• 제목/요약/키워드: Levitational gas condensation(LGC)

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부양가스응축법에 의해 제조된 철산화물 나노 분말의 자기적 특성연구 (A Study on Magnetic Iron Oxide Nano Particles Synthesized by the Levitational Gas Condensation (LGC) Method)

  • 엄영랑;김흥회;이창규
    • 한국분말재료학회지
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    • 제11권1호
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    • pp.50-54
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    • 2004
  • Nanoparticles of iron oxides have been prepared by the levitational gas condensation (LGC) method, and their structural and magnetic properties were studied by XRD, TEM and Mossbauer spectroscopy. Fe clusters were evaporated from a surface of the levitated liquid Fe droplet and then condensed into nanoparticles of iron oxide with particle size of 14 to 30 nm in a chamber filled with mixtures of Ar and $O_2$ gases. It was found that the phase transition from both $\gamma$-$Fe_2O_3$ and $\alpha$-Fe to $Fe_3O_4$, which was evaluated from the results of Mossbauer spectra, strongly depended on the $O_2$ flow rate. As a result, $\gamma$-$Fe_2O_3$ was synthesized under the $O_2$ flow rate of 0.1$\leq$$Vo_2$(Vmin)$\leq$0.15, whereas $Fe_3O_4$ was synthesized under the $O_2$, flow rate of 0.15$\leq$$Vo_2$(Vmin)$\leq$0.2.

Synthesis of Metal and Ceramic Magnetic Nanoparticles by Levitational Gas Condensation (LGC)

  • Uhm, Y.R.;Lee, H.M.;Lee, G.J.;Rhee, C.K.
    • Journal of Magnetics
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    • 제14권2호
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    • pp.75-79
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    • 2009
  • Nickel (Ni) and ferrite ($Fe_3O_4$, $NiFe_2O_4$) nanoparticles were synthesized by LGC using both wire feeding (WF) and micron powder feeding (MPF) systems. Phase evolution and magnetic properties were then investigated. The Ni nanopowder included magnetic-ordered phases. The LGC synthesis yielded spherical particles with large coercivity while the abnormal initial magnetization curve for Ni indicated a non-collinear magnetic structure between the core and surface layer of the particles. Since the XRD pattern cannot actually distinguish between magnetite ($Fe_3O_4$) and maghemite (${\gamma}-Fe_2O_3$) as they have a spinel type structure, the phase of the iron oxide in the samples was unveiled by $M{\ddot{o}}ssbauer$ spectroscopy. The synthesized Ni-ferrite consisted of single domain particles, including an unusual ionic state. The synthesized nanopowder bore an active surface due to the defects that affected abnormal magnetic properties.

Study on the Catalytic Properties of Copper Oxide Nanoparticles Synthesized by Levitational Gas Condensation (LGC) Method

  • Uhm, Y.R.;Lee, M.K.;Rhee, C.K.
    • 한국자기학회지
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    • 제17권2호
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    • pp.99-102
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    • 2007
  • The Cu oxide nano powders were synthesized by levitational gas condensation (LGC) method and their high heterogeneous catalytic effects of oxidation of 2,3,5-trimethyl-1,4-hydroquinone (TMHQ) and catalase activity were studied. The nano powders consist of mainly $Cu_2O$. The catalytic effect which was clarified by the oxidation of TMHQ and the activity of catalase, was found to depend on the amount of $Cu_2O$ phase and the particle size.

부양가스증발응축법에 의해 제조된 구리산화물 나노분말의 촉매 특성 연구 (Study on the Catalytic Properties of Copper Oxide Nanoparticles Synthesized by Levitational Gas Condensation (LGC) Method)

  • 엄영량;김흥회;오정석;이창규
    • 한국분말재료학회지
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    • 제12권1호
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    • pp.64-69
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    • 2005
  • The copper oxide nano powders were synthesized by levitational gas condensation(LGC) method, and their high heterogeneous catalytic effects of oxidation of 2,3,5-trimethyl-1,4- hydroquinone (TMHQ) and catalase activity were studied. The observation of transmission electron microscopy (TEM) shows that most of these nano powders are uniform in size, with the average particle size of 35 nm. The nano powder consists of mainly $Cu_2O$, but it is aged to CuO phase. The catalytic effect which was clarified by oxidation of TMHQ and catalase depends on the amount of cuprite phase and the particle size.

부양증발응축법으로 제조된 Ni과 Ni@C의 자성특성 및 Biginelli 합성 촉매 적용연구 (Magnetic Properties and Application of Caltalysts in Biginelli Reaction for the Ni and Ni@C Synthesized by Levitational Gas Condensation (LGC))

  • 엄영랑
    • 한국자기학회지
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    • 제27권3호
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    • pp.87-91
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    • 2017
  • 물리적 기상합성법인 부양증발가스응축법을 이용하여 분말 제조 장치 내 아르곤(Ar)가스와 메탄($CH_4$)의 비를 조정하여 니켈(Ni) 금속분말과 탄소가 니켈(Ni) 금속 표면에 코팅 된 Ni@C 나노분말을 제조하였다. 제조된 금속분말은 약 20 nm의 평균입도를 가지는 반면, 탄소막이 코팅된 경우 10 nm 정도의 평균 입도를 가지며, 2~3 nm 두께의 그라파이트 다층막(multi-shell graphite)이 표면에 코팅된 분말이 제조되었다. Ni@C는 1 T 가해준 상태에서도 자화값이 포화되지 못하였다. Ni의 경우 표면에 부동태 산화피막(NiO)이 존재한다. 제조된 나노입자를 심혈관 질환 치료제인 디하이드로미리미딘(3,4-dihydropyrimidine)의 제조시 촉매제로 반응시켰으며, 자성분말 특성을 이용하여 촉매제를 회수하였다. Ni의 경우 S-이성질체(en-antiomer)가 ${\Delta}{\sim}7.4%$ 더 생성 되었으며, Ni@C의 경우 ${\Delta}{\sim}19.6%$였다. 탄소막이 코팅 된 Ni은 재활용 시에도 3,4-DHPM 수득율(yield)이 68 %로 양호하였다.