• Title/Summary/Keyword: 용융염 합성

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Powder synthesis and morphology changes of strontium barium niobate by molten salt method (용융염법에 의한 strontium barium niobate 분말 합성 및 분말의 형상 변화)

  • 윤상옥;박상엽
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.6 no.4
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    • pp.501-508
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    • 1996
  • Strontium barium niobate powders were prepared by NaCl-KCl molten salt, and reaction process and morphology change of strontium barium niobate were investigated as a function of reaction temperature, time, and amount of molten salt. With increasing the reaction temperature and time, the reacted fraction was increased and the morphology of powder was changed from lumpy shape into meedle-like shape. With increasing the amount of molten salt, reacted fraction was increased rapidly, but the morphology of powder was changed from needle-like shape into spherical shape. Strontium barium niobate powder, over 90 % in fraction reacted, was obtained from the reaction conditions at $1000^{\circ}C$ for small flux ratio (=1) and at $650^{\circ}C$ for large flux ratio (=4).

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Crystal structure and microstructure of Z-type hexaferrite (Ba, La)Co2Fe24O41 by molten salt synthesis (용융염 합성법에 의한 Z형 육방정 페라이트 (Ba, La)Co2Fe24O41계의 결정구조와 미세구조)

  • Lee, Do Hyeok;Kwon, Chae-Yeon;Moon, Kyoung-Seok
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.31 no.5
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    • pp.197-202
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    • 2021
  • Synthesis of Z-type hexaferrite Ba3Co2Fe24O41 (Ba3Z) and Ba1.5La1.5Co2Fe24O41 (Ba1.5La1.5Z) powders were tried using molten salt synthesis after primary calcination. Ba3Z calcined at 1000℃ was formed with both M-type and Y-type hexaferrite, and then Z-type was obtained when sintered with molten salt at 1150℃ and 1200℃. In the case of Ba1.5La1.5Z calcined at 1000℃, however, M-type hexaferrite, CoFe2O4 (Spinel phase), and LaFeO3 were synthesized. As a result, Z-type hexaferrite was not synthesized after sintering with molten salt. In addition, the aspect ratio of the particles decreased as the sintering temperature increased with molten salt synthesis. To obtain a single-phase Ba1.5La1.5Z with a high aspect ratio, it is expected the raw materials have to calcine below the temperature of a spinel phase formation before sintering with molten salt.

Preparation of $Pb(Sc_{1/2}Ta_{1/2})O_3$, by the molten salt synthesis method (용융염 합성법에 의한 $Pb(Sc_{1/2}Ta_{1/2})O_3$의 제조)

  • Park, Kyung-Bong;Kim, Tae-Huei
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.15 no.3
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    • pp.99-103
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    • 2005
  • Lead scandium tantalate powders were prepared by a molten salt synthesis method using NaCl-KCl as a flux. Variations in phase formation and particle morphology were investigated for the temperature range from $700^{\circ}C\;to\;800^{\circ}C$. $Pb(Sc_{1/2}Ta_{1/2})O_3$, with pure perovskite phase was formed at $750^{\circ}C$ fur 2 hrs and the prepared powder had the cubic-like morphology and the average particle size below $0.5{\mu}m$. The results were discussed with respect to DTA, X-ray diffraction, and microstructural characterization data.

Dielectric properties of $xPb (Fe_{1/2}Nb_{1/2}) O_3 - (1-x) Pb (Mg_{1/3}Nb_{2/3}) O_3$ ceramics prepared by the molten salt synthesis method (용융염 합성법에 의해 제조된 $xPb (Fe_{1/2}Nb_{1/2}) O_3 - (1-x) Pb (Mg_{1/3} Nb_{2/3}) O_3$ 계 세라믹스의 유전성)

  • 박경봉;김태희
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.5 no.2
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    • pp.152-164
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    • 1995
  • $xPb(Fe_{1/2}Nb_{1/2})O_3 - (1 - x)Pb(Mg_{1/3}Nb_{2/3})O_3$ powders were synthesized by the molten salt synthesis method using the NaC!- KCI flux with 1 : 1 molar ratio, and their powders and dielectric properties were investigated. The synthesized powders showed less agglomerated shape with the average particle size of less than $2 \mu\textrm{m}$. The composition $x0.3Pb(Fe_{1/2}Nb_{1/2})O_3-0.7Pb(Mg_{1/3}Nb_{2/3})O_3$ could be sintered at $1000{\times}C$ and its dielectric constnat was over 11, 000.

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Dielectric properties of $0.6Pb(Sc_{1/2}Ta_{1/2})O_3-0.4PbTiO_3$ ceramics prepared by the molten salt synthesis method (용융염 합성법에 의해 제조된 $0.6Pb(Sc_{1/2}Ta_{1/2})O_3-0.4PbTiO_3$ 세라믹스의 유전성)

  • Park, Kyung-Bong;Kim, Tae-Huei;Kwon, Seung-Hyup;Lim, Dong-Ju
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.17 no.2
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    • pp.69-74
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    • 2007
  • [ $0.6Pb(Sc_{1/2}Ta_{1/2})O_3-0.4PbTiO_3$ ] (hereafter PSTT) ceramics were prepared by the molten salt synthesis (MSS) method using KCI as a flux. Formation of perovskite phase was investigated by a differential thermal analysis (DTA) and X-ray diffraction (XRD) analysis in the temperature range from $600^{\circ}C$ to $850^{\circ}C$. A 92% perovskite phase was synthesized at $750^{\circ}C$ for 2 hrs using the MSS method, while 82% perovskite phase was synthesized at $850^{\circ}C$ for 4ks using the calcining of mixed oxide (CMO) method. This result could be due to the improvement in reactivity of $Sc_2O_3$ by melting of KCI. The MSS specimen sintered at $1,100^{\circ}C$ for 4hrs showed a dielectric constant of 11,200, a remnant polarization of $13.5{\mu}C/cm^2$ and a coercive field of 10.198 kV/cm, which was discussed in view of the microstructure.

Electric properties of PZN-PNN-PT-PZ piezoelectric ceramics prepared by molten salt method (용융염 합성법으로 제조한 PZN-PNN-PT-PZ계 압전세라믹스의 전기적 특성)

  • 어수해;이기태
    • Electrical & Electronic Materials
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    • v.9 no.4
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    • pp.351-356
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    • 1996
  • The quartemary system ceramics 0.5[xPb(Zn$_{1}$3/Nb$_{2}$3/)O$_{3}$-(1-x)Pb(Ni$_{1}$3/Nb$_{2}$3/)O$_{3}$]-0.5[yPbTiO$_{3}$-(1-y) PbZrO$_{3}$ for piezoelectric actuators were prepared bv the were added to the raw materials up to 5 mole. Sintering temperature was varied form 1000.deg. C to 1200.deg. C. Sintering characteristrics, dielectric and piezoelectric properties were then investigated. Piezoelectric properties of sample prepared by the molten salt method were improved compared to those prepared by the conventional method. Addition of PZN shifted morphotropic phase boundary to more Zr-rich composition and decreased the piezoelectric properties.

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Microstructure and Additive Effect of the Piezoelectric ceramics PZT prepared by Molten Salt Synthesis Method (용융염 합성법에 의해 제조된 압전 세라믹(PZT)의 미세구조 및 첨가물의 효과)

  • 이수호;조현철;류주현;사공건
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.11 no.5
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    • pp.378-383
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    • 1998
  • Microstructure and additive effect of Lead Zirconate-Titanate(PZT) ceramics prepared by molten salt synthesis method with additives $Nb_2O_5, Fe_2O_3$ and MnO were investigated.The grain PZT ceramics ws decreased with the increase $Nb^{5+} or Fe^{3+}$ while increased with the increase $Mn^{2+}$ addition. The relative resistivity of PZT ceramics was increased with the increase $Mn^{5+}$ addition, while decreased with the increase $Mn^{2+}$ addition. And the dielectric and the piezoelectric constant of PZT ceramics showed 2,100 and 342pC/N at $Mn^{5+}$ addition of 0.75 mol%, respectively.

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Molten salt method에 의한 $BaTiO_3$ 나노 입자 합성

  • Park, Guk-Hyo;Sin, Hyo-Sun;Yeo, Dong-Hun;Hong, Yeon-U;Kim, Hyeong-Sun
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.273-273
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    • 2010
  • 최근 들어 에너지 개발과 환경문제의 해결방안으로 열전발전 및 열전냉각에 많은 관심과 연구가 진행되고 있다. 열전소재의 특성 향상을 위해 열전성능지수를 높이기 위하여 나노 입자상을 열전소재 내에 분산하고자 하는 연구가 진행되었다. Grain 내에 나노 입자를 분산하기 위해서는 원료 입자에서부터 나노 입자가 열전소재 내에 분산되어야 하며 이것은 산화물 나노입자의 코어-쉘 형성으로부터 가능하다. 이 과정에서 나노 입자를 열전소재 내에 코어로 분산하기위한 나노입자의 합성 및 제어가 필수적이다. 본 연구에서는 용융염법을 이용한 BaTiO3 나노 일자를 합성하고 이들을 용매에 분산하는 것을 목표로 하였다. 염으로는 KCl, LiCl, NaCl 및 이들의 혼합 염을 사용하였으며 염의 청가량, 염의 종류, 반응온도 및 반응시간의 변화에 따라 BaTiO3 나노 입자를 합성하였다. 또한, 합성된 나노 입자의 입자크기와 응집 제어를 통해 나노입자들의 분산 상태를 확인해 보았다. 이 결과는 SEM, TEM, 입도측정기, XRD등의 측정 결과를 통하여 확인하고자 하였다.

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Preparation of $Pb(Sc_{1/2}Nb_{1/2})O_3$ powders by the molten salt synthesis method (용융염 합성법에 의한 $Pb(Sc_{1/2}Nb_{1/2})O_3$ 분말의 제조)

  • 박경봉
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.7 no.3
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    • pp.400-405
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    • 1997
  • Lead scandium niobate powders were prepared by a molten salt synthesis method using KCl as a flux. Variations in phase formation and particle morphology were investigated for the temperature range $700^{\circ}C$ to $850^{\circ}C$. Pure $Pb(Sc_{1/2}Nb_{1/2})O_3$ perovskite phase was formed at $850^{\circ}C$ after 2hrs and the average particle size of powder was below 0.5 $\mu\textrm{m}$. The results are discussed with respect to DTA, X-ray diffraction, and microstructural characterization data.

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