• Title/Summary/Keyword: TiO2 분말

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RF 스퍼터링법을 이용한 리튬이차전지용 Li[Li0.2Mn0.54Co0.13Ni0.13]O2 양극박막의 제조 및 전기적 특성

  • Im, Hae-Na;Gong, U-Yeon;Yun, Seok-Jin;Choe, Ji-Won
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.413-413
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    • 2011
  • 최근 전기, 전자, 반도체 산업의 발전으로 전 고상 박막리튬전지는 초소형, 초경량의 마이크로 소자의 구현을 위한 고밀도 에너지원으로 각광받고 있다. 현재 양극박막은 대부분LCO(LiCoO2)계열이 이용되고 있으나, 코발트는 높은 가격과 인체 유해성 뿐만 아니라 상대적으로 낮은 용량(~140 mAh/g)등의 단점을 갖고 있어 향후 보다 고용량의 양극박막이 요구된다. 3원계 양극활물질 LiMO2(M=Co,Ni,Mn,etc.)은 우수한 충방전 효율 과 열적 안정성 뿐 아니라 277mAh/g의 높은 이론용량을 갖고 있어 고용량 양극박막으로의 적용시 고용량 박막이차전지 제작이 가능하다. 본 연구에서는 전 고상 박막 전지의 구현을 위하여 RF 스퍼터링법을 사용하여 Li[Li0.2Mn0.54Co0.13Ni0.13]O2 박막을 증착하였다. Li/MnCoNi의 몰 비율을 변화시켜 높은 전기화학적 특성을 갖는 분말을 합성하여 제조한 타겟으로 Pt/TiO2/SiO2/Si 기판위에 RF 스퍼터법을 이용하여 박막을 성장시켰다. 박막 증착 시 가스의 비율은 Ar:O2=3:1로 하고 증착 압력의 조절(0.005~0.02 torr)을 통하여 박막의 두께와 표면 특성을 조절하며 성장시켰다. 또한 박막을 다양한 온도에서($400{\sim}550^{\circ}C$) 열처리하여 결정화도와 전기화학적 특성을 측정하였다. 증착 된 박막의 구조적 특성은 X-ray diffraction(XRD) 과 scanning electron microscopy(SEM)로 관찰되었다. 박막의 전기화학적 특성 평가를 위하여 Cyclic voltammatry를 측정하여 가역성의 정도를 확인하고 WBC3000 battery cycler를 이용한 half-cell 테스트를 통하여 박막의 용량을 평가하였다.

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Study on Brazing Properties of Metal/Ceramic Joints (금속/세라믹 결합부의 브레이징 특성에 관한 연구)

  • Lim Jae Kyoo;Seo Do Won;Kim Hyo Jin;Hoa Vu Cong
    • Proceedings of the KWS Conference
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    • v.43
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    • pp.109-111
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    • 2004
  • 20 vol.$\%$ SiC를 포함한 두 층간의 $Si_{3}N_{4}/SiC$ 나노 복합재료는$\alpha$ $-Si_3N_4$,13 nm 크기의 나노탄소 분말 그리고 $5\;wt$\%\;Y_2O_3$의 분말로 두 단계 소결을 통하여 제작된다. $Si_3N_4$ 입계 사이의 결합은 소결 후 변하지 않고 남은 compact와 $51\~62\%$의 기공으로 얻어진 표면적 사이의 반응에 의해 생성된다. 이 연구에서는 Ti 합금을 SiC 층에 브레이징을 이용하여 제작하고 기계적 특성을 연구하였다. 다양한 변형율과 결합물의 강도, 변형율 증가에 따른 층간 변화를 연구하였다. 층간 파괴 형태는 금속과 브레이징 합금 사이의 파괴, 세라믹과 브레이징 합금 사이의 파괴, 그리고 세라믹 내부에서의 파괴를 보였다.

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Electrochemical properties of ECD using Titanate nanotube (Titanate nanotube를 이용한 ECD의 전기화학적 특성연구)

  • Oh, Hyo-Jin;Lee, Nam-Hee;Lee, Dae-Girl;Yun, Yeong-Ung;Hwang, Jong-Sun;Kim, Sun-Jae
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.2119_2120
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    • 2009
  • 전압을 인가하였을 때 전계방향에 의해 가역적으로 색이 변화하는 현상을 전기변색(electrochromism)이라고 한다. 이러한 전기채색현상을 보이는 물질을 전기채색물질(electrochromism materials)이라고 하며, 전기채색 물질에 의한 소자를 전기채색소자(electrochromism device : ECD)라고 한다. 전기채색현상은 투과율(transmittance), 반사율(reflectance)의 가역적이며 가시적인 변화이고, 전기화학적인 산화환원 반응과 관련이 있다. 따라서 본 연구에서는 Titanate nanotube(TNT)를 제조하고 전기변색소자(ECD)에 응용하였다. SEM, XRD, UV-Vis등을 이용하여 재료학적 분석을 시행하였으며, 전기화학적 테스트로 cyclic voltammetry를 측정 하였다. 그 결과 TNT 분말은 직경 약 20~30 nm, 길이 약 500~600 nm 의 입자형상을 나타내었으며, X-선 회절시험결과 $H_2Ti_2O_5{\cdot}H_2O$의 층상구조를 나타내었다. 제조된 막은 FTO glass 위에 PEI/(TNT/TBAOH)$_{n-1}$/PDDA의 순으로 코팅되었다. 전기화학적 테스트를 위하여 2전극 시스템을 제작하였으며, 여러 종류의 액체 전해질을 제작하여 cycle voltammetry를 시행하였다. 그 결과, 각각의 전해질에서 "-"영역의 산화환원전위 피크가 뚜렷하게 나타났으며, 짙은 갈색으로의 채색현상을 나타냈다. 본 연구의 결과로서 TNT 박막을 이용한 ECD은 광조절 유리로서 뿐만 아니라, 여러 전기채색 디바이스에 응용될 것으로 사료된다.

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Improvement of Seawater Corrosion Resistance of Concrete Reinforcing Steel Using by Conductive Photocatalyst (전도성 광촉매를 이용한 콘크리트 철근의 염해 내구성 향상에 관한 연구)

  • Bae, Geun-Guk;Bae, Geun-Woo;Ahn, Yong-Sik
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.5 no.2
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    • pp.152-159
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    • 2017
  • In marine environment, the durability of concrete and reinforcing steel is known to be deteriorate by the permeation of chloride ion into concrete. In this study the conductive photocatalyst was used to improve the seawater corrosion resistance of the concrete and steel. Mortar and concrete samples were prepared by mixing with various amounts of conductive active carbon and photocatalytic powder($TiO_2$). The compressive strength of concrete was decreased with the increase of the amount of conductive carbon powders. The samples containing conductive carbon and photocatalytic powders showed the superior seawater corrosion resistance compared with the ordinary sample, which was verified by XRF analysis showing the concentration of chloride ion($Cl^-$) of mortars and concretes. The inhibitive effect of photocatalyst against chloride attack was discussed with the diffusion coefficient of chloride ion into mortar and concrete.

Seeding Effects on Phase Transformation in Diol-Based Sol-Gel Derived PZT Film (졸-겔 공정에 의해 Diol을 기반으로 제조된 PZT막 상전이에 대한 종자 영향)

  • An, Byung-Hun;Whang, Chin-Myung
    • Korean Journal of Materials Research
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    • v.9 no.12
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    • pp.1181-1187
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    • 1999
  • PZT(53/47) precursor 1M sols were prepared using a diol based Sol-Gel process, and thin films were deposited by spin coating onto Pt/Ti/$SiO_2$/Si substrates. With a single coating, final film thickness of aproximately 0.9${\mu}m $ was achieved from diol-based PZT sol. Since PZT crystallized in a ferroelectric perovskite phase from an intermediate nonferroelectric pyrochlore phase, the effects of the presence of perovskite PZT seeds on the phase transformation of PZT were investigated. Seeded PZT films were prepared from the seeded PZT 1M sols in which seeds with less than 0.2${\mu}m $ in size and 1wt% were dispersed in n-propanol before mixing with the PZT stock solution. The seeding effects were confirmed by the fact that the formation temperature of perovskite phase decreased by 50$^{\circ}C$ with less than 1wt% seeds.

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Formation of Nano-oxides on Porous Metallic Glass Compacts using Hydrothermal Synthesis (수열합성 공정을 이용한 금속 다공체의 나노 산화물 형성)

  • Park, H.J.;Kim, Y.S.;Hong, S.H.;Kim, J.T.;Cho, J.Y.;Lee, W.H.;Kim, Ki Buem
    • Journal of Powder Materials
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    • v.22 no.4
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    • pp.229-233
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    • 2015
  • Porous metallic glass compact (PMGC) are developed by electro-discharge sintering (EDS) process of gas atomized $Zr_{41.2}Ti_{13.8}Cu_{12.5}Ni_{10}Be_{22.5}$ metallic glass powder under of 0.2 kJ generated by a $450{\mu}F$ capacitor being charged to 0.94 kV. Functional iron-oxides are formed and growth on the surface of PMGCs via hydrothermal synthesis. It is carried out at $150^{\circ}C$ for 48hr with distilled water of 100 mL containing Fe ions of 0.18 g/L. Consequently, two types of iron oxides with different morphology which are disc-shaped $Fe_2O_3$ and needle-shaped $Fe_3O_4$ are successfully formed on the surface of the PMGCs. This finding suggests that PMGC witih hydrothermal technique can be attractive for the practical technology as a new area of structural and functional materials. And they provide a promising road map for using the metallic glasses as a potential functional application.

Characterization and Conversion Electron Mössbauer Spectroscopy of HoMn1-x-FexO3 Thin Films by Pulsed Laser Deposition (PLD를 이용한 HoMn1-x-FexO3 박막 제조 및 후방 산란형 뫼스바우어 분광 연구)

  • Choi, Dong-Hyeok;Shim, In-Bo;Kim, Chul-Sung
    • Journal of the Korean Magnetics Society
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    • v.17 no.1
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    • pp.18-21
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    • 2007
  • The hexagonal $HoMn_{1-x}-Fe_xO_3$(x=0.00, 0.05) thin films were prepared using pulsed laser deposition(PLD) method on $Pt/Ti/SiO_2/Si$ substrate. The microstructure and magnetic properties have been studied by x-ray diffraction(XRD), atomic force microscopy (AFH), scanning electron microscope(SEM:), x-ray photoelectron spectroscopy(XPS), and conversion electron $M\"{o}ssbauer$ spectroscopy(CEMS). From the analysis of the x-ray diffraction patterns, the crystal structure for all films was found to be a hexagonal($P6_3cm$), which was preferentially grown along(110) direction. The lattice constant $c_0$ of the film with x=0.05 was close to that of single crystal, whereas lattice constant $a_0$ with respect to single crystal shows a slight decrease. This difference of lattice parameters between film and single crystal was caused by the lattice mismatch between the film and $Pt/Ti/SiO_2/Si$ substrate. Conversion electron $M\"{o}ssbauer$ spectrum of $HoMn_{0.95}Fe_{0.05}O_3$ thin film shows an asymmetry doublet absorption ratio at room temperature, which is due to the oriented direction of crystallographic domains. This is corresponding with analysis of x-ray diffraction. The quadrupole splitting(${\Delta}E_Q$) at room temperature is found to be $1.62{\pm}0.01mm/s$. This large ${\Delta}E_Q$ was caused by asymmetry environment surrounding Fe ion.

Microstructural Evaluation and High Temperature Mechanical Properties of Ni-22Cr-18Fe-9Mo ODS Alloy (Ni-22Cr-18Fe-9Mo계 ODS 합금의 미세조직 및 고온인장 특성 평가)

  • Jeong, Seok-Hoan;Kang, Suk-Hoon;Han, Chang-Hee;Kim, Tae-Kyu;Kim, Do-Hyang;Jang, Jin-Sung
    • Journal of Powder Materials
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    • v.18 no.5
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    • pp.456-462
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    • 2011
  • Yttrium oxide is one of the most thermo-dynamically stable materials, so that it is generally used as a dispersoid in many kinds of dispersion strengthed alloys. In this study, a nickel-base superalloy is strengthened by dispersion of yttrium oxide particles. Elemental powders with the composition of Ni-22Cr-18Fe-9Mo were mechanically alloyed(M.A.) with 0.6 wt% $Y_2O_3$. The MA powders were then HIP(hot isotactic press)ed and hot rolled. Most oxide particles in Ni-22Cr-18Fe-9Mo base ODS alloy were found to be Y-Ti-O type. The oxide particles were uniformly dispersed in the matrix and also on the grain boundaries. Tensile test results show that the yield strength and ultimate tensile strength of ODS alloy specimens were 1.2~1.7 times higher than those of the conventional $Hastelloy^{TM}$ X(R), which has the same chemical compositions with ODS alloy specimens except the oxide particles.

High Temperature Oxidation Behavior of Fe-14Cr Ferritic Oxide Dispersion Strengthened Steels Manufactured by Mechanical Alloying Process (기계적 합금화 공정으로 제조된 Fe-14Cr Ferritic 산화물 분산 강화(ODS) 합금 강의 고온 산화 거동)

  • Kim, Young-Kyun;Park, Jong-Kwan;Kim, Hwi-Jun;Kong, Man-Sik;Lee, Kee-Ahn
    • Journal of Powder Materials
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    • v.24 no.2
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    • pp.133-140
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    • 2017
  • This study investigates the oxidation properties of Fe-14Cr ferritic oxide-dispersion-strengthened (ODS) steel at various high temperatures (900, 1000, and $1100^{\circ}C$ for 24 h). The initial microstructure shows that no clear structural change occurs even under high-temperature heat treatment, and the average measured grain size is 0.4 and $1.1{\mu}m$ for the as-fabricated and heat-treated specimens, respectively. Y-Ti-O nanoclusters 10-50 nm in size are observed. High-temperature oxidation results show that the weight increases by 0.27 and $0.29mg/cm^2$ for the as-fabricated and heat-treated ($900^{\circ}C$) specimens, and by 0.47 and $0.50mg/cm^2$ for the as-fabricated and heat-treated ($1000^{\circ}C$) specimens, respectively. Further, after 24 h oxidation tests, the weight increases by 56.50 and $100.60mg/cm^2$ for the as-fabricated and heat-treated ($1100^{\circ}C$) specimens, respectively; the latter increase is approximately 100 times higher than that at $1000^{\circ}C$. Observation of the surface after the oxidation test shows that $Cr_2O_3$ is the main oxide on a specimen tested at $1000^{\circ}C$, whereas $Fe_2O_3$ and $Fe_3O_4$ phases also form on a specimen tested at $1100^{\circ}C$, where the weight increases rapidly. The high-temperature oxidation behavior of Fe-14Cr ODS steel is confirmed to be dominated by changes in the $Cr_2O_3$ layer and generation of Fe-based oxides through evaporation.