized nickel oxide powder with an average particle size below 50 nm was produced by spray pyrolysis reaction. A spray pyrolysis system was specially designed and built for this study. The influence of nozzle tip size on the properties of the produced powder was examined. When the nozzle tip size was 1 mm, the particle size distribution was more uniform than when other nozzle tip sizes were used and the average particle size of the powder was about 15 nm. When the nozzle tip size increases to 2 mm, the average particle size increases to roughly 20 nm, and the particle size distribution becomes more uneven. When the tip size increases to 3 mm, particles with an average size of 25 nm and equal to or less than 10 nm coexist and the particle size distribution becomes much more uneven. When the tip size increases to 5 mm, large particles with average size of 50 nm partially exist, mostly consisting of minute particles with average sizes in the range of 15~25 nm. When the tip size increases from 1 mm to 2 mm, the XRD peak intensities greatly increase while the specific surface area decreases. When the tip size increases to 3 mm, the XRD peak intensities decrease while the specific surface area increases. When the tip size increases to 5 mm, the XRD peak intensities increase again while the specific surface area decreases.

기상합성법을 이용한 산화갈륨 나노분말의 제조 (Gas phase synthesis of Ga2O3 nanoparticles from gallium metal)

  • 박정원;원창민;권준범;이혁재
    • 한국결정성장학회지
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    • 제30권6호
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    • pp.220-225
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    • 2020
  • 반응부, 이송부, 포집부로 이루어진 기상합성장치를 구축하여 Oxide TFT의 대표적인 물질인 IGZO 반도체용 타겟의 기초 소재인 산화갈륨 나노분말을 기상합성법으로 제조하였다. 반응부에서 갈륨 금속을 증발시켜 1150℃ 이상의 온도에서 산화갈륨 나노분말이 만들어지는 것을 확인하였다. 갈륨 금속은 증발 즉시 반응부에서 산화갈륨 나노분말로 합성되었으며, 반응부의 온도가 증가함에 따라 높은 결정도와 큰 입자 크기를 보였다. 또한, 합성된 산화갈륨 나노분말은 구형의 모양을 가지면서 매우 낮은 응집성을 가졌다. 기상합성법으로 얻은 산화갈륨 나노분말을 상용 산화인듐, 산화아연 분말(몰비 = 1 : 1 : 1)과 혼합하여 소결을 시행한 결과, 소결온도 1450℃에서 5.83 g/㎤의 최대밀도를 얻어 같은 조건하에서 상용 산화갈륨 분말을 이용해 만든 IGZO 소결체(5.61 g/㎤)보다 높은 밀도를 얻음을 볼 수 있었다.

Enhanced Properties of IZO Thin Film Prepared by Nano-Powder Target

  • Ji, Seung-Hun;Youn, Hyun-Oh;Seo, Sung-Bo;Kim, Mi-Sun;Sohn, Sun-Young;Kim, Jong-Jae;Kim, Hwa-Min
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2009년도 9th International Meeting on Information Display
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    • pp.1428-1429
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    • 2009
  • Compared to the indium zinc oxide (IZO) film fabricated by micro-powder target, the IZO film with nano-powder target exhibited improved optoelectronic properties of wide bandgap, high transmittance, surface uniformity, and low sheet resistance due to the high film density.

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Synthesis of W18O49 Phase by Carbothermal Reduction of Tungsten Oxide and its Field Emission Characteristics

  • Yang, Hyo-Seung;Park, Hoon;Kim, Hyoung-chul;Ahn, Jae-Pyoung;Huh, Moo-Young;Park, Jong-Ku
    • 한국분말재료학회지
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    • 제11권3호
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    • pp.253-258
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    • 2004
  • We report a carbothermal reduction process for massive synthesis of monolithic W$_{18}$O$_{49}$ phase from tungsten oxide in the presence of carbon source. Carbon black powder was used as a carbon source and added to WO$_3$ by 40 weight percent. Bundles of W$_{18}$O$_{49}$ rods were formed over the temperature range of 80$0^{\circ}C$$^{\circ}C$ to 90$0^{\circ}C$. Pure W$_{18}$O$_{49}$ bundles could be separated from the mixture of W$_{18}$O$_{49}$ and residual carbon black powder. Field emission character of W$_{18}$O$_{49}$ phase was determined using the extracted W$_{18}$O$_{49}$ rods. Flat lamp fabricated from the W$_{18}$O$_{49}$ rods showed the turn-on field of 9.3 V/${\mu}m$.

알루미나 나노 Particle의 분산 평가 및 최적화

  • 박국효;신효순;여동훈;홍연우
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 추계학술대회 논문집
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    • pp.251-251
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    • 2009
  • The generation of energy and the cooling of system using thermoelectric semiconductor material have been in spotlight. Thermoelectric effect increases with the decrease of the thermal conductivity. In the thermoelectric devices, thermal conductivity is related to phonon scattering. Therefore, few studies have been conducted in the thermoelectric materials dispersed nano oxide particle for increasing the phonon scattering. However, core-shell structure which nano particle disperses in solvents and then which thermoelectric materials coated on the nano oxide particles has not been reported. In this study, we selected commercial nano powder such as $Al_2O_3$. This nano particle was about 20nm and was crushed aggregate by mechanical treatment. We have developed the effect of the dispersant and the solvent. The properties of particles were evaluated by SEM, TEM, particle size analysis, and BET. Dispersion and dispersion stability were evaluated by electronic microscope and turbidity.

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분무열분해(噴霧熱分解) 공정(工程)에 의한 주석(朱錫) 산화물(酸化物) 나노 분말(粉末) 제조(製造) (Preparation of Nano-Sized Tin Oxide Powder by Spray Pyrolysis Process)

  • 유재근;차광용;김명춘;한정수;장재범;이용화;김동희
    • 자원리싸이클링
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    • 제17권6호
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    • pp.79-88
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    • 2008
  • 본 연구는 폐 주석의 리싸이클링을 통한 고기능성 주석 산화물 나노 분말의 대량제조 기술개발을 위한 전 단계 연구로서 주석 염화물 용액을 원료로 하여 분무열분해 반응에 의하여 평균입도 50nm 이하의 주석 산화물 분말을 제조하였으며 반응온도의 변화에 따른 생성 입자들의 특성 변화를 파악하였다. 열분해 반응온도가 $800^{\circ}C$로부터 $850^{\circ}C$로 증가함에 따라 형성된 입자들의 평균입도는 20 nm로부터 30 nm로 증가하였다. 또한 XRD 피크의 강도도 증가하였으며 비표면적은 1/2 정도로 크게 감소하였다. 반응온도 $900^{\circ}C$의 경우에는 액적 형태는 평균입도 30 nm 정도의 나노 입자들로 구성되어 있는 반면 독립된 입자들의 경우에는 평균입도가 $80{\sim}100\;nm$로 현저하게 증가 하였으며 입자 표면이 더욱 치밀화되어 있었다. 또한 XRD 피크 강도도 현저히 증가하였으며 비표면적은 현저하게 감소하였다. 반응온도 $950^{\circ}C$의 경우에는 액적 형태의 비율 및 크기가 현저히 감소하였으며 대부분의 입자들은 독립된 형태를 유지하고 있었으며 평균입도는 약 70 nm로 $900^{\circ}C$의 경우보다 오히려 감소하였다. 또한 XRD 피크의 강도도 $900^{\circ}C$의 경우에 비하여 현저히 감소하였으며 비표면적은 2배 정도 크게 증가하였다.

산화그래핀을 적용한 고반응성 Al/CuO 나노복합재 제조 및 분석 (Fabrication and Characterization of Highly Reactive Al/CuO Nano-composite using Graphene Oxide)

  • 임예슬
    • 한국분말재료학회지
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    • 제26권3호
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    • pp.220-224
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    • 2019
  • The aluminum (Al)/copper oxide (CuO) complex is known as the most promising material for thermite reactions, releasing a high heat and pressure through ignition or thermal heating. To improve the reaction rate and wettability for handling safety, nanosized primary particles are applied on Al/CuO composite for energetic materials in explosives or propellants. Herein, graphene oxide (GO) is adopted for the Al/CuO composites as the functional supporting materials, preventing a phase-separation between solvent and composites, leading to a significantly enhanced reactivity. The characterizations of Al/CuO decorated on GO(Al/CuO/GO) are performed through scanning electron microscopy, transmission electron microscopy, and energy dispersive X-ray spectroscopy mapping analysis. Moreover, the functional bridging between Al/CuO and GO is suggested by identifying the chemical bonding with GO in X-ray photoelectron spectroscopy analysis. The reactivity of Al/CuO/GO composites is evaluated by comparing the maximum pressure and rate of the pressure increase of Al/CuO and Al/CuO/GO. The composites with a specific concentration of GO (10 wt%) demonstrate a well-dispersed mixture in hexane solution without phase separation.

Synthesis of Zinc Oxide Nano Rods, Sheet and Flower at $80^{\circ}C$ by the Sol-gel Method

  • Wahab, Rizwan;Ansari, S.G.;Kim, Y.S.;Dar, M.A.;Shin, H.S.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part 1
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    • pp.676-677
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    • 2006
  • Synthesis of zinc oxide nanorods, sheets and flower like structure were done by the sol-gel method using zinc acetate dihydrate and sodium hydroxide at $80^{\circ}C$ with 12 hours refluxing time nanorods, in case of as synthesized powder, with diameter of 20-60nm. Annealing at higher temperature (300 and $500^{\circ}C$,) in air ambient changes the morphology to sheet and flower like structure. The standard peak of zinc oxide was observed in IR at $523cm^{-1}$. The UV-VIS spectroscopy of zinc oxide shows a characteristic peak at 375nm.

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분무열분해 공정에 의한 주석산화물 나노분체 제조에 미치공기압력의 영향 (Effects of Air Pressure on the Fabrication of Nano-Sized Tin Oxide Powder by Spray Pyrolysis Process)

  • 유재근;김동희
    • 한국재료학회지
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    • 제21권12호
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    • pp.690-696
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    • 2011
  • In this study, nano-sized tin oxide powder with an average particle size of below 50 nm is prepared by the spray pyrolysis process. The influence of air pressure on the properties of the generated powder is examined. Along with the rise of air pressure from $0.1kg/cm^2$ to $3kg/cm^2$, the average size of the droplet-shaped particles decreases, while the particle size distribution becomes more regular. When the air pressure increases from $0.1kg/cm^2$ to $1kg/cm^2$, the average size of the dropletshaped particles, which is around 30-50 nm, shows hardly any change. When the air pressure increases up to $3kg/cm^2$, the average size of the droplet-shaped particles decreases to 30 nm. For the independent generated particles, when the air pressure is at $0.1kg/cm^2$, the average particle size is approximately 100 nm; when the air pressure increases up to $0.5kg/m^2$, the average particle size becomes more than 100 nm, and the surface structure becomes more compact; when the air pressure increases up to $1kg/cm^2$, the surface structure is almost the same as in the case of $0.5kg/cm^2$, and the average particle size is around 80- 100 nm; when the air pressure increases up to $3kg/cm^2$, the surface structure becomes incompact compared to the cases of other air pressures, and the average particle size is around 80-100 nm. Along with the rise of air pressure from $0.1kg/cm^2$ to $0.5kg/cm^2$, the XRD peak intensity slightly decreases, and the specific surface area increases. When the air pressure increases up to $1kg/cm^2$ and $3kg/cm^2$, the XRD peak intensity increases, while the specific surface area also increases.

ZnO 나노 분말 코팅 기반 건식전사 그래핀 전극 제작 및 유기태양전지 응용 (Partially Dry-Transferred Graphene Electrode with Zinc Oxide Nanopowder and Its Application on Organic Solar Cells)

  • 조영수;우채영;홍순규;이형우
    • 한국분말재료학회지
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    • 제27권4호
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    • pp.305-310
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    • 2020
  • In this study, partially dry transfer is investigated to solve the problem of fully dry transfer. Partially dry transfer is a method in which multiple layers of graphene are dry-transferred over a wet-transferred graphene layer. At a wavelength of 550 nm, the transmittance of the partially dry-transferred graphene is seen to be about 3% higher for each layer than that of the fully dry-transferred graphene. Furthermore, the sheet resistance of the partially dry-transferred graphene is relatively lower than that of the fully dry-transferred graphene, with the minimum sheet resistance being 179 Ω/sq. In addition, the fully dry-transferred graphene is easily damaged during the solution process, so that the performance of the organic photovoltaics (OPV) does not occur. In contrast, the best efficiency achievable for OPV using the partially dry-transferred graphene is 2.37% for 4 layers.