• 제목/요약/키워드: doping state

검색결과 250건 처리시간 0.026초

Active Reaction Sites and Oxygen Reduction Kinetics on $La_1_{-x}Sr_xMnO_{3+\delta}$(x=0.1-0.4)/YSZ (Yttria-Stabilized Zirconia) Electrodes for Solid Oxide Fuel Cells

  • Lee, Hee Y.;Cho, Woo S.;오승모
    • Bulletin of the Korean Chemical Society
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    • 제19권6호
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    • pp.661-666
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    • 1998
  • Active reaction sites and electrochemical O2 reduction kinetics on La_{1-x}Sr_xMnO_{3+{\delta}} (x=0.1-0.4)/YSZ (yttria-stabilized zirconia) electrodes are investigated in the temperature range of 700-900 ℃ at $Po_2=10^{-3}$-0.21 atm. Results of the steady-state polarization measurements, which are formulated into the Butler-Volmer formalism to extract transfer coefficient values, lead us to conclude that the two-electron charge transfer step to atomically adsorbed oxygen is rate-limiting. The same conclusion is drawn from the $Po_2$-dependent ac impedance measurements, where the exponent m in the relationship of $I_o$ (exchange current density) ∝ $P_{o_{2}}^m$ is analyzed. Chemical analysis is performed on the quenched Mn perovskites to estimate their oxygen stoichiometry factors (δ) at the operating temperature (700-900 ℃). Here, the observed δ turns out to become smaller as both the Sr-doping contents (x) and the measured temperature increase. A comparison between the 8 values and cathodic activity of Mn perovskites reveals that the cathodic transfer coefficients $({\alpha}_c)$ for oxygen reduction reaction are inversely proportional to δ whereas the anodic ones $({\alpha}_a)$ show the opposite trend, reflecting that the surface oxygen vacancies on Mn perovskites actively participate in the $O_2$ reduction reaction. Among the samples of x= 0.1-0.4, the manganite with x=0.4 exhibits the smallest 8 value (even negative), and consistently this electrode shows the highest ${\alpha}_c$ and the best cathodic activity for the oxygen reduction reaction.

A first-principles theoretical investigation of the structural, electronic and magnetic properties of cubic thorium carbonitrides ThCxN(1-x)

  • Siddique, Muhammad;Rahman, Amin Ur;Iqbal, Azmat;Azam, Sikander
    • Nuclear Engineering and Technology
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    • 제51권5호
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    • pp.1373-1380
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    • 2019
  • Besides promising implications as fertile nuclear materials, thorium carbonitrides are of great interest owing to their peculiar physical and chemical properties, such as high density, high melting point, good thermal conductivity. This paper reports first-principles simulation results on the structural, electronic and magnetic properties of cubic thorium carbonitrides $ThC_xN_{(1-x)}$ (X = 0.03125, 0.0625, 0.09375, 0.125, 0.15625) employing formalism of density-functional-theory. For the simulation of physical properties, we incorporated full-potential linearized augmented plane-wave (FPLAPW) method while the exchange-correlation potential terms in Kohn-Sham Equation (KSE) are treated within Generalized-Gradient-Approximation (GGA) in conjunction with Perdew-Bruke-Ernzerhof (PBE) correction. The structural parameters were calculated by fitting total energy into the Murnaghan's equation of state. The lattice constants, bulk moduli, total energy, electronic band structure and spin magnetic moments of the compounds show dependence on the C/N concentration ratio. The electronic and magnetic properties have revealed non-magnetic but metallic character of the compounds. The main contribution to density of states at the Fermi level stems from the comparable spectral intensity of Th (6d+5f) and (C+N) 2p states. In comparison with spin magnetic moments of ThSb and ThBi calculated earlier with LDA+U approach, we observed an enhancement in the spin magnetic moments after carbon-doping into ThN monopnictide.

4인치 광점호 Thyristor의 제조 및 특성 분석에 대한 연구 (Fabrication and Characterization of 5000V class 4-inch Light Triggered Thyristor)

  • 조두형;원종일;유성욱;고상춘;박종문;이병하;배영석;구인수;박건식
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2019년도 전력전자학술대회
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    • pp.230-232
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    • 2019
  • Light Triggerd Thyristor (LTT)는 HVDC 및 산업용 스위치 등에 사용되는 대전력 반도체소자이다. 일반적인 Thyristor가 전기적 신호에 의해 trigger 되는 것과는 다르게 LTT는 광신호에 의해 동작하는 소자이다. 본 논문에서는 5,000V, 2,200A 급의 4인치 LTT 소자의 제작 및 전기적인 특성평가 결과를 기술하였다. 4인치 LTT의 구조적인 특징은 전면부 중앙에 광신호가 주입되는 수광부가 위치해 있으며 입력 전류 증폭을 위한 4-단계 증폭 게이트 (gate) 구조를 가지도록 설계하였다. $400{\Omega}{\cdot}cm$ 비저항을 갖는 1mm 두께의 n-형 실리콘 웨이퍼에 boron 이온주입과 열처리 공정으로 약 $30{\mu}m$ 깊이의 p-base를 형성하였으며, 고내압 저지를 위한 edge termination은 VLD (variable lateral doping) 기술을 적용하였다. 제작된 4인치 LTT는 6,500 V의 순방향 항복전압 ($V_{DRM}$) 특성을 나타내었으며, 100V의 어노드전압 ($V_A$)과 20 mA의 게이트전류 ($I_G$)에 의하여 thyristor가 trigger 됨을 확인하였다. 제작한 LTT 소자는 disk형 press-pack 패키지를 진행한 후, LTT의 수광부에 $10{\mu}s$, 50 mW의 900 nm 광 펄스를 조사하여 전류 특성을 평가하였다. LTT 패키지 샘플에 60 Hz 주파수의 광 펄스를 조사한 경우 2,460 A의 순방향 평균전류 ($I_T$)와 $336A/{\mu}s$의 반복전류상승기울기 (repetitive di/dt)에 안정적으로 동작함을 확인하였다. 또한, 펄스 전류 시험의 경우 61.6 kA의 최대 통전 전류 (ITSM, surge current)와 $1,050A/{\mu}s$의 펄스전류 상승 기울기 (di/dt of on-state pulse current)에도 LTT의 손상 없이 동작함을 확인하였다.

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Interdiffusion Studies of βNiAl Bond Coats: Understanding the Zr, Pt, and Al Migration Trends and Their Beneficial Effects

  • Chandio, Ali Dad;Haque, Nafisul;Shaikh, Asif Ahmed
    • 한국재료학회지
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    • 제31권8호
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    • pp.439-444
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    • 2021
  • The oxidation resistance of the diffusion aluminide bond coat (BC) is compromised largely by interdiffusion (ID) effects on coated turbine blades of aeroengines. The present study is designed to understand the influence of ID on βNiAl coatings or BC. In this regard, nickel substrate and CMSX-4 superalloy are deposited. In total, four sets of BCs are developed, i.e. pure βNiAl (on Ni substrate), simple βNiAl (on CMSX-4 substrate), Zr-βNiAl (on CMSX-4 substrate) and Pt-βNiAl (on CMSX-4 substrate). The main aim of this study is to understand the interdiffusion of Al, Zr and Pt during preparation and oxidation. In addition, the beneficial effects of both Zr and platinum are assessed. Pure βNiAl and simple βNiAl show Ni-out-diffusion, whereas for platinum inward diffusion to the substrate is noticed under vacuum treatment. Interestingly, Zr-βNiAl shows the least ID in all BCs and exhibit stability under both vacuum and oxidation treatments. However, its spallation resistance is slightly lower than that of Pt-βNiAl BC. All BCs show similar oxide growth trends, except for Zr-βNiAl, which exhibits two-stage oxidations, i.e. transient and steady-state. Moreover, it is suggested that the localized spallation in all BCs is caused by βNiAl - γ'-Ni3Al transformation.

리튬 이차전지의 양극 활물질 LiNi1-xMgxO2 (0≤x≤0.1)의 결정구조 및 전기화학적 특성 (Crystal Structures and Electrochemical Properties of LiNi1-xMgxO2 (0≤x≤0.1) for Cathode Materials of Secondary Lithium Batteries)

  • 김덕형;정연욱
    • 대한금속재료학회지
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    • 제48권3호
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    • pp.262-267
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    • 2010
  • $LiNi_{1-x}Mg_xO_2$(x=0, 0.025, 0.05, 0.075, 0.1) samples were synthesized by the solid-state reaction method. The crystal structure was analyzed by X-ray powder diffraction and Rietveld refinement. $LiNi_{1-x}Mg_xO_2$samples give single phases of hexagonal layered structures with a space group of R-3m. The calculated cation-anion distances and angles from the Rietveld refinement were changed with Mg contents in $LiNi_{1-x}Mg_xO_2$. The thicknesses of $NiO_2$ slabs were increased and the distances between the $NiO_2$ slabs were decreased with the increase in Mg contents in the samples. The electrical conductivities of sintered $LiNi_{1-x}Mg_xO_2$ samples were around $10^{-2}$ S/cm at room temperature. The electrochemical performances of $LiNi_{1-x}Mg_xO_2$were evaluated by coin cell test. Compared to $LiNiO_2$, $LiNi_{0.95}Mg_{0.05}O_2$ exhibited improved high-rate capability and cyclability due to the well-ordered layered structure by doping of Mg ion.

인이 도핑된 NiCo2O4 전극 제조 공정의 간소화를 통한 전극 특성의 변화 (Variations in electrode characteristics through simplification of phosphorus-doped NiCo2O4 electrode manufacturing process)

  • 이석희;차현진;박정환;손영국;황동현
    • 한국표면공학회지
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    • 제56권5호
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    • pp.299-308
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    • 2023
  • In this study, phosphorus (P)-doped nickel cobaltite (P-NiCo2O4) and nickel-cobalt layered double hydroxide (P-NiCo-LDH) were synthesized on nickel (Ni) foam as a conductive support using hydrothermal synthesis. The thermal properties, crystal structure, microscopic surface morphology, chemical distribution, electronic state of the constituent elements on the sample surface, and electrical properties of the synthesized P-NiCo2O4 and P-NiCo-LDH samples were analyzed using thermogravimetric analysis-differential scanning calorimetry (TGA-DSC), X-ray diffraction (XRD), field-emission scanning electron microscopy (FE-SEM), energy dispersive X-ray spectroscopy (EDS), X-ray photoelectron spectroscopy (XPS), cyclic voltammetry (CV), galvanostatic charge-discharge (GCD), and electrochemical impedance spectroscopy (EIS). The P-NiCo2O4 electrode exhibited a specific capacitance of 1,129 Fg-1 at a current density of 1 Ag-1, while the P-NiCo-LDH electrode displayed a specific capacitance of 1,012 Fg-1 at a current density of 1 Ag-1. When assessing capacity changes for 3,000 cycles, the P-NiCo2O4 electrode exhibited a capacity retention rate of 54%, whereas the P-NiCo-LDH electrode showed a capacity retention rate of 57%.

BaZrO3:Eu3+ 적색 형광체의 발광과 농도 소광 특성 (Luminescence and Concentration Quenching Properties of BaZrO3:Eu3+ Red-Emitting Phosphors)

  • 응웬티김난;조신호
    • 한국전기전자재료학회논문지
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    • 제37권3호
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    • pp.274-279
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    • 2024
  • Eu3+-doped BaZrO3 (BaZrO3:Eu3+) phosphor powders were prepared using a solid-state reaction by changing the molar concentration of Eu3+ within the range of 0.5 to 30 mol%. Irrespective of the molar concentration of Eu3+ ions, the crystal structures of all the phosphors were cubic. The excitation spectra of BaZrO3:Eu3+ phosphors consisted of an intense broad band centered at 277 nm in the range of 230~320 nm. The emission spectra were composed of a dominant orange band at 595 nm arising from the 5D07F1 magnetic dipole transition of Eu3+ and two weak emission bands centered at 574 and 615 nm, respectively. As the concentration of Eu3+ increased from 0.5 to 10 mol%, the intensities of all the emission bands gradually increased, approached maxima at 10 mol% of Eu3+ ions, and then showed a decreasing tendency with further increase in the Eu3+ ions due to the concentration quenching. The critical distance between neighboring Eu3+ ions for concentration quenching was calculated to be 11.21 Å, indicating that dipole-dipole interaction was the main mechanism of concentration quenching of BaZrO3:Eu3+ phosphors. The results suggest that the orange emission intensity can be modulated by doping the appropriate concentration of Eu3+ ions.

Li1+xFexTi2-x(PO4)3-y(BO3)y 계 유리 전해질에서 Fe 및 BO3 치환 효과 (Effect of Fe and BO3 Substitution in Li1+xFexTi2-x(PO4)3-y(BO3)y Glass Electrolytes)

  • 최병현;전형탁;이은정;황해진
    • 전기화학회지
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    • 제24권3호
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    • pp.52-64
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    • 2021
  • Li1+xFexTi2-x(PO4)3-y(BO3)y (x = 0.2, 0.5)계 유리에서 Fe doping과 BO3 치환이 유리 또는 결정화유리(glass-ceramics) 전해질의 구조적, 열적 및 전기적 특성에 미치는 영향을 조사하였다. 또한, Li1.5Fe0.5Ti1.5(BO3)3 유리분말을 소결하고, 소결 온도에 따른 결정상과 이온전도도 영향도 검토하였다. Li1+xFexTi2-x(PO4)3-y(BO3)y 유리에서 Fe2+ 및 Fe3+ 이온은 network modifier로서 FeO6 팔면체를 형성하거나 network former로서 유리망목구조에 들어가 FeO4 유사 사면체를 형성하면서 유리의 구조를 변화시키는 것으로 확인되었다. 한편, BO3는 BO3 또는 BO4 그룹을 형성하였는데, BO3 치환량이 작은 경우 boron은 (PB)O4 망목구조를 형성하지만, BO3 치환량이 증가하면 붕소이상현상(boric oxide anomaly)이 생겨나면서 BO4는 BO3로 변화하고 이로 인하여 비가교산소(non-bridging oxygen)가 증가하였다. BO3 치환은 유리전이온도와 결정화 온도를 낮추는 효과가 있으며, Fe 첨가량이 증가하면 Fe3+의 일부는 Fe2+로 환원되며, 유리전이온도와 연화온도를 낮아지게 하고 결정화온도를 높아지게 하는 것으로 확인되었다. Li1+xFexTi2-x(PO4)3-y(BO3)y (x = 0.2, 0.5) 유리에서 BO3 함량이 증가함에 따라 이온전도도는 증가하였으며, x = 0.2 및 0.5에서 각각 8.85×10-4 및 1.38×10-4S/cm의 이온전도도값을 나타내었다. 본 연구에서 얻어진 높은 이온전도도는 Fe3+의 산화상태 변화와 붕소이상현상에 의한 BO3 생성 및 이로 인한 비가교산소의 생성에 기인한 것으로 생각된다. Li1.5Fe0.5Ti1.5(BO3)3 유리를 800℃에서 소결한 결과 이온전도도가 급격히 저하되었는데 이는 결정화유리 분말이 고온에서 유리화되었기 때문으로 생각된다. 따라서 유리분말을 800℃에서 소결한 후, 다시 460℃에서 조핵하고, 600℃에서 결정성장을 시킨 결과, 이온전도도가 열처리전과 동등 수준으로 회복되는 것을 확인하였다.

Stuffed tridymite계 $SrAl_2$$O_4$ : $Eu^{2+}$ 형광체의 발광 및 장잔광특성에 미치는 $Dy_2$$O_3$의 영향 (Effects of $Dy_2$$O_3$ composition for the photoluminescence and long-phosphorescent characteristics of stuffed tridymite $SrAl_2$$O_4$ : $Eu^{2+}$ phosphors)

  • 이영기;김병규
    • 한국결정성장학회지
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    • 제11권2호
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    • pp.71-77
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    • 2001
  • 고상반응법에 의해 제조된 $SrAl_2$$O_4$ : $Eu^{2+}$,$Dy^{3+}$ 계 형광체에 $Dy_2$$O_3$의 농도를 0.0~9.5mol%까지 변화시켜, $Dy_2$$O_3$의 첨가량에 따른 결정특성과 장잔광 축광재료로서 가장 중요한 발광 및 장잔광 특성을 조사하였다. $SrAl_2$$O_4$ : $Eu^{2+}$,$Dy^{3+}$ 계 형광체는 $Dy_2$$O_3$의 농도에 관계없이 녹색의 520nm파장을 최대 발광파장으로 하는 발광스펙트럼을 나타내었고, 발광특성을 크게 저해하지 않는 $SrAl_2$$O_4$의 단일상을 얻기 위한 농도는 1.0mol%이하가 적절하였다. 또한 $SrAl_2$$O_4$ : $Eu^{2+}$,$Dy^{3+}$ 형광체의 잔광 강도는 $Dy_2$$O_3$의 농도에 무관하게 시간에 따라 모든 시료에서 지수 함수적으로 감소하나, $Dy_2$$O_3$의 농도가 1.0mol% 이하인 경우에 발광의 감쇠속도가 작은 뛰어난 장잔광특성을 나타내었다.

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염료감응형 광전기화학 물분해 전지용 Tri-branched tri-anchoring organic dye 개발 (Tri-branched tri-anchoring organic dye for Visible light-responsive dye-sensitized photoelectrochemical water-splitting cells)

  • 박정현;김재홍;안광순
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.87-87
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    • 2010
  • Photoelectrochemical (PEC) systems are promising methods of producing H2 gas using solar energy in an aqueous solution. The photoelectrochemical properties of numerous metal oxides have been studied. Among them, the PEC systems based on TiO2 have been extensively studied. However, the drawback of a PEC system with TiO2 is that only ultraviolet (UV) light can be absorbed because of its large band gap (3.2 - 3.4 eV). Two approaches have been introduced in order to use PEC cells in the visible light region. The first method includes doping impurities, such as nitrogen, into TiO2, and this technique has been extensively studied in an attempt to narrow the band gap. In comparison, research on the second method, which includes visible light water splitting in molecular photosystems, has been slow. Mallouk et al. recently developed electrochemical water-splitting cells using the Ru(II) complex as the visible light photosensitizer. the dye-sensitized PEC cell consisted of a dye-sensitized TiO2 layer, a Pt counter electrode, and an aqueous solution between them. Under a visible light (< 3 eV) illumination, only the dye molecule absorbed the light and became excited because TiO2 had the wide band gap. The light absorption of the dye was followed by the transfer of an electron from the excited state (S*) of the dye to the conduction band (CB) of TiO2 and its subsequent transfer to the transparent conducting oxide (TCO). The electrons moved through the wire to the Pt, where the water reduction (or H2 evolution) occurred. The oxidized dye molecules caused the water oxidation because their HOMO level was below the H2O/O2 level. Organic dyes have been developed as metal-free alternatives to the Ru(II) complexes because of their tunable optical and electronic properties and low-cost manufacturing. Recently, organic dye molecules containing multi-branched, multi-anchoring groups have received a great deal of interest. In this work, tri-branched tri-anchoring organic dyes (Dye 2) were designed and applied to visible light water-splitting cells based on dye-sensitized TiO2 electrodes. Dye 2 had a molecular structure containing one donor (D) and three acceptor (A) groups, and each ended with an anchoring functionality. In comparison, mono-anchoring dyes (Dye 1) were also synthesized. The PEC response of the Dye 2-sensitized TiO2 film was much better than the Dye 1-sensitized or unsensitized TiO2 films.

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