• 제목/요약/키워드: Sintering activation energy

검색결과 66건 처리시간 0.023초

Characteristics of Lanthanum Silicates Electrolyte for Solid Oxide Fuel Cells

  • Lee, Dong-Jin;Lee, Sung-Gap;Noh, Hyun-Ji;Jo, Ye-Won
    • Transactions on Electrical and Electronic Materials
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    • 제16권4호
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    • pp.194-197
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    • 2015
  • La9.33(Si5V1)O26 ceramics were fabricated by the mixed oxide method for solid oxide electrolytes. La9.33(Si5V1)O26 specimens showed the hexagonal, space group P63 or P63/m, and the unit cell volume increased when the sintering temperature increased. The specimen sintered at 1,400℃ showed the X-ray patterns of the homogeneous apatite single phase without the second phase, such as La2SiO5 and SiO2. The specimen sintered at 1,400℃ showed the maximum sintered density of 4.93 g/cm3. When the sintering temperature increased, the electrical conductivities increased, the activation energy decreased and the values were 7.83×10−4 S/cm, 1.61 eV at 600℃, respectively.

Sintering and grain growth in binary forsterite(Mg$_2$SiO$_4$)/spinel (MgAl$_2$O$_4$) system

  • Kim, Sungjin;Han, Young-Hwan;Cho, Kyeong-Sik
    • 한국결정성장학회지
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    • 제11권2호
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    • pp.78-84
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    • 2001
  • The binary forsterite($Mg_2SiO_4$)/spinel ($MgAl_2O_4$) system, a possible refractory for industrial applications, is investigated for their density and grain growth the same firing conditions as the each component material between $1400^{\circ}C$ and $1700^{\circ}C$ ($1650^{\circ}C$). The forsterite grain growth exponent is established to be equal to 5 for all compositions within this binary system. Generally; the spinel addition to forsterite inhibited the forsterite grain growth. The activation energies for the forsterite grain growth of the eight compositions(weight ratio of forsterite/spinel) within the binary system are determined to be: 952$\pm$79(95/5), 363$\pm$37(90/10), 219$\pm$21(80/20), 220$\pm$44(70/30), 112$\pm$16(50/50), 112$\pm$23(30/70), 198$\pm$26(10/90), and 121$\pm$12(5/95) KJ/mol. The more forsterite is contained within the binary system, the higher value the activation energy for forsterite grain growth. It is considered that the forsterite grain growth at the higher forsterite compositions are more inhibited by spinel than that of the lower forsterite compositions.

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Effects of Microstructure on Thermoelectric Properties of $FeSi_2$

  • Park, Joon-Young;Song, Tae-Ho;Lee, Hong-Lim;Pai, Chul-Hoon
    • The Korean Journal of Ceramics
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    • 제2권1호
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    • pp.11-18
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    • 1996
  • The variation of electrical conductively and Seebeck coefficient of FeSi2 according to the density of the specimen has been observed over the temperature range 50 to $700^{\circ}C$. A conventional pressureless sintering method with various sintering time (0, 0.5, 1, 5h) at $1190^{\circ}C$ and/or various sintering temperatures(1160, 1175, 1190, $1200^{\circ}C$) for 2 h was carried out to prepare $FeSi_2$ specimens having various densities. The relationship between the electrical conductivity and Seebeck coefficient was investigated after two steps of annealing (at $865^{\circ}C$ and then $800^{\circ}C$ for total 160h) and thermoelectric measurement. The electrical conductivity for the specimens showed a typical tendency of semiconductor, the average activation energy of which in the intrinsic region (above $300^{\circ}C$) was observed approximately as 0.452 eV, and increased slightly with density. On the other hand, the specimen of the lower density showed the higher value of Seebeck coefficient in the intrinsic region. As the temperature fell into the non-degenerate region, the highly densified specimen which had relatively little residual metal phase showed the higher value of Seeback coefficient. The power factor of all specimens showed the optimum value at $200^{\circ}C$. However, the power factor of the specimen of the lower density increased again from $400^{\circ}C$ and that of the higher dense specimen increased from $500^{\circ}C$. The power factor was more affected by Seebeck coefficient than electrical conductivity over all temperature range.

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ZnO-Zn2BiVO6-Co3O4-Cr2O3-CaCO3 바리스터 내의 결정결함과 입계특성 (Crystal Defects and Grain Boundary Properties in ZnO-Zn2BiVO6-Co3O4-Cr2O3-CaCO3 Varistor)

  • 홍연우;하만진
    • 한국전기전자재료학회논문지
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    • 제32권4호
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    • pp.276-280
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    • 2019
  • In this study, we investigated the crystal defects and grain boundary properties in a ZZCCC ($ZnO-Zn_2BiVO_6-Co_3O_4-Cr_2O_3-CaCO_3$) varistor, with the liquid-phase sintering aid $Zn_2BiVO_6$ developed by our laboratory. The ZZCCC varistor sintered at $1,200^{\circ}C$ exhibited excellent nonlinear current-voltage characteristics (${\alpha}=63$), with oxygen vacancy ($V_o^*$ ; 0.35 eV) as a main defect, and an apparent activation energy of 1.1 eV with an electrically single grain boundary. Therefore, among the various additives to improve the electrical properties of ZnO varistors, if $Zn_2BiVO_6$ is used as a liquid phase sintering aid, it will be ideal to use Co for the oxygen vacancy and Ca for the electrically single grain boundary. This will allow the good properties of ZnO varistors to be maintained up to high sintering temperatures.

가열이력 제어에 의한 $Si_3N_4$ 미분말 시편의 급속가열 (Rapid Heating of Ultrafine $Si_3N_4$ Powder Compacts under the Controlled Thermograms)

  • 이형직
    • 한국세라믹학회지
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    • 제30권3호
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    • pp.181-188
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    • 1993
  • The sintering and renitridation behaviors of ultrafine Si3N4 powder compacts, which were heavily oxidized and/or free-Si rich, were investigated with particular attentiion to microstructures. The specimens were heated without restoring to additives and pressure by controlling heating process attained a Xe image apparatus. The effect of particle size, free-Si contents, decomposition and renitridation, were investigated. When fired to 1$650^{\circ}C$ within 15 sec and then immediately held at 135$0^{\circ}C$ for 10min N2 atmosphere, significant densification took place in the limited region, in addition to decreasing oxygen contents to less than 0.3wt%. On the other hand, specimens decomposed due to overheating at the initial stage were rapidly renitridated at the relatively lower temperature of the holding stage. And, then, the activation energy for the renitridation was calculated to be 49kcal/mole.

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불순물을 첨가한 $MgB_4O_7$ 열형광체의 물리적 특성에 관한 연구 (A Study on the Physical Properties of Impurity Doped $MgB_4O_7$ Porsphors)

  • 김영국;손인호;채건식;이수대;설정식;노경석;송재흥;이상윤;도시홍
    • 한국재료학회지
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    • 제8권2호
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    • pp.173-178
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    • 1998
  • $MgB_4O_7$ 열형광체의 활성체는 란탄계 금속인 Tb, Tm, Dy, La, Ho 및 Nd를 첨가하여 $580^{\circ}C$의 Ar 분위기에서 2시간동안 소결하여 제작하였다. 활성화에너지와 glow 곡선의 주 Peak의 세기는 peak shape법과 초기상승법의 두방법에 의해 결정했으며, 최적활성에너지는 $0.76\pm0.02eV$(Tm 첨가시), $0.94\pm0.03eV$(Tm 첨가시) 및 $0.72\pm0.02eV$(Dy 첨가시)였다. 이들 열형광체들은 저 에너지 X-선에 대해 매우 높은 감도를 나타냈으므로 방사선 센서 소자로 개발하기 위한 기초자료가 될 것으로 생각된다.

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$Fe_{1+x}V_{2-x}O_4$ Spinel의 부성저항특성 (Negative Resistance Characteristics of $Fe_{1+x}V_{2-x}O_4$ Spinels)

  • 이길식;손병기;이종덕
    • 대한전자공학회논문지
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    • 제14권3호
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    • pp.25-31
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    • 1977
  • Fe O 와 V O 를 적당한 mole비로 혼합하여 H -CO 분위기 중 1,100℃에서 10시간씩 5∼6회 반복소성하여 Fe V O Spinel을 제조하였다. 제조된 시편의 온도에 대한 저항률을 측정하고 이로부터 활성화에너지를 구해서 시편의 도전기구를 고찰하고, x, 주위온도, 시편의 두께 및 인가전압 상승률에 대한 I-V 특성곡선을 얻어서 부성저항 발생기구의 해명을 시도하였다. Fe V -O spinel의 도전은 주로 B자리의 Fe 와 F 사이의 전자 hopping에 기인되며, 부성저항은 filament형의 통전로에 기인되는 열적현상이라 생각된다.

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동결주조로 성형한 La2O3가 첨가된 Al2O3 다공체의 소결 중 입자성장 거동 (Grain growth behavior of porous Al2O3 with addition of La2O3 prepared via freeze-casting)

  • 김성현;우종원;전상채
    • 한국결정성장학회지
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    • 제32권6호
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    • pp.231-238
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    • 2022
  • Al2O3 다공체는 필터 및 촉매 담체 등으로 활용되며 그 기능성과 내구성을 확보하기 위해서는 다공성 구조의 기계적 강도가 중요하다. 소결 중 치밀화 및 입자성장을 유리하게 제어하는 것이 기계적 강도 향상에 필수적이며, 본 연구에서는 그 일환으로 La을 첨가하여 동결주조로 성형된 Al2O3 다공체의 입자성장 양상을 분석하였다. 즉, 250 ppm의 La을 첨가한 계에서 1400℃에서 1600℃에 이르는 온도 범위 내에서 소결 시간 및 온도에 대한 평균입도 변화를 관찰하여 Gtn-G0n = kt 관계로부터 exponent(n 값)은 3으로, k = k0exp(-Ea/RT)로부터 입자성장에 대한 활성화 에너지(Ea)는 489.09 kJ/mol로 각각 계산되었다. 이러한 결과는 입자성장에 대한 La의 첨가 효과를 나타내며, La이 Al2O3의 입계 이동속도를 늦춰 입자성장의 억제에 효과가 있음을 방증하므로 기계적 강도에 이롭다. 한편, 향후 원료 분말에 함께 포함되어 있는 미량의 불순물 작용을 관찰하면 La의 기여를 명확히 구분할 수 있으며, 이러한 접근은 향후 다공성 Al2O3에서 입자성장을 제어하는데 사용될 수 있는 첨가제를 선택하는 데 유용하게 사용될 수 있다.

Influence of Ga Content on the Ionic Conductivity of Li1+XGaXTi2-X(PO4)3 Solid-State Electrolyte Synthesized by the Sol-Gel Method

  • Seong-Jin Cho;Jeong-Hwan Song
    • 한국재료학회지
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    • 제34권4호
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    • pp.185-193
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    • 2024
  • In this study, NASICON-type Li1+XGaXTi2-X(PO4)3 (x = 0.1, 0.3 and 0.4) solid-state electrolytes for all-solid-state batteries were synthesized through the sol-gel method. In addition, the influence on the ion conductivity of solid-state electrolytes when partially substituted for Ti4+ (0.61Å) site to Ga3+ (0.62Å) of trivalent cations was investigated. The obtained precursor was heat treated at 450 ℃, and a single crystalline phase of Li1+XGaXTi2-X(PO4)3 systems was obtained at a calcination temperature above 650 ℃. Additionally, the calcinated powders were pelletized and sintered at temperatures from 800 ℃ to 1,000 ℃ at 100 ℃ intervals. The synthesized powder and sintered bodies of Li1+XGaXTi2-X(PO4)3 were characterized using TG-DTA, XRD, XPS and FE-SEM. The ionic conduction properties as solid-state electrolytes were investigated by AC impedance. As a result, Li1+XGaXTi2-X(PO4)3 was successfully produced in all cases. However, a GaPO4 impurity was formed due to the high sintering temperatures and high Ga content. The crystallinity of Li1+XGaXTi2-X(PO4)3 increased with the sintering temperature as evidenced by FE-SEM observations, which demonstrated that the edges of the larger cube-shaped grains become sharper with increases in the sintering temperature. In samples with high sintering temperatures at 1,000 ℃ and high Ga content above 0.3, coarsening of grains occurred. This resulted in the formation of many grain boundaries, leading to low sinterability. These two factors, the impurity and grain boundary, have an enormous impact on the properties of Li1+XGaXTi2-X(PO4)3. The Li1.3Ga0.3Ti1.7(PO4)3 pellet sintered at 900 ℃ was denser than those sintered at other conditions, showing the highest total ion conductivity of 7.66 × 10-5 S/cm at room temperature. The total activation energy of Li-ion transport for the Li1.3Ga0.3Ti1.7(PO4)3 solid-state electrolyte was estimated to be as low as 0.36 eV. Although the Li1+XGaXTi2-X(PO4)3 sintered at 1,000 ℃ had a relatively high apparent density, it had less total ionic conductivity due to an increase in the grain-boundary resistance with coarse grains.

중·저온 영역 SOFC용 고체 전해질로의 응용을 위한 Bi가 첨가된 아파타이트형 란타늄 실리케이트의 전기적 특성 (Electrical Properties of Bi-doped Apatite-type Lanthanum Silicates Materials for SOFCs)

  • 김대영;정광호;이성갑
    • 한국전기전자재료학회논문지
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    • 제25권6호
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    • pp.486-490
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    • 2012
  • $La_{7.33}Bi_2(SiO_4)_6O_2$ specimens were fabricated by standard solid-state synthesis route for solid oxide electrolytes. The calcined powders exhibited uniform particles with a mean particle size of about $28{\mu}m$. The room-temperature structure of $La_{7.33}Bi_2(SiO_4)_6O_2$ specimens was analyzed as hexagonal, space group P63 or P63/m, and the unit cell volume increased with increase a sintering temperature. The specimens sintered at $1,175^{\circ}C$ showed X-ray patterns of homogeneous apatite single phase without the second phase such as $La_2Si_2O_7$ and $La_2SiO_5$. The specimen sintered at $1,175^{\circ}C$ showed the maximum sintered density of 5.49 $g/cm^3$. Increasing the sintering temperature, total conductivities increased, activation energy decreased and the values were $1.98{\times}10^{-5}Scm-1$ and 1.23 eV, respectively.