• 제목/요약/키워드: Interlayer material

검색결과 186건 처리시간 0.027초

Silicide Formation of Atomic Layer Deposition Co Using Ti and Ru Capping Layer

  • Yoon, Jae-Hong;Lee, Han-Bo-Ram;Gu, Gil-Ho;Park, Chan-Gyung;Kim, Hyung-Jun
    • 한국재료학회지
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    • 제22권4호
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    • pp.202-206
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    • 2012
  • $CoSi_2$ was formed through annealing of atomic layer deposition Co thin films. Co ALD was carried out using bis(N,N'-diisopropylacetamidinato) cobalt ($Co(iPr-AMD)_2$) as a precursor and $NH_3$ as a reactant; this reaction produced a highly conformal Co film with low resistivity ($50\;{\mu}{\Omega}cm$). To prevent oxygen contamination, $ex-situ$ sputtered Ti and $in-situ$ ALD Ru were used as capping layers, and the silicide formation prepared by rapid thermal annealing (RTA) was used for comparison. Ru ALD was carried out with (Dimethylcyclopendienyl)(Ethylcyclopentadienyl) Ruthenium ((DMPD)(EtCp)Ru) and $O_2$ as a precursor and reactant, respectively; the resulting material has good conformality of as much as 90% in structure of high aspect ratio. X-ray diffraction showed that $CoSi_2$ was in a poly-crystalline state and formed at over $800^{\circ}C$ of annealing temperature for both cases. To investigate the as-deposited and annealed sample with each capping layer, high resolution scanning transmission electron microscopy (STEM) was employed with electron energy loss spectroscopy (EELS). After annealing, in the case of the Ti capping layer, $CoSi_2$ about 40 nm thick was formed while the $SiO_x$ interlayer, which is the native oxide, became thinner due to oxygen scavenging property of Ti. Although Si diffusion toward the outside occurred in the Ru capping layer case, and the Ru layer was not as good as the sputtered Ti layer, in terms of the lack of scavenging oxygen, the Ru layer prepared by the ALD process, with high conformality, acted as a capping layer, resulting in the prevention of oxidation and the formation of $CoSi_2$.

분자배열된 4,4',4''-tris(N-(1-naphthyl)-N-phenylamino)-triphenylamine 박막 제조와 전기적 특성 (Formation and Current-voltage Characteristics of Molecularly-ordered 4,4',4''-tris(N-(1-naphthyl)-N-phenylamino)-triphenylamine film)

  • 강도순;최영선
    • 공업화학
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    • 제18권5호
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    • pp.506-510
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    • 2007
  • 전기적 특성을 가지는 4,4',4''-tris(N-(1-naphthyl)-N-phenylamino)-triphenylamine (1-TNATA)가 유기발광소자(OLED)에서 전극으로 사용되는 ITO (Indium Tin Oxide)와 홀 수송층(Hole Transport Layer, HTL) 사이에 박막으로 진공증착되었다. 분자배열이 잘 되어진 1-TNATA의 경우 ITO와 홀 수송층 사이의 계면에서 생기는 전하주입장벽을 줄임으로 소자의 안정성과 효율을 높여준다. 본 연구에서의 라만 스펙트라(Raman spectra) 분석 결과, 증착된 1-TNATA 박막의 열처리와 증착하는 동안 전자기장 처리에 의해서 박막이 집적되고 분자배열이 이루어짐을 확인하였다. 열처리를 한 경우 1-TNATA 박막으로의 전류 흐름이 25% 증가하였다. 또한, $110^{\circ}C$에서 열처리한 1-TNATA 박막으로 제조된 다층유기발광소자의 전원 효율과 발광효율이 향상되었다. 열처리한 박막이 전자기장으로 처리한 박막에 비해 높은 효율을 나타내었다.

Ag 코팅한 W-Ag 전기접점/Cu 모재간의 브레이징 접합 특성 (Brazing Adhesion Properties of Ag Coated W-Ag Electric Contact on the Cu Substrate)

  • 강현구;강윤성;이재성
    • 한국분말재료학회지
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    • 제13권1호
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    • pp.18-24
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    • 2006
  • The brazing adhesion properties of Ag coated W-Ag electric contact on the Cu substrate have been investigated in therms of microstructure, phase equilibrium and adhesion strength. Precoating of Ag layer ($3{\mu}m$ in thickness) on the $W-40\%Ag$ contact material was done by electro-plating method. Subsequently the brazing treatment was conducted by inserting BCuP-5 filler metal (Ag-Cu-P alloy) layer between Ag coated W-Ag and Cu substrate and annealing at $710^{\circ}C$ in $H_2$ atmosphere. The optimum brazing temperature of $710^{\circ}C$ was semi-empirically calculated on the basis of the Cu atomic diffusion profile in Ag layer of commercial electric contact produced by the same brazing process. As a mechanical test of the electric contact after brazing treatment the adhesion strength between the electric contact and Cu substrate was measured using Instron. The microstructure and phase equilibrium study revealed that the sound interlayer structure was formed by relatively low brazing treatment at $710^{\circ}C$. Thin Ag electro-plated layer precoated on the electric contact ($3{\mu}m$ in thickness) is thought to be enough for high adhesion strength arid sound microstructure in interface layer.

Calcium annealing approach to control of surface groups and formation of oxide in Ti3C2Tx MXene

  • Jung-Min Oh;Su Bin Choi;Taeheon Kim;Jikwang Chae;Hyeonsu Lim;Jae-Won Lim;In-Seok Seo;Jong-Woong Kim
    • Advances in nano research
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    • 제15권1호
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    • pp.1-13
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    • 2023
  • Ti3C2Tx MXene, a 2D material, is known to exhibit unique characteristics that are strongly dependent on surface termination groups. Here, we developed a novel annealing approach with Ca as a reducing agent to simultaneously remove F and O groups from the surface of multilayered MXene powder. Unlike H2 annealing that removes F effectively but has difficulty in removing O, annealing with Ca effectively removed both O and F. X-ray photoelectron spectroscopy (XPS) and energy dispersive X-ray spectroscopy revealed that the proposed approach effectively removed F and O from the MXene powder. The results of O/N analyses showed that the O concentration decreased by 57.5% (from 2.66 to 1.13 wt%). In addition, XPS fitting showed that the volume fraction of metal oxides (TiO2 and Al2O3) decreased, while surface termination groups (-O and -OH) were enhanced, which could increase the hydrophilic and adsorption properties of the MXene. These findings suggest that when F and O are removed from the MXene powder, the interlayer spacing of its lattice structure increases. The proposed treatment also resulted in an increase in the specific surface area (from 5.17 to 10.98 m2/g), with an increase in oxidation resistance temperature in air from ~436 to ~667 ℃. The benefits of this novel technology were verified by demonstrating the significantly improved cyclic charge-discharge characteristics of a lithium-ion battery with a Ca-treated MXene electrode.

Heavy-impact sound insulation performance according to the changes of dry flooring structure in wall structure

  • Cho, Jongwoo;Lee, Hyun-Soo;Park, Moonseo;Lim, Hohwan;Kim, Jagon
    • 국제학술발표논문집
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    • The 7th International Conference on Construction Engineering and Project Management Summit Forum on Sustainable Construction and Management
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    • pp.89-98
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    • 2017
  • The floor heating method generally uses a wet construction method including the installation of resilient material, lightweight foam concrete, heating piping, and finishing mortar. Such a wet construction method not only delays other internal finishing processes during curing period for two mortar pouring process, but also has a disadvantage that it is difficult to replace the floor heating layer when it deteriorated because it is integrated with the frame. Dry floor heating construction method can be a good alternative in that it can solve these defects. Conversely, when it applied to the wall structure that is vulnerable to the interlayer noise compared with the column-beam structure, the question about the heavy-impact sound(HIS) insulation performance is raised. Therefore, conventional dry floor heating method is hard to apply to the wall structure apartments. Therefore, for the purpose to improve the applicability of dry floor heating method in wall structure apartments, this study investigated the change of floor impact sound, especially HIS insulation performance which is one of the required performance for the floor structure. This study tried to examine whether the change of heavy-impact sound pressure level(SPL) shows a tendency at the significant level according to the shape and mass of the floor structure. Through filed experiments on wall structure apartment, this study confirmed that the form of the raised floor shows better HIS insulation performance than the fully-supported form. In addition, it was also confirmed that the HIS insulation performance increases with the mass on the upper part. Moreover, this study found the fact that a mass of about 30 kg/m2 or more should be placed on the upper structure to reduce the heavy-impact SPL according to the bang machine measuring method. Although this study has a limit due to insufficient experiment samples, if the accuracy of this study is increased, it will contribute to the diffusion of dry floor heating by setting the HIS insulation performance target and designing the dry floor heating structure that meets the target.

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목질 마감재 구성에 따른 주거용 건축물 부위별 열교 및 전열성능 분석 (Thermal Bridge and Heat Transfer Analysis for Each Part in Residential Building According to Construction of Wood-based Finishing Material)

  • 서정기;정수광;김수민
    • Journal of the Korean Wood Science and Technology
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    • 제45권3호
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    • pp.343-359
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    • 2017
  • 건축물에서 사용되는 에너지를 줄이기 위하여 다양한 연구 및 정책이 진행되고 있으나 건축물에서 구조재 및 실내 외 마감재로 폭넓게 사용되는 목재의 열적 특성에 관한 연구는 미미한 실정이다. 이에 따라, 본 연구는 목질재료와 비 목질재료의 전열성능을 분석하기 위하여 목질재료가 주로 이용되는 주거용 건축물을 대상으로 열성능이 취약한(열교 발생) 부위를 선정하고, 각 부위별로 구조재와 마감재의 구성에 따라 총 16 Case에 대해 전열성능 분석을 실시하였다. 전열 해석 시뮬레이션 도구는 ISO 10211의 계산 방법을 따르는 Physibel Trisco를 이용하였다. 해석 부위의 모델링 역시 ISO 10211에서 제시된 기준에 의해 실시하였으며, 경계 온도 조건은 에너지절약설계기준에 따라 실내온도 $20^{\circ}C$, 실외온도 $-11.3^{\circ}C$(서울 기준)로 설정하였다. 구조는 콘크리트구조와 비 목질재료마감, 콘크리트구조와 목질재료마감 그리고 목구조에 목질재료마감의 경우에 따라 구분하였다. 부위는 벽체, 지붕, 층간바닥 및 최하층 바닥 등으로 구분하여 시뮬레이션을 진행하였다. 결과로서, 콘크리트구조의 경우 형상적 원인에 의해, 목구조의 경우 형상적인 원인에 재료적 원인이 더해져 다발적으로 열교가 발생함을 확인할 수 있었다. 추가적으로 콘크리트구조에서는 단열재의 불연속 부위에서 구조적인 열교가 발생하고 목구조에서는 구조적인 열교와 이질재료의 적용 부위에서 재료적 원인에 의한 열교가 발생하는 것을 확인할 수 있었다. 또한 콘크리트 구조에 목질 실내마감재를 적용하였을 경우에는 벽체의 선형 열관류율 값이 감소하는 것을 확인할 수 있었다.

Development of Cobalt-free $La_xSr_{4-x}Fe_6O_{13}$ ($0{\leq}x{\leq}2$) Intergrowth Cathode Material for Solid Oxide Fuel Cells

  • 이승준;용석민;김동석;김도경
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.45.1-45.1
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    • 2011
  • Cobalt-free $La_xSr_{4-x}Fe_6O_{13}$ ($0{\leq}x{\leq}2$) oxide have been synthesized and investigated as a potential cathode material for solid oxide fuel cells (SOFCs). $Sr_4Fe_6O_{13}$ consists of alternating perovskite layers ($Sr_4Fe_2O_8$) containing iron cations in octahedral oxygen coordination and $Fe_4O_5$ layers where iron cations have 5-fold coordination of two types-square pyramids and trigonal bipyramids. Our preliminary electrochemical testes of pristine $Sr_4Fe_6O_{13}$ show a rather high area specific resistance ($0.47{\Omega}cm^2$ at $700^{\circ}C$) for ~20 ${\mu}m$ thick layers with CGO electrolyte. The electrochemical performances are improved by La addition up to x=1 ($La_1Sr_3Fe_6O_{13}$, $0.06{\Omega}cm^2$ at $700^{\circ}C$). In addition, thermal expansion coefficient (TEC) values of $La_1Sr_3Fe_6O_{13}$ specimen demonstrated $15.1{\times}10^{-6}\;^{\circ}C^{-1}$ in the range of 25-900$^{\circ}C$, which provides good thermal expansion compatibility with the CGO electrolyte. An electrolyte supported (300-${\mu}m$-thick) single-cell configuration of $La_1Sr_3Fe_6O_{13}$/CGO/Ni-CGO delivered a maximum power density of 584 $mWcm^{-2}$ at $700^{\circ}C$. In addition, an anode supported single cell by YSZ electrolyte (10-${\mu}m$-thick) with a porous CGO interlayer between the cathode and the electrolyte to avoid undesired interfacial reactions exhibited 1,517 $mWcm^{-2}$ at $800^{\circ}C$. The unique composition of $La_1Sr_3Fe_6O_{13}$ with low thermal expansion coefficient and higher electrochemical properties could be a good cathode candidate for intermediate temperature SOFCs with CGO and YSZ electrolyte.

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콘크리트포장 위 아스팔트 덧씌우기용 택코팅 재료의 접착강도특성 연구 (Investigation into Bonding Characteristics of Tack Coat Materials for Asphalt Overlay on Concrete Pavement)

  • 조문진
    • 한국도로학회논문집
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    • 제15권4호
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    • pp.85-94
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    • 2013
  • PURPOSES: The performance of tack coat, commonly used for layer interface bonding, is affected by application rate and curing time. In this study, bonding strength tests were performed according to the application rate and curing time of asphalt emulsion. Based on finding from this study, optimum application rates and curing times are proposed. METHODS: In order to investigate bonding characteristic of asphalt emulsion, tests were performed on both asphalt concrete pavement and portland concrete pavement. Also, asphalt emulsions were tested at the application rate of 0, 0.2, 0.4, 0.6, and $0.8{\ell}/m^2$ and at the curing time of 0, 0.5, 1, 2, and 24 hours. Pull-off test and shear bonding strength test, which commonly used for bonding strength measurement of asphalt emulsion, were adopted for this study. To assess field performance under different testing condition, asphalt emulsions were applied to in-service pavement. Throughout coefficient of determination analysis between material index properties from asphalt emulsion and mechanical response from bonding strength tests, performance correlativity was analyzed. RESULTS: Test results show that optimum application rate for asphalt overlay on asphalt concrete pavement (AOA) and asphalt overlay on concrete pavement (AOC) was $0.4{\sim}0.5{\ell}/m^2$ and $0.3{\sim}0.5{\ell}/m^2$, respectively. According to the curing time increment, tensile strength and shear strength of AOC were increased to 22~44% and 20~39%, respectively. AOA case also show strength increment in tensile strength (42%) and shear strength (9%). We tested the applicability of tack coat materials at the field sites, and our findings demonstrated that the bonding (for D and E) and rapid curing (for B, C, and D, E) performances were superior than others. Among material index properties, there was a high correlation between penetration ratio and bonding strength test result. CONCLUSIONS : Result show that interlayer bonding strength was affected by asphalt emulsion type, application rate and curing time. AOC required slightly higher application ($0.1{\ell}/m^2$) than AOA. Both AOA and AOC cases show higher strength at longer curing time. Up to 2hours of curing, rapid strength increments were observed, but strength increment ratio was decreased after 2hours of curing. From the observed correlation between penetration ratio and bonding strength, it is expected that penetration ratio can be used as one of important factors affecting bonding strength analysis.

열처리에 의한 Ti 기반 MXene 소재의 구조 변화와 전자파 간섭 차폐 특성에 관한 연구 (Study on Structural Changes and Electromagnetic Interference Shielding Properties of Ti-based MXene Materials by Heat Treatment)

  • 슈에한;경지수;우윤성
    • 마이크로전자및패키징학회지
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    • 제30권3호
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    • pp.111-118
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    • 2023
  • 높은 전기전도도와 우수한 기계적 강도, 열안정성을 가진 2차원 전이금속탄화물 또는 질화물인 MXene은 최근 가볍고 유연한 전자파 차폐 소재로 많은 주목을 받고 있다. 특히, Ti 기반의 Ti3C2Tx와 Ti2CTx는 방대한 MXene 계열 시스템에서 전기 전도성과 전자파 차폐 특성이 가장 우수한 것으로 보고되고 있다. 따라서, 본 연구에서는 Ti3AlC2와 Ti2AlC의 층간 금속 에칭과 원심 분리법을 통하여 합성된 Ti3C2Tx와 Ti2CTx 분산용액을 진공 여과법을 이용하여 수 마이크로 두께의 필름을 제작하였으며, 고온 열처리 후에 필름의 전기전도도 및 전자파 차폐 효율을 측정하였다. 그리고, X선 회절법과 광전자 분광법을 이용하여 열처리 후의 Ti3C2Tx와 Ti2CTx 필름의 구조적 변화와 전자파 차폐에 미치는 영향을 분석하였다. 본 연구의 결과를 바탕으로 향후 소형 및 웨어러블 전자기기에 적용하기 위한 매우 얇고 가벼운 우수한 성능의 MXene 기반 전자파 차폐 필름을 위한 최적 구조를 제안하고자 한다.

(NiFe/CoFe)/Cu/CoFe Spin-Valve 박막의 자기저항 특성 (Magnetoresistive of (NiFe/CoFe)/Cu/CoFe Spin-Valvec)

  • 오미영;이선영;이정미;김미양;이장로
    • 한국자기학회지
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    • 제7권5호
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    • pp.265-273
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    • 1997
  • 연자성 자유자성층과 피속박자성층을 각각 2중층 Ni$_{81}$fe$_{19}$/ $Co_{90}$ Fe$_{10}$$Co_{90}$ Fe$_{10}$로 하고, 반강자성 속박층을 NiO로 하는 NiFe/CoFe/Cu/CuFe/NiO 구조를 갖는 spin-valve 박막을 sputtering 방법으로 유리기판위에 제작하고, 자기저항비(MR), 자기장감응도(field sensitivity), 반강자성층과 피속박자성층사이의 교환결합 자기장(exchange coupling field), 자유자성층과 피속박자성층사이의 층간결합자기장(interlayer coupling field) 등의 비자성 사이층 Cu 두께, 자유자성층두께, 피속박자성층 두께 및 반강자성층 두께 의존성을 조사하였다. 2중층 자유자성층에 연자성 NiFe가 20 .angs. 이상 포함됨으로써 10 Oe의 보자력을 가져 연자성특성을 향상시키는 것을 확인할 수 있었다. Cu의 두께가 30 .angs. 일 때 극대 MR비를 가졌으며 두께증가에 따라 감소하는 경향을 보였다. 피속박자성층 CoFe의 두께가 35 .angs. 일 때 그대 MR비 6.3%를 나타내며 두께증가에 따라 감소하며 교환결합자기장도 CoFe 두께가 증가함에 따라 감소하였다. NiO 두께가 800 .angs. 일 때 극대 MR비를 보이며 교환결합자기장은 두께증가에 따라 50 Oe 정도로 포화되어 NiO가 반강자성 특성을 유지하기 위해서는 일정한 두께이상이 되어야 함을 알 수 있었다. 열처리온도 200 .deg. C 까지는 MR비 5.3%를 유지하다 이보다 높하지면 점점 감소하여 300 .deg. C에서도 약 3% 정도를 유지하여 열적 안정성이 향상되었다. 따라서 CoFe 합금을 사용하여 NiFe(40 .angs. )/CoFe(50 .angs. )/Cu(30 .angs. )/CoFe(35 .angs. )/NiO(800 .angs. ) 구조를 갖는 spin-valve 박막은 극대 MR비 6.3%, 유효자기장감응도 약 0.5(%/Oe)를 보여 spin-valve head 재료로 적합함을 알 수 있었다.다.다.다.

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