• Title/Summary/Keyword: 고온 안정성

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Feasibility Evaluation of Glass-ceramic Sealant for SOFC (SOFC용 결정화계 밀봉재 특성평가 및 단전지 실증평가)

  • Lee, InSung;Kim, YeongWoo;Park, YoungMin;Bae, HongYoul;Ahn, JinSoo;Kim, InTae
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.88.1-88.1
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    • 2011
  • SOFC는 사용되는 셀의 디자인에 따라 튜브형, 평판형으로 구분되어진다. 평판형의 경우에는 전해질 지지형(ESC), Anode 지지형(ASC) 및 금속 지지형(MSC)로 크게 나눌 수 있다. SOFC 스택은 이와 같은 셀과 밀봉재, 집전체, 분리판의 구성요소를 여러 장으로 적층하여 이루어진다. SOFC 발전시스템은 SOFC 스택과 EBOP, MBOP로 구성되는데, SOFC 발전시스템의 상용화를 위해 선행되어야 할 것은 스택의 안정적 출력 및 신뢰성 확보이다. 즉, 셀, 밀봉재, 분리판 및 집전체로 대변되는 구성요소들이 스택에 장착되었을 때 그 기능을 최대한 발휘하면서도 점진적 또는 급격한 품질저하가 발생되지 말아야 한다. 특히, 밀봉재의 경우 SOFC에 사용되는 연료와 공기의 혼합(Cross-over)을 방지하는 중요한 기능을 담당하고 있으며 여러 장 적층된 분리판의 전기적 단락을 방지해야 한다. 또한 SOFC의 특성상 $700^{\circ}C$ 이상의 고온에서 다른 구성요소와 화학적 반응이 없어야하고 열싸이클(Thermal cycle)을 견딜 수 있도록 충분한 기계적 강도가 보장되어야 하는 등 요구되는 품질기준이 엄격하다. SOFC의 밀봉재는 접합형(Brazing), 압착형(Compressive), 용융-고정형(Glass-ceramic)이 대표적으로 적용되고 있다. 이 중에서 Brazing 물질과 방법은 현재 활발히 연구가 수행 중에 있지만 범용적으로 사용되고 있지는 않은 상태이고 Compressive 밀봉재와 Glass-ceramic 밀봉재가 대면적 SOFC 스택에 사용되어 적용 가능성을 평가받고 있다. 본 연구에서는 SOFC 구성요소의 국산화를 추진하는 지경부과제의 결과물 중 (주)써모텍에서 개발한 Glass-ceramic 밀봉재(RC1) 단품에 대한 특성평가와 실제 단전지 평가를 통해 SOFC 스택 적용 가능성을 평가하였다. 밀봉재 단품에 대한 특성평가는 용융특성, 상분석, 열팽창계수 등의 물리적, 화학적 평가 외에 가스 누설 정도를 평가하는 기밀도 평가와 SOFC의 작동 온도인 $700^{\circ}C$와 상온 분위기를 주기적으로 인가하는 Thermal cycle 특성을 평가하였다. 셀을 한 장 사용하는 단전지(Unit cell) 평가는 RIST에서 자체 제작한 $100{\times}100mm^2$ 평판형 ASC 셀을 사용하여 수행하였으며, 밀봉재는 Dispensing 공정을 통해 구성되었다.

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나노입자 페이스트를 이용한 CuInSe2 태양전지 제작

  • Jo, Hyo-Jeong;Seong, Si-Jun;Park, Mi-Seon;Hwang, Dae-Gyu;Gang, Jin-Gyu;Kim, Dae-Hwan
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.412-412
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    • 2011
  • CI(G)S계 태양전지는 화합물 반도체로서, 우수한 광 전류 변환 효율을 보이며, 광조사 등에 의한 열화가 없어 유망한 태양전지로 인정받고 있다. CI(G)S계 태양전지를 구성하는 흡수층을 제조하는 방법은 진공 기반의 공증착법 및 스퍼터-셀렌화법이 대표적이며, 액상의 전구체 물질을 도포하고 이를 고온 열처리하는 용액공정법도 최근 많은 연구가 이루어지고 있다. 진공 증착법은 고효율의 흡수층을 제조할 수 있고 상용화에 적합한 방법이다. 그러나 고가의 진공 장비를 이용하는 진공증착법은 원가 절감 관점에서 한계를 지니고 있어, 미래의 저가 공정 실현을 위해 용액 기반 흡수층 제조법도 다양한 접근법으로 연구되고 있으며 현재까지는 진공공정에 비해 상대적으로 낮은 변환효율이 큰 문제점으로 인식되고 있다. 용액 공정에서 전구체 물질의 코팅법으로는 spray법, spin coating법, drop-casting법, doctor-blade법 등이 있으며, 이들 중 양산 공정에 실용화되기 가장 적합한 것으로 보이는 방법으로는, 화합물 나노입자 페이스트를 기재 상에 doctor blade 법으로 코팅한 후에 이를 열처리하여 흡수층을 제조하는 방법을 들 수 있다. 이러한 방법은 균일한 흡수층을 저비용으로 제조할 수 있는 장점은 있지만, 전구체로 사용하는 화합물 나노입자들이 화학적 및 열적으로 매우 안정한 물질이므로, 최종 흡수층에서 큰 결정을 얻기 어렵고, 그 결과 효율이 낮아지는 단점이 있다. 따라서, 치밀하고 조대한 grain 형성을 위하여 CISe 균일한 나노입자를 합성하고 셀레늄을 포함하는 용액을 추가로 도포하여 열처리 공정에서 Se의 손실을 막아 입자를 성장시키는 방법과 In-Se 균일한 나노입자를 합성한 후 Cu, Se이 포함된 용액을 도포하여 코어-쉘 (InSe/CuSe)을 제작하고 이를 Se 분위기하 열처리 하여 흡수층의 결정성을 증진시키고자 하였다. 또한 다양한 방법으로 제작한 CuInSe2 나노입자로 잉크를 제작하여 닥터블레이드 공정을 적용하여 박막을 제작하고 소자 적용성을 평가하였다.

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The Effect of Functionalized Organosilane Coupling Agent on the Adhesion Properties of 2 Layer Flexible Copper Clad Laminate (기능성 실란커플링제가 2-FCCL의 접착특성에 미치는 영향)

  • Park, Jin-Young;Lim, Jae-Phil;Kim, Yong-Seok;Jung, Hyun-Min;Lee, Jae-Heung;Ryu, Jong-Ho;Won, Jong-Chan
    • Polymer(Korea)
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    • v.33 no.6
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    • pp.525-529
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    • 2009
  • In order to manufacture 2-layer flexible copper clad laminate (FCCL) s having the excellent performance high adhesion properties between copper foil and polyimide film are required. Silane coupling agents with specific functional groups as an adhesion promoter are generally used to enhance the adhesion. In our study, we synthesized a novel silane coupling agent for increasing the adhesive property between copper layer and polyimide layer. The surface morphology of rolled copper foil, as a function of the concentrations of the coated silane coupling agent, was fully characterized. As fabricated 2-layer FCCL, we observed that adhesive properties were changed by the surface morphology and we confirmed that the novel silane coupling agent affects adhesive properties in FCCL with two types of poly (amic acid)s.

(1-x)$(Na_{0.5}K_{0.5})NbO_3-xLiNbO_3$ 무연 압전세라믹스의 첨가물질에 따른 전기적 특성 평가

  • U, Deok-Hyeon;Ryu, Seong-Rim;Yun, Man-Sun;Gwon, Sun-Yong
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.11a
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    • pp.260-260
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    • 2007
  • 강유전성 세라믹스 재료로써는 PZT계열의 세라믹재료가 널리 쓰이고 있다. 이는 우수한 유전 및 압전특성을 가지고 있으나, PbO을 다량 함유하고 있어 $1000^{\circ}C$이상에서 PbO가 급격하게 휘발되는 성질에 따라서 조성의 변동이 생겨 재현성이 어려우며 이를 방지하기 위하여 과잉 PbO를 첨가시키기 때문에 PbO휘발로 인한 강한 독성이 인체에 유해하다. 최근에는 Pb의 환경문제가 대두됨에 따라 이를 대체할 다른 물질의 개발이 활발하게 연구되고 있다. 대표적인 비납계 강유전 세라믹스인 $(Na_{0.5}K_{0.5})NbO_3$ ($d_{33}$ = 120 pC/N, Kp = 39%, Qm = 210, 이하 NKN라 표기) 조성은 $KNbO_3,\;NaNbO_3$ 상태도에 따라 순수한 NKN 세라믹스는 $1140^{\circ}C$에서 안정상을 가지나, 높은 온도로 인하여$Na_2O$$K_2O$가 쉽게 휘발됨에 따라 화학량 비의 변화가 생겨 이차 상을 형성하기도 한다. 따라서 본 연구에서는 $LiNbO_3$의 새로운 고용체를 추가시켜 기본 NKN조성에 압전성 및 고온에서의 상안정성을 향상시키고자 하였다. 최적 조성을 설계하기 위하여 (1-x)$(Na_{0.5}K_{0.5})NbO_3-xLiNbO_3$, x=(0,0.02,0.04,0.06,0.08)의 범위에서 조성을 변화시키면서 실험하였다. 시편 제작은 일반적인 세라믹스 소결 공정을 적용하였는데, $850^{\circ}C$에서 5시간 하소 후 $1080^{\circ}C$에서 2시간 소결하였다. 하소 및 소결 후에는 XRD분석을 통해 perovskite구조를 확인하였고, 미세구조 확인을 위해 주사전자현미경 (SEM)으로 관찰하였다. 압전특성을 평가하기 위해 압전 $d_{33}$-meter를 사용하였으며, impedance analyzer (HP 4194A)를 이용하여 전기적 특성을 측정하였다.

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Design Optimization of Capacitor-less DRAM using zero-temperature coefficient point (트랜지스터의 온도 계수를 고려한 커패시터리스 디램의 설계 최적화)

  • Kyung Hee Kim;Kyeong Min Kim;Yeong Hwan Kim;Jong Beom Im;Gyu Ho Choi;In Man Kang;Young Jun Yoon
    • Journal of IKEEE
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    • v.28 no.3
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    • pp.369-374
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    • 2024
  • This paper addresses the design optimization of capacitorless DRAM(one-transistor DRAM., 1T-DRAM), which has gained attention as a next-generation memory technology. To overcome the limitations of conventional capacitor-based DRAM, an asymmetric dual-gate structure is proposed to enhance retention time and overall performance. The zero-temperature coefficient (ZTC) point is set at 1.25 V to minimize performance degradation due to temperature variations. Current-voltage characteristics were analyzed at various temperatures (300K-400K), confirming stable memory operation at the ZTC point, even under temperature fluctuations. The proposed design demonstrates reliable operation at high temperatures, proving the potential for high-efficiency, highly reliable memory technology. As a result, the 1T-DRAM device can make a significant contribution to the development of next-generation memory devices.

Physico-Chemical Properties of Modified Rice Flour by Physical Modification (드럼건조에 의한 쌀가루의 특성)

  • Kum, Jun-Seok;Lee, Hyun-Yu;Shin, Myoung-Gon;Lee, Sang-Hyo;Kim, Kil-Hwan
    • Applied Biological Chemistry
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    • v.37 no.3
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    • pp.154-160
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    • 1994
  • Pregelitinized rice (PR), pregelitinized waxy rice (PWR), and pregelitinized rice flour (PRF) were evaluated for physico-chemical properties comparing with rice starch and acetylated potato starch. L value was decreased during drum drying. PFR had the highest value (P<0.05) for water absorption index and PWR had the highest value for water solubility index. Transmittance of gelitinized samples had drastically increased at $80{\sim}90^{\circ}C$. PWR had the highest value for apparent viscosity and rice samples had a steady apparent viscosity during heating at $90^{\circ}C$. Viscosity was decreased as pH decreased at room temperature and drastically decreased below pH 2. Rice starch and PR had no significant effect for change of pH. Change of viscosity had more effect for hot temp. than room temp.. Pregelitinized samples showed only second peak for DSC. PWR had the lowest value for degree of retrogradation and acetylated potato starch had the highest value for freeze-thaw-stability.

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Preparation and Characterization of Reduced Graphene Oxide with Carboxyl Groups-Gold Nanorod Nanocomposite with Improved Photothermal Effect (향상된 광열 효과를 갖는 카르복실화된 환원 그래핀옥사이드-골드나노막대 나노복합체의 제조 및 특성 분석)

  • Lee, Seunghwa;Kim, So Yeon
    • Applied Chemistry for Engineering
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    • v.32 no.3
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    • pp.312-319
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    • 2021
  • Photothermal therapy is a treatment that necrotizes selectively the abnormal cells, in particular cancer cells, which are more vulnerable to heat than normal cells, using the heat generated when irradiating light. In this study, we synthesized a reduced graphene oxide with carboxyl groups (CRGO)-gold nanorod (AuNR) nanocomposite for photothermal treatment. Graphene oxide (GO) was selectively reduced and exfoliated at high temperature to synthesize CRGO, and the length of AuNR was adjusted according to the amount of AgNO3, to synthesize AuNR with a strong absorption peak at 880 nm, as an ideal photothermal agent. It was determined through FT-IR, thermogravimetric and fluorescence analyses that more carboxyl groups were conjugated with CRGO over RGO. In addition, CRGO exhibited excellent stability in aqueous solutions compared to RGO due to the presence of carboxylic acid. The CRGO-AuNR nanocomposites fabricated by electrostatic interaction have an average size of ~317 nm with a narrow size distribution. It was confirmed that under radiation with a near-infrared 880 nm laser which has an excellent tissue transmittance, the photothermal effect of CRGO-AuNR nanocomposites was greater than that of AuNR due to the synergistic effect of the two photothermal agents, CRGO and AuNR. Furthermore, the results of cancer cell toxicity by photothermal effect revealed that CRGO-AuNR nanocomposites showed superb cytotoxic properties. Therefore, the CRGO-AuNR nanocomposites are expected to be applied to the field of anticancer photothermal therapy based on their stable dispersibility and improved photothermal effect.

Seasonal Mineral Nutrient Absorption Characteristics and Development of Optimum Nutrient Solution for Rose Substrate Culture in a Closed Hydroponic System (순환식 수경재배에서 재배시기별 장미의 무기이온 흡수특성과 적정 배양액 조성)

  • Yang, Eun-Young;Park, Keum-Soon;Oh, Jeong-Sim;Lee, Hye-Jin;Lee, Yong-Beom;Lee, Ju-Hyun
    • Journal of Bio-Environment Control
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    • v.18 no.4
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    • pp.354-362
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    • 2009
  • This study was performed to develop a suitable nutrient solution for standard rose substrate culture in a closed hydroponic system. 1/4, 1/2, 2/3 and 1 strength of the nutrient solution made by Japan National Institute of Vegetable and Tea Science (JNIVT) were supplied. The photosynthesis rate, quality and growth of cut flower were higher in the 1/2 and 2/3 strength of nutrient solution during high and low temperature period. Based on the above results, optimum nutrient solutions (UOS) were composed by nutrientwater (n/w) absorption ratio with 1/2S ($NO_{3^-}N$ 6.8, $NH_{4^-}N$ 0.7, $PO_{4^-}P$ 2.0, K 3.8, Ca 3.0, Mg 1.2, $SO_{4^-}S$ $1.2me{\cdot}L^{-1}$) at high temperature season and 2/3($NO_{3^-}N$ 9.7, $NH_{4^-}N$ 0.8, $PO_{4^-}P$ 2.2, K 5.0, Ca 3.9, Mg 1.5, $SO_{4^-}S$ $1.5me{\cdot}L^{-1}$) at low temperature season. The results of suitability examination showed that the EC level in newly composed nutrient solution (UOS) was more stable than other nutrient solutions due to its large amount of calcium and potassium. The growth of cut flower cultivated with UOS was higher than those of other nutrient solutions. Especially, the yield of cut flowers in UOS nutrient solution increased 1.4 times than that of other nutrient solution treatments. Consequently, the new nutrient solution investigated in this experiment was suitable for rose cultivation in a closed hydroponic system.

Acid Drainage and Damage Reduction Strategy in Construction Site: An Introduction (건설현장 산성배수의 발생현황 및 피해저감대책)

  • Kim, Jae-Gon
    • Economic and Environmental Geology
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    • v.40 no.5
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    • pp.651-660
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    • 2007
  • Acid drainage has been recognized as an environmental concern in abandoned mine sites for long time. Recently, the environmental and structural damage by acid drainage is a current issue in construction sites in Korea. Here, the author introduces the type of damages by acid drainage in construction sites and emphasizes the importance of geoscience discipline in solving the problem. Metasedimentary rock of Okcheon group, coal bed of Pyeongan group, Mesozoic volcanic rock. and Tertiary sedimentary and volcanic rocks are the major rock types with a high potential for acid drainage upon excavation in Korea. The acid drainage causes the acidification and heavy metal contamination of soil, surface water and groundwater, the reduction of slope stability, the corrosion of slope structure, the damage on plant growth, the damage on landscape and the deterioration of concrete and asphalt pavement. The countermeasure for acid drainage is the treatment of acid drainage and the prevention of acid drainage. The treatment of acid drainage can be classified into active and passive treatments depending on the degree of natural process in the treatment. Removal of oxidants, reduction of oxidant generation and encapsulation of sulfide are employed for the prevention of acid drainage generation.

Property and Microstructure Evolution of Nickel Silicides on Nano-thick Polycrystalline Silicon Substrates (나노급 다결정 실리콘 기판 위에 형성된 니켈실리사이드의 물성과 미세구조)

  • Kim, Jong-Ryul;Choi, Young-Youn;Song, Oh-Sung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.9 no.1
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    • pp.16-22
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    • 2008
  • We fabricated thermally-evaporated 10 nm-Ni/30 nm and 70 nm Poly-Si/200 nm-$SiO_2/Si$ structures to investigate the thermal stability of nickel silicides formed by rapid thermal annealing(RTA) of the temperature of $300{\sim}1100^{\circ}C$ for 40 seconds. We employed for a four-point tester, field emission scanning electron microscope(FE-SEM), transmission electron microscope(TEM), high resolution X-ray diffraction(HRIXRD), and scanning probe microscope(SPM) in order to examine the sheet resistance, in-plane microstructure, cross-sectional microstructure evolution, phase transformation, and surface roughness, respectively. The silicide on 30 nm polysilicon substrate was stable at temperature up to $900^{\circ}C$, while the one on 70 nm substrate showed the conventional $NiSi_2$ transformation temperature of $700^{\circ}C$. The HRXRD result also supported the existence of NiSi-phase up to $900^{\circ}C$ for the Ni silicide on the 30 nm polysilicon substrate. FE-SEM and TEM confirmed that 40 nm thick uniform silicide layer and island-like agglomerated silicide phase of $1{\mu}m$ pitch without residual polysilicon were formed on 30 nm polysilicon substrate at $700^{\circ}C\;and\;1000^{\circ}C$, respectively. All silicides were nonuniform and formed on top of the residual polysilicon for 70 nm polysilicon substrates. Through SPM analysis, we confirmed the surface roughness was below 17 nm, which implied the advantage on FUSI gate of CMOS process. Our results imply that we may tune the thermal stability of nickel monosilicide by reducing the height of polysilicon gate.