• 제목/요약/키워드: 5 V Spinel

검색결과 80건 처리시간 0.021초

$WO_3$가 첨가된 ZNO 바리스터의 미세구조적, 전기적 특성 (A Microstructural and Electrical Properties of $WO_3$-Doped ZnO Varistors)

  • 정순철;박춘현;남춘우
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1998년도 추계학술대회 논문집
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    • pp.275-279
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    • 1998
  • The influence of $WO_3$ (0.5-4.0mol%) on the microstructural and electrical properties of ZnO varistors was investigated. The major part of a tungsten segregated to the nodal point. SEM, EDAX, and XRD analysis revealed that three phase, such as W-rich phase, Bi-rich phase, and spinel phase, coexist at the nodal point. The average grain size increased in the range of 15.5-29.9pm with increasing $WO_3$ content. This may be probably attributed to liquid phase formed by $WO_3$, $WO_3$ acted as promotion additive of grain growth. As $WO_3$ content increase, the varistor voltage greatly decreased in the range 186.82-35.87V/mm due to the increase of grain growth. The barrier height decreased in the range 1.93-0.42eV with increasing $WO_3$content.

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Surface-Modified Spinel LiNi0.5Mn1.5O4 for Li-Ion Batteries

  • Kim, Jongsoon;Kim, Hyungsub;Kang, Kisuk
    • 한국세라믹학회지
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    • 제55권1호
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    • pp.21-35
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    • 2018
  • Spinel $LiNi_{0.5}Mn_{1.5}O_4$ has received great attention as one of the most outstanding cathode materials for Li-ion batteries (LIBs) because of its high energy density resulting from the operating voltage of ~ 4.7 V (vs. $Li^+/Li$) based on the $Ni^{2+}/Ni^{4+}$ redox reaction. However, $LiNi_{0.5}Mn_{1.5}O_4$ is known to suffer from undesirable side reactions with the electrolyte at high voltage as well as Mn dissolution from the structure. These issues prevent the realization of the optimal electrochemical performance of $LiNi_{0.5}Mn_{1.5}O_4$. Extensive research has been conducted to overcome these issues. This review presents an overview of the various surface-modification methods available to improve the electrochemical properties of $LiNi_{0.5}Mn_{1.5}O_4$ and provides perspectives on further research aimed at the application of $LiNi_{0.5}Mn_{1.5}O_4$ as a cathode material in commercialized LIBs.

ZnO 바리스터의 미세구조제어와 전기적 특성 (Electrical Characteristics and Microstructure Control of Zinc Oxide Viaristors)

  • 김경남;한상목
    • 한국재료학회지
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    • 제1권2호
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    • pp.65-70
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    • 1991
  • $ZnO-Bi_2O_3-CoO-Sb_2O_3$$ZnO-Bi_2O_3-CoO-Sb_2O_3-Cr_2O_3$계에서 미세구조 변화 및 전기적 특성에 미치는 개재물의 영향을 조사하였다. 소결동안에 ZnO입자 성장은 스피넬 입자들에 의해 제어되었으며, 스피넬 입자들의 양의 증가에 의해 입자성장은 감소하였다. $Cr_2O_3(0.5mol\%)$의 첨가는 비직선성지수에는 큰 영향을 미치지 못하였으며 임계전압(breakdown voltage)을 증가시켰다. 계산에 의해 구한 장벽전압은 $ZnO-Bi_2O_3-CoO-Sb_2O_3$$ZnO-Bi_2O_3-CoO-Sb_2O_3-Cr_2O_3$ 계에서 각각 3.1V와 2.9V이었다.

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배전급 피뢰기(18kV, 5kA)용 ZnO 바리스터 소자 개발 (Development of ZnO Varistor for Distribution Surge Arrester (18kV, 5kA))

  • 박춘현;윤관준;조이곤;정세영;서형권
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 추계학술대회 논문집
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    • pp.212-216
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    • 2000
  • ZnO varistors for distribution surge arrester (18kV, 5kA) were developed and tested microstructure and electrical characteristics. Microstructure of ZnO varistor was consisted of ZnO grain, spinel phase and Bi-rich phase. Average grain size of ZnO varistor was $\mu\textrm{m}$ Reference voltage and lightning impulse residual voltage of ZnO varistor exhibited a good haracteristics above 5.5kV and below 11.56kV, respectively. Consequently, discharge capacity which is the most important characteristics of ZnO varistor for surge arrester exhibited excellent properties above 70kA at twice high-current impulse test. Moreover, variation rate of reference voltage and lightning impulse residual voltage showed below 5% and 2% after high-current impulse test, respectively. Leakage current and watt loss of ZnO varistor will not increase during accelerated aging test at stress condition, such as 3.213kV/$115^{\circ}C$/1000h.

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Structural Behavior of Mixed $LiMn_2O_4-LiNi_{1/3}Co_{1/3}Mn_{1/3}O_2$ Cathode in Li-ion Cells during Electrochemical Cycling

  • 윤원섭;이상우
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.5-5
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    • 2011
  • The research and development of hybrid electric vehicle (HEV), plug-in hybrid electric vehicle (PHEV) and electric vehicle (EV) are intensified due to the energy crisis and environmental concerns. In order to meet the challenging requirements of powering HEV, PHEV and EV, the current lithium battery technology needs to be significantly improved in terms of the cost, safety, power and energy density, as well as the calendar and cycle life. One new technology being developed is the utilization of composite cathode by mixing two different types of insertion compounds [e.g., spinel $LiMn_2O_4$ and layered $LiMO_2$ (M=Ni, Co, and Mn)]. Recently, some studies on mixing two different types of cathode materials to make a composite cathode have been reported, which were aimed at reducing cost and improving self-discharge. Numata et al. reported that when stored in a sealed can together with electrolyte at $80^{\circ}C$ for 10 days, the concentrations of both HF and $Mn^{2+}$ were lower in the can containing $LiMn_2O_4$ blended with $LiNi_{0.8}Co_{0.2}O_2$ than that containing $LiMn_2O_4$ only. That reports clearly showed that this blending technique can prevent the decline in capacity caused by cycling or storage at elevated temperatures. However, not much work has been reported on the charge-discharge characteristics and related structural phase transitions for these composite cathodes. In this presentation, we will report our in situ x-ray diffraction studies on this mixed composite cathode material during charge-discharge cycling. The mixed cathodes were incorporated into in situ XRD cells with a Li foil anode, a Celgard separator, and a 1M $LiPF_6$ electrolyte in a 1 : 1 EC : DMC solvent (LP 30 from EM Industries, Inc.). For in situ XRD cell, Mylar windows were used as has been described in detail elsewhere. All of these in situ XRD spectra were collected on beam line X18A at National Synchrotron Light Source (NSLS) at Brookhaven National Laboratory using two different detectors. One is a conventional scintillation detector with data collection at 0.02 degree in two theta angle for each step. The other is a wide angle position sensitive detector (PSD). The wavelengths used were 1.1950 ${\AA}$ for the scintillation detector and 0.9999 A for the PSD. The newly installed PSD at beam line X18A of NSLS can collect XRD patterns as short as a few minutes covering $90^{\circ}$ of two theta angles simultaneously with good signal to noise ratio. It significantly reduced the data collection time for each scan, giving us a great advantage in studying the phase transition in real time. The two theta angles of all the XRD spectra presented in this paper have been recalculated and converted to corresponding angles for ${\lambda}=1.54\;{\AA}$, which is the wavelength of conventional x-ray tube source with Cu-$k{\alpha}$ radiation, for easy comparison with data in other literatures. The structural changes of the composite cathode made by mixing spinel $LiMn_2O_4$ and layered $Li-Ni_{1/3}Co_{1/3}Mn_{1/3}O_2$ in 1 : 1 wt% in both Li-half and Li-ion cells during charge/discharge are studied by in situ XRD. During the first charge up to ~5.2 V vs. $Li/Li^+$, the in situ XRD spectra for the composite cathode in the Li-half cell track the structural changes of each component. At the early stage of charge, the lithium extraction takes place in the $LiNi_{1/3}Co_{1/3}Mn_{1/3}O_2$ component only. When the cell voltage reaches at ~4.0 V vs. $Li/Li^+$, lithium extraction from the spinel $LiMn_2O_4$ component starts and becomes the major contributor for the cell capacity due to the higher rate capability of $LiMn_2O_4$. When the voltage passed 4.3 V, the major structural changes are from the $LiNi_{1/3}Co_{1/3}Mn_{1/3}O_2$ component, while the $LiMn_2O_4$ component is almost unchanged. In the Li-ion cell using a MCMB anode and a composite cathode cycled between 2.5 V and 4.2 V, the structural changes are dominated by the spinel $LiMn_2O_4$ component, with much less changes in the layered $LiNi_{1/3}Co_{1/3}Mn_{1/3}O_2$ component, comparing with the Li-half cell results. These results give us valuable information about the structural changes relating to the contributions of each individual component to the cell capacity at certain charge/discharge state, which are helpful in designing and optimizing the composite cathode using spinel- and layered-type materials for Li-ion battery research. More detailed discussion will be presented at the meeting.

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역스피넬 Fe3O4 박막의 바나듐 도핑에 따르는 자기적 성질 변화 (Effects of Vanadium Doping on Magnetic Properties of Inverse Spinel Fe3O4 Thin Films)

  • 김광주;최승리;박영란;박재윤
    • 한국자기학회지
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    • 제16권1호
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    • pp.18-22
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    • 2006
  • 바나듐(V)도핑이 $Fe_3O_4$의 자기적 성질에 미치는 영향을 조사하기 위하여 졸-겔 방법을 이용하여 $V_xFe_{3-x}O_4$ 박막들을 제작하고, x-ray diffraction(XRD), x-ray photoelectron spectroscopy(XPS), conversion electron Mossbauer spectroscopy(CEMS), vibrating sample magnetometry(VSM) 등을 이용하여 그 구조적, 자기적 특성들을 측정 및 분석하였다. XRD 측정 결과에 따르면 $V_xFe_{3-x}O_4$ x=1.0까지 입방(cubic)구조를 유지하며, 그 격자 상수는 거의 변화하지 않았다. 바나듐의 2p 및 철의 2p 준위들에 대한 XPS 측정 및 분석 결과, 바나듐은 화합물 내에서 주로 +3가의 상태로 존재하며, 성분비 x가 증가함에 따라 +2가 이온의 농도가 증가함이 나타났다. CEMS측정 결과 $V^{3+}$이온들은 사면체 $Fe^{3+}$자리를 주로 치환하며, $Fe^{2+}$이온들은 팔면체 $Fe^{2+}$자리를 치환하는 것으로 나타났다. 박막들에 대한 상온에서의 VSM측정 결과, 바나듐을 작은 양 도핑 할 경우(x=0.14) $V_xFe_{3-x}O_4$의 포화자화량(saturation magnetization)은 $Fe_3O_4$ 비하여 증가함이 나타났으며, 다량 도핑 할 경우$(x\geq0.5) Fe_3O_4$에 비하여 점차적으로 감소함이 나타났다. $V_xFe_{3-x}O_4$의 보자력(coercivity)은 x의 증가에 따라 증가함이 나타났는데, $V^{2+}(d^3)$ 이온의 팔면체 자리 치환에 의한 비등방성의 증가에 기인하는 것으로 해석된다.

전철탑재형 직류피뢰기용 ZnO 바리스터의 개발 (A Development of ZnO Varistor for Railroad Vehicle d.c. Arrester)

  • 조이곤;박춘현;정세영;송태권;김석수
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2002년도 추계학술대회 논문집 Vol.15
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    • pp.552-556
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    • 2002
  • The microstructure and electrical characteristics of A~C's ZnO varistors fabricated according to variable sintering condition, which sintering temperature is $1130^{\circ}C$ and speeds of pusher are A: 2mm/min, B: 4mm/min, C: 6mm/min, respectively, were investigated. In the microstructure, A~C's ZnO varist-ors fabricated variable sintering condition was consisted of ZnO grain(ZnO), spinel phase$(Zn_{2.33}Sb_{0.67}O_4)$ Bi-rich $phase(Bi_{2}O_{3})$, wholly. Varistor voltage of A~C's ZnO varistors sintered at $1130^{\circ}C$ increased in order A < B < C's ZnO varistors. C's ZnO varistor exhibited good characteristics that nonlinear exponent is 31.70. Leakage current of A~C's ZnO varistors exhibited below 2mA at rated voltage. Lightning impulse residual voltage of A's ZnO varistor suited standard characteristics, which is 3.85kV at 2.5kA, 4.4kV at 5kA and 5.16kV at 10kA. After multi lightning impulse residual voltage test of A's ZnO varistor exhibited good discharge characteristics which ZnO varistor reveals no evidence of puncture, flashover, cracking in visual examination. After high current impulse test of A's ZnO varistor exhibited good discharge characteristics, which variation rate of residual voltage is 0.4% before and after test, and revealed no evidence.

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5V급 고전압 양극 LiNi0.5Mn1.5O4 Spinel의 제조와 전기화학적 특성에 관한 연구 (Electrochemical Characteristics of LiNi0.5Mn1.5O4 Spinel as 5 V Class Cathode Material for Lithium Secondary Batteries)

  • 전상훈;오시형;이병조;조원일;조병원
    • 전기화학회지
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    • 제8권4호
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    • pp.172-176
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    • 2005
  • 차세대 5V급 양극활물질로 각광받고 있는 $LiNi_{0.5}Mn_{1.5}O_4$는 기존의 $LiMn_2O_4$ spinel 물질의 $Mn^{3+}$$Ni^{2+}$으로 치환하여 5V 영역에서 $Ni^{2+}/Ni^{4+}$ 산화/환원 반응이 가능하게 한 물질이다. 기존의 $LiMn_2O_4$는 낮은 초기 용량과 충 방전에 따른 빠른 용량감소를 보이는 단점을 가지고 있어 이 문제를 극복하기 위해 Mn의 일부를 다른 금속으로 치환하여 $LiM_yMn_{2-y}O_4$ (M=Cr, Al, Ni, Fe, Co, Cu, Ca)을 만드는 방법이 활발히 연구되고 있다. 본 연구에서는 기계 화학적 합성법을 이용하여 합성한 $LiNi_{0.5}Mn_{1.5}O_4$의 전기화학적 특성에 대해 연구하였다. 이 물질은 기존의 $LiMn_2O_4$보다 에너지 밀도가 높으며 저가 및 친환경성 등으로 앞으로 HEV 등에서 그 활용성이 크게 기대된다. 볼밀을 이용하여 여러가지 조건(출발물질 조건, 볼밀조건, 열처리조건 등)에서 $LiNi_{0.5}Mn_{1.5}O_4$을 합성한 결과 기계화학적 방법으로는 $Ni^{2+}$$Mn^{3+}$를 완전히 치환하지 못하여 $4.0{\sim}4.1V$의 전압에서 $Mn^{3+}/Mn^{4+}$의 산화/환원과 관련된 peak가 발생하였다. Ni 원료 물질로써 수산화 물질을 사용하고 열처리 온도를 $800^{\circ}C$로 하였을 때 최상의 성능을 나타내었다.

Electrochemical Oxygen Evolution Reaction on NixFe3-xO4 (0 ≤ x ≤ 1.0) in Alkaline Medium at 25℃

  • Pankaj, Chauhan;Basant, Lal
    • Journal of Electrochemical Science and Technology
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    • 제13권4호
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    • pp.497-503
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    • 2022
  • Spinel ferrites (NixFe3-xO4; x = 0.25, 0.5, 0.75 and 1.0) have been prepared at 550℃ by egg white auto-combustion route using egg white at 550℃ and characterized by physicochemical (TGA, IR, XRD, and SEM) and electrochemical (CV and Tafel polarization) techniques. The presence of characteristic vibration peaks in FT-IR and reflection planes in XRD spectra confirmed the formation of spinel ferrites. The prepared oxides were transformed into oxide film on glassy carbon electrodes by coating oxide powder ink using the nafion solution and investigated their electrocatalytic performance for OER in an alkaline solution. The cyclic voltammograms of the oxide electrode did not show any redox peaks in oxygen overpotential regions. The iR-free Tafel polarization curves exhibited two Tafel slopes (b1 = 59-90 mV decade-1 and b2 = 92-124 mV decade-1) in lower and higher over potential regions, respectively. Ni-substitution in oxide matrix significantly improved the electrocatalytic activity for oxygen evolution reaction. Based on the current density for OER, the 0.75 mol Ni-substituted oxide electrode was found to be the most active electrode among the prepared oxides and showed the highest value of apparent current density (~9 mA cm-2 at 0.85 V) and lowest Tafel slope (59 mV decade-1). The OER on oxide electrodes occurred via the formation of chemisorbed intermediate on the active sites of the oxide electrode and follow the second-order mechanism.

전이금속 원소가 치환된 준강자성체 T0.2Fe2.8O4(T = V, Cr, Mn) 화합물의 광학적 성질 분석 (Analysis on Optical Properties of Transition-metal Substituted Ferromagnetic T0.2Fe2.8O4 (T = V, Cr, Mn) Compounds)

  • 김광주
    • 한국자기학회지
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    • 제21권2호
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    • pp.56-60
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    • 2011
  • 준강자성체(ferrimagnet) $Fe_3O_4$를 기반 물질로 하여 주기율표 상에서 Fe와 인접한 전이금속 원소 T(= V, Cr, Mn)가 도핑된 삼원화합물($T_{0.2}Fe_{2.8}O_4$) 박막 시료들을 제작하여 그 광학적 성질을 1~8 eV 범위 내에서 분광타원해석법(spectroscopic ellipsometry)을 이용하여 측정하고 $Fe_3O_4$에서의 결과와 비교하였다. V, Cr, Mn 도핑 시 선호되는 스피넬(spinel) 구조 상의 양이온 자리(site) 및 이온수(ionicity)와 연관된 전자구조 상의 변화에 근거하여 삼원화합물과 $Fe_3O_4$의 흡수 스펙트럼 차이의 원인을 분석하였다. $Fe_3O_4$ 및 전이금속 도핑된 화합물들에서 관측된 광학적 흡수 스펙트럼은 주로 Fe 이온의 d 전자가 관련된 이온 간의 전하이동전이(charge-transfer transition)에 의하여 발생하는 에너지 폭이 넓은 흡수구조들의 기여에 의한 것으로 해석된다. 또한, 흡수 스펙트럼에서 관측된 좁은 에너지 폭의 구조들은 사면체 자리에 존재하는 $Fe^{3+}(d^5)$ 이온 내의 d 전자들에 의한 결정장 전이(crystal-field transition)에 기인한 것으로 해석된다. 이와 같은 전이들과 관련된 전자상태들을 스핀편극된 $Fe_3O_4$ 전자구조를 토대로 기술하였다.