• 제목/요약/키워드: Solid-state reaction

검색결과 847건 처리시간 0.028초

The Electronic Properties of the $BT-(BaNaK)(TiNb)O_3$ System for Lead Free PTC

  • 이미재;박정묵;정영훈;이우영
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 추계학술대회 논문집
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    • pp.12-12
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    • 2009
  • We weal know that PbO was poisonous and prone to volatilize, then to pollute the circumstance and hurt to people, so we should dope other innocuous additives instead of lead to increase Tc of composite PTC material. In order to prepare lead-free $BaTiO_3$-based PTC with middle Curie point, the incorporation on $(BaNaK)(TiNb)O_3$ into $BaTiO_3$-based ceramics was investigated on samples containing 0.05, 0.07 and 0.1mol% of $(BaNaK)(TiNb)O_3$. $(BaNaK)(TiNb)O_3$ was compounded as standby material by conventional solid-state reaction technique. The starting materials were $Na_2O_3$,$K_2CO_3$, $BaCO_3$, $TiO_2$ and $Nb_2O_5$ powder, and using solid-state reaction method, too. The microstructure of samples were investigated by SEM, DSC, XRD and dielectric properties. Phase composition and lattice parameters were investigated by X-ray diffraction. Also, we are measure the resistivity of sintered bodies with calcinations condition.

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패각을 이용한 인산칼슘계 화합물의 제조에 관한 연구 (A study on the preparation of phosphatic calcium compounds using the shell resources)

  • 이인곤;김판채
    • 한국결정성장학회지
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    • 제10권2호
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    • pp.171-176
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    • 2000
  • 패각으로부터 얻어지는 고순도의 소석회와 탄산칼슘을 이용하여 인산1수소칼슘, 수산화아파타이트, 골회 및 인산3칼슘과 같은 인산칼슘계 화합물을 제조하였다. 인산2수소칼슘은 고순도의 소석회와 인산용액을 이용하여 제조하였으며, 그리고 인산1수소칼슘을 출발원료로 하여 고상반응법에 의해 골회를 제조하였고 또 수열처리법을 이용하여 수산화아파타이트를 제조하였다. 인산3칼슘의 제조는 골회와 고순도의 탄산칼슘을 혼합한 뒤 고상반응시켜 제조하였다. 본 연구에서는 이상과 같은 인산칼슘계 화합물에 대한 최적의 제고공정 및 제조 조건을 확립하였다.

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Eu3+ 농도에 따른 적색 형광체 Gd1-xVO4:Eux3+의 형광 특성 (Photoluminescence Properties of Red Phosphors Gd1-xVO4:Eux3+ Subjected to Eu3+ Concentration)

  • 조신호;조선욱
    • 한국전기전자재료학회논문지
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    • 제25권3호
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    • pp.193-197
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    • 2012
  • $Gd_{1-x}VO_4:{Eu_x}^{3+}$ red phosphors were synthesized with changing the concentration of $Eu^{3+}$ ion by using a solid-state reaction method. The crystal structure, surface morphology, and photoluminescence and photoluminescence excitation properties of the red phosphors were measured by using X-ray diffractometer, field emission-scanning electron microscopy, and florescence spectrometer, respectively. The XRD results showed that the main peak of all the phosphor powders occurs at (200) plane. As for the photoluminescence properties, the maximum excitation spectrum occurred at 306 nm due to the charge transfer band from ${VO_4}^{3-}$ to $Eu^{3+}$ ions and the maximum emission spectrum was the red luminescence peaking at 619 nm when the concentration of $Eu^{3+}$ ion was 0.10 mol.

CaMoO4:Tb3+ 녹색 형광체 분말과 박막의 제조와 발광 특성 (Synthesis and Emission Properties of CaMoO4:Tb3+ Green Phosphor Powders and Thin Films)

  • 전용일;조신호
    • 한국전기전자재료학회논문지
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    • 제26권4호
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    • pp.264-270
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    • 2013
  • $CaMoO_4:Tb^{3+}$ green phosphor powders and thin films were successfully prepared by using the solid-state reaction method and the radio-frequency magnetron sputtering technique, respectively. The crystalline structure of all phosphor powders with different $Tb^{3+}$ ion concentrations was found to be a tetragonal system with the maximum diffraction intensity at $28.58^{\circ}$, while that of the phosphor thin films, irrespective of the type of substrate, was amorphous. As for the phosphor powders, the grain particles showed the chain-like patterns with inhomogeneous size distribution, the excitation spectra were composed of a broad band peaked at 307 nm and two small narrow bands centered at 381 and 492 nm, and the highest green emission spectrum was observed at 0.01 mol of $Tb^{3+}$ ions. As for the phosphor thin films, the average transmittance exceeding 85% was measured in the 400~1,100 nm range and the optical band gap showed a significant dependence on the type of substrate.

In-situ Synthesis of Cu-TiB2 Nanocomposite by MA/SPS

  • Kwon, Young-Soon;Kim, Ji-Soon;Kim, Hwan-Tae;Moon, Jin-Soo;D.V Dudina;O.I. Lomovsky
    • 한국분말재료학회지
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    • 제10권6호
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    • pp.443-447
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    • 2003
  • Nano-sized $TiB_2$ was in situ synthesized in copper matrix through self-propagating high temperature synthesis (SHS) with high-energy ball milled Ti-B-Cu elemental mixtures as powder precursors. The size of $TiB_2$ particles in the product of SHS reaction decreases with time of preliminary mechanical treatment ranging from 1 in untreated mixture to 0.1 in mixtures milled for 3 min. Subsequent mechanical treatment of the product of SHS reaction allowed the $TiB_2$ particles to be reduced down to 30-50 nm. Microstructural change of $TiB_2$-Cu nanocomposite during spark plasma sintering (SPS) was also investigated. Under simultaneous action of pressure, temperature and electric current, titanium diboride nanoparticles distributed in copper matrix move, agglomerate and form a interpenetrating phase composite with a fine-grained skeleton.

연구용 결정 성장 (Crystal Growth for the Research Purpose)

  • 허남정
    • 한국자기학회지
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    • 제21권3호
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    • pp.108-115
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    • 2011
  • 이 글에서는 응집물질물리 실험에 필수적인 소규모의 연구용 고순도 시료 제작에 있어 기본적인 사항들을 살펴본다. 연구자들이 쉽게 접근할 수 있는 시료 제작법들을 중심으로 제작 과정과 유의점등을 소개하려 한다. 가장 흔히 사용되는 고상소결법으로 부터 시작하여 다양한 환경에서 다결정 및 단결정 제작에 필수적인 석영관을 이용한 시료 제작에 대해 설명하고 단결정 제작의 기초와 다양한 단결정 성장법에 대해서도 전반적으로 소개하여 시료 제작을 처음 접하는 연구자들의 이해를 돕도록 한다.

Electrochemical Properties of $LiM_xFe_{1_x}PO_4$ Cathode Materials By Solid-state Reaction

  • Wang, Wan-Lin;Park, Kyung-Hee;Gil, Hal-Bon;Park, Bok-Kee
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2010년도 하계학술대회 논문집
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    • pp.212-212
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    • 2010
  • Recently, lithium transition metal phosphates with an ordered olivine-type structure, $LiMPO_4$ (M=Fe, Mn, Ni, and Co), have attracted extensive attention due to a high theoretical specific capacity (170 mAh/g). The $LiMPO_4$ is the most attractive because of its high stability, low cost, high compatibility with environment. However, it is difficult to attain its full capacity because its electronic conductivity is very low, and diffusion of Li-ion in the olivine structure is slow and the supervalue cation doping was used. In this research, we are used the supervalue cation doping methode such as Cu, Ti, and Mg were partially replace the Fe. The cycling performance resulted of the used $LiM_xFe_{1_x}PO_4$ cathode materials for lithium batteries exhibit excellent high capacity than $LiFePO_4$/Li cells.

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Li-이온이 도핑된 Y2SiO5:Ce 청색 형광체 (Li-doped Y2SiO5:Ce, Blue-emitting Phosphor)

  • 박중철;전기완
    • 대한화학회지
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    • 제50권3호
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    • pp.232-236
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    • 2006
  • 형광체의 특성을 향상시키기 위하여 Y1.99-xMxCe0.01SiO5(M=Li, La, Nd, and Gd)를 환원분위기에서 1350oC, 10시간동안 고상반응법으로 합성하였다. 상용품인 청색 형광체와 비교를 했을 때, 다양한 원소를 치환한 Y2SiO5:Ce 청색 형광체의 발광 특성이 우수 하다는 것을 관찰 할 수 있었다. 특히, 1mol%의 Li 이온이 도핑된 Y2SiO5:Ce 청색 형광체의 광 발광 특성이 가장 높았다. Y2SiO5:(Ce,Li) 청색 형광체의 입도형상을 주사전자현미경으로 분석한 결과, 입자의 크기가 약 3m인 유사구형임을 확인하였다.

Structural and Electrical Properties of CoxMn3-xO4 Ceramics for Negative Temperature Coefficient Thermistors

  • Kim, Kyeong-Min;Lee, Sung-Gap;Kwon, Min-Su
    • Transactions on Electrical and Electronic Materials
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    • 제18권6호
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    • pp.330-333
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    • 2017
  • $Co_xMn_{3-x}O_4$ ($1.48{\leq}x{\leq}1.63$) ceramics were fabricated using the solid-state reaction method. Structural and electrical properties of specimens based on the composition ratio of Co were observed in order to investigate their applicability in NTC thermistors. All specimens showed a single spinel phase with a homogeneous tetragonal structure. The $Co_{1.57}Mn_{1.43}O_4$ specimen showed a maximum average grain size of approximately $6.47{\mu}m$. In all specimens, TCR properties displayed excellent characteristics of over $-4.2%/^{\circ}C$. The resistivity at 298 K and B-value of the $Co_{1.57}Mn_{1.43}O_4$ specimen were approximately $418{\Omega}-cm$ and 4300, respectively.

Luminescent Properties of LaBO3:RE3+ (RE=Tb, Ce) Phosphors for White Light Emitting Diodes

  • Cho, Shinho
    • Current Photovoltaic Research
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    • 제2권2호
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    • pp.53-58
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    • 2014
  • $Tb^{3+}$ - or $Ce^{3+}$-doped $LaBO_3$ phosphors were synthesized by a solid-state reaction process with different concentrations of activator ions. The XRD spectra showed the monoclinic $LaBO_3$ pattern with the main peak occurring at (014) plane, irrespective of the kind of activator ions. The crystallite size was determined by using the Scherrer formula, and the maximum was obtained with an activator concentration of 0.05 mol for both phosphors. The emission spectra of $LaBO_3$ phosphors doped with $Tb^{3+}$ ions under excitation at 269 nm exhibited three major emission bands at 488, 544, and 587 nm. The strongest emission was green at 544 nm owing to the $^5D_4-^7F_5$ transition at a $Tb^{3+}$ ion concentration of 0.05 mol. For the $Ce^{3+}$-doped $LaBO_3$ phosphors, one strong blue band centered at 469 nm and weak multipeaks were observed. These results suggest that the optimum green and blue emission can be realized by controlling the concentration and type of activator ions incorporated in the host crystal.