• 제목/요약/키워드: OER (oxygen evolution reaction)

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Fe 도핑된 β-Ni(OH)2 마이크로결정 합성과 산소발생반응 특성 (Synthesis of Fe-doped β-Ni(OH)2 microcrystals and their oxygen evolution reactions)

  • 박제홍;유시범;정승원;김병준;김강민;유정호
    • 한국결정성장학회지
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    • 제33권5호
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    • pp.196-201
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    • 2023
  • 수소에너지 생산을 위한 물분해 시스템의 효율을 향상시키기 위해서는, 수소발생반응 (HER)과 산소발생반응(OER) 각각에서 촉매로 인한 전기화학적 반응에서의 높은 과전압의 감소가 수반되어야 한다. 그 중에서도 전이금속 기반의 화합물(수산화물, 황화물 등)은 현재 상용되고 있는 백금 등의 귀금속을 대체할 촉매 재료로써 주목받고 있다. 본 연구에서는, 저렴한 금속 다공성 소재인 Ni foam을 지지체로 사용하고, 수열합성 공정을 통해 β-Ni(OH)2 마이크로결정을 합성하고자 하였다. 또한 전기화학적 특성을 향상시키기 위하여 Fe을 도핑하여 합성된 β-Ni(OH)2 마이크로 결정의 형상, 결정구조 및 물분해 특성의 변화를 관찰하였으며, 상용 수전해 시스템의 촉매로서의 적용가능성을 검토하였다.

알칼라인 수전해용 Ni-Fe 합금 전착 전극의 특성 (Characterization of Ni-Fe Alloy Electrodeposited Electrode for Alkaline Water Electrolysis)

  • 안다솔;배기광;박주식;김창희;강경수;조원철;조현석;김영호;정성욱
    • 한국수소및신에너지학회논문집
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    • 제27권6호
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    • pp.636-641
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    • 2016
  • Alkaline water electrolysis is commercial hydrogen production technology. It is possible to operate MW scale plant. Because It used non-precious metal for electrode. But It has relatively low current density and low efficiency. In this study, research objective is development of anode for alkaline water electrolysis with low cost, high corrosion resistance and high efficiency. Stainless steel 316L (SUS 316L) was selected for a substrate of electrode. To improve corrosion resistance of substrate, Nickel (Ni) layer was electrodeposited on SUS 316L. Ni-Fe alloy was electrodeposited on the passivated Ni layer as active catalyst for oxygen evolution reaction(OER). We optimized preparation condition of Ni-Fe alloy electrodeposition by changing current density, electrodeposition time and composition ratio of Ni-Fe electrodeposition bath. This electrodes were electrochemically evaluated by using Linear sweep voltammetry (LSV) and Cyclic voltammetry (CV). The Ni-Fe alloy (Ni : Fe = 1 : 1) showed best activity of OER. The optimized electrode decreased overpotential about 40% at $100mA/cm^2$ compared with Ni anode.

MOF-Derived FeCo-Based Layered Double Hydroxides for Oxygen Evolution Reaction

  • Fang Zheng;Mayur A. Gaikwad;Jin Hyeok Kim
    • 한국재료학회지
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    • 제33권10호
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    • pp.377-384
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    • 2023
  • Exploring earth-abundant, highly effective and stable electrocatalysts for electrochemical water splitting is urgent and essential to the development of hydrogen (H2) energy technology. Iron-cobalt layered double hydroxide (FeCo-LDH) has been widely used as an electrocatalystfor OER due to its facile synthesis, tunable components, and low cost. However, LDH synthesized by the traditional hydrothermal method tends to easily agglomerate, resulting in an unstable structure that can change or dissolve in an alkaline solution. Therefore, studying the real active phase is highly significant in the design of electrochemical electrode materials. Here, metal-organic frameworks (MOFs) are used as template precursors to derive FeCo-LDH from different iron sources. Iron salts with different anions have a significant impact on the morphology and charge transfer properties of the resulting materials. FeCo-LDH synthesized from iron sulfate solution (FeCo-LDH-SO4) exhibits a hybrid structure of nanosheets and nanowires, quite different from other electrocatalysts that were synthesized from iron chloride and iron nitrate solutions. The final FeCo-LDH-SO4 had an overpotential of 247 mV with a low Tafel-slope of 60.6 mV dec-1 at a current density of 10 mA cm-2 and delivered a long-term stability of 40 h for the OER. This work provides an innovative and feasible strategy to construct efficient electrocatalysts.

First Principles Study of spin polarization in Fe-doped monolayer C2N-h2D

  • Lee, Sang Yoon;Jeong, Geumbi
    • EDISON SW 활용 경진대회 논문집
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    • 제5회(2016년)
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    • pp.336-338
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    • 2016
  • Recent multifunctional two-dimensional material research has triggered huge interests in various modifications for substitution of atoms. Instead of novel metals used as the most popular catalysts, nonprecious transition metals are promising candidates for efficient oxidation-reduction transfers. The recent discovery of $Co@C_2N$ has an alternate possiblity as catalysts for the ORR(Oxygen Reduction Reaction) in DSSc(Dye Sensitized Solar Cell) and OER(Oxygen evolution cobalt oxides). Here we report spin-polarized DFT calculations of the structure doped Iron that is one of ferromagnetism atoms like Co to provide a basic desciption of the ferromagnetism of the elemental metals. The spin-density-funtional results present the most stable state energetically is when having pairwise up/down spin.

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아연-공기전지용 페롭스카이트 산화물 촉매의 산소환원반응 특성 (Characterization of LaCoO3 Perovskite Catalyst for Oxygen Reduction Reaction in Zn-air Rechargeable Batteries)

  • 선호정;조명연;안정철;엄승욱;박경세;심중표
    • 한국수소및신에너지학회논문집
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    • 제25권4호
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    • pp.436-442
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    • 2014
  • $LaCoO_3$ powders synthesized by Pechini process were pulverized by planetary ball-milling to decrease particle size and characterized as a catalyst in alkaline solution for oxygen reduction and evolution reaction (ORR & OER). The changes of physical properties, such as particle size distribution, surface area and electric conductivity, were analyzed as a function of ball-milling time. Also, the variations of the crystal structure and surface morphology of ball-milled powders were examined by X-ray diffraction (XRD) and scanning electron microscopy (SEM), respectively. The electrochemically catalytic activities of the intrinsic $LaCoO_3$ powders decreased with increasing ball-milling time, but their electrochemical performance as an electrode improved by the increase of the surface area of the powder.

마이크로전극에 의한 니켈수소전지용 수산화니켈 입자의 전기화학적 거동 (Electrochemical Behavior of a Nickel Hydroxide Particle for Ni-MH Battery by Microelectrode)

  • 김호성;오익현;이종호
    • 전기화학회지
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    • 제10권2호
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    • pp.145-149
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    • 2007
  • 본 논문은 마이크로전극 측정시스템을 사용하여 니켈수소전지의 전극 소재로 사용되고 있는 수산화니켈의 단일 입자에 대해 전기화학적 평가를 수행 하였다. 즉 Carbon fiber 마이크로전극을 수산화니켈 입자 한개 위에 전기적인 접촉을 이루도록 조정하고 전기화학적 평가를 수행하였다. Cyclic Voltammetry 실험 결과 수산화니켈의 산화 환원 반응과 산소 발생 반응(OER)이 명확하게 분리 되고 있음을 확인하였으며, 전위주사속도를 증가 시킬 경우 환원 전하량은 주사 속도에 의존하지 않고 거의 일정한 수치를 보여 주고 있으나, 산화 전하량은 환원 전하량 보다 크고 주사속도 구간에서 부반응인 산소발생이 증가하고 있음을 확인했다. 그리고 Calvanostat에 의한 정전류 충방전 실험의 결과 수산화니켈 단일 입자의 방전용량은 이론용량 289 mAh/g에 근접한 수치(약 250 mAh/g)를 보여 주었으며 또한 Potential Step에 의해 단일 입자내의 수소이온 확산계수($D_{app}=3{\sim}4{\times}10^{-9}\;cm^2/s$)가 얻어졌다.

Investigation of LiO2 Adsorption on LaB1-xB'xO3(001) for Li-Air Battery Applications: A Density Functional Theory Study

  • Kwon, Hyunguk;Han, Jeong Woo
    • 한국세라믹학회지
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    • 제53권3호
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    • pp.306-311
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    • 2016
  • Li-air batteries have received much attention due to their superior theoretical energy density. However, their sluggish kinetics on the cathode side is considered the main barrier to high performance. The rational design of electrode catalysts with high activity is therefore an important challenge. To solve this issue, we performed density functional theory (DFT) calculations to analyze the adsorption behavior of the $LiO_2$ molecule, which is considered to be a key intermediate in both the Li-oxygen reduction reaction (ORR) and the evolution reaction (OER). Specifically, to use the activity descriptor approach, the $LiO_2$ adsorption energy, which has previously been demonstrated to be a reliable descriptor of the cathode reaction in Li-air batteries, was calculated on $LaB_{1-x}B^{\prime}_xO_3$(001) (B, B' = Mn, Fe, Co, and Ni, x = 0.0, 0.5). Our fast screening results showed that $LaMnO_3$, $LaMn_{0.5}Fe_{0.5}O_3$, or $LaFeO_3$ would be good candidate catalysts. We believe that our results will provide a way to more efficiently develop new cathode materials for Li-air batteries.

알칼라인 수전해 산소 발생 반응을 위한 NiCo2O4/Ni foam 전극 제조 및 특성 평가 (Fabrication and Characterization of NiCo2O4/Ni Foam Electrode for Oxygen Evolution Reaction in Alkaline Water Splitting)

  • 권민솔;고재성;이예솔;이성민;유지수;이효원;송성호;이동주
    • 한국분말재료학회지
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    • 제29권5호
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    • pp.411-417
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    • 2022
  • Environmental issues such as global warming due to fossil fuel use are now major worldwide concerns, and interest in renewable and clean energy is growing. Of the various types of renewable energy, green hydrogen energy has recently attracted attention because of its eco-friendly and high-energy density. Electrochemical water splitting is considered a pollution-free means of producing clean hydrogen and oxygen and in large quantities. The development of non-noble electrocatalysts with low cost and high performance in water splitting has also attracted considerable attention. In this study, we successfully synthesized a NiCo2O4/NF electrode for an oxygen evolution reaction in alkaline water splitting using a hydrothermal method, which was followed by post-heat treatment. The effects of heat treatment on the electrochemical performance of the electrodes were evaluated under different heat-treatment conditions. The optimized NCO/NF-300 electrode showed an overpotential of 416 mV at a high current density of 50 mA/cm2 and a low Tafel slope (49.06 mV dec-1). It also showed excellent stability (due to the large surface area) and the lowest charge transfer resistance (12.59 Ω). The results suggested that our noble-metal free electrodes have great potential for use in developing alkaline electrolysis systems.

분리형 재생 연료전지를 위한 수전해 MEA 및 시스템 개발 (Development of PEMWE MEA & System for Discrete Regenerative Fuel Cell)

  • 최낙헌;윤대진;한창현;이준영;송민아;정혜영;최윤기;문상봉
    • 한국수소및신에너지학회논문집
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    • 제27권4호
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    • pp.335-340
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    • 2016
  • Hydrogen production through proton exchange membrane water electrolysis (PEMWE) is expeditiously receiving international attention for renewable energy sources as well as energy storage system applications due to its environmentally friendly uses. A series of $Ir_{0.2}Ru_{0.8}O_2$ $Ir_{0.5}Ru_{0.8}O_2$ & $IrO_2$ catalysts were synthesized and electrochemically evaluated by using linear sweep voltammetry (LSV) technique. Furthermore, the PEMWE performances of full cells were evaluated by recording I-V Curves. The developed PEMWE stack was also operated in combination with a proton exchange membrane fuel cell (PEMFC) to demonstrate the discrete regenerative fuel cell (DRFC) performances. Produced hydrogen and oxygen from PEMWE were used as a fuel to operate PEMFC to establish a DRFC system.

레이저 어블레이션 공정에 의한 Ni-MWCNT 합성 및 물분해 특성 (Synthesis of Ni-MWCNT by pulsed laser ablation and its water splitting properties)

  • 조경원;채희라;류정호
    • 한국결정성장학회지
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    • 제32권2호
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    • pp.77-82
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    • 2022
  • 고효율의 수전해 촉매는 낮은 전압에서 빠른 속도로 산화반응이 가능하기에 반응 활성이 높은 촉매설계 및 제조 공정이 필요하다. 현재 귀금속 촉매가 산소 발생 반응 성능에 있어서 우수한 특성을 보여주고 있지만 높은 가격과 낮은 반응성에 의한 효율 한계성으로 인해 상용화에 큰 어려움을 겪고 있다. 최근 귀금속 촉매를 대체하기 위해 저비용/고효율 수전해 촉매 개발연구가 활발하게 진행되고 있는데, 본 연구에서는 가격적인 측면에서 부담이 적고 산소활성 반응이 뛰어난 니켈 금속과 전기전도성이 뛰어난 multi walled carbon nanotube(MWCNT)를 이용하고 pulsed laser ablation in Liquid(PLAL) 공정을 적용하여 MWCNT 구조내에 Ni 을 성공적으로 dopping하여 Ni-MWCNT 촉매를 제작하고자 하였다. High resolution-transmission electron microscopy(HR-TEM) 분석 및 X-ray photoelectron spectroscopy(XPS) 분석을 통하여 개발된 수전해 촉매의 구조 및 화학적 조성을 확인하였으며, 촉매 산소발생반응 평가는 선형 주사 전위법(Linear sweep voltammetry; LSV) 과전압 특성, 타펠 기울기(Tafel slope), 전기화학 임피던스 분광법(Electrochemical impedance spectroscopy; EIS), 순환 전압 전류법(Cyclic voltammetry; CV) 및 Chronoamperometry(CA) 측정법으로 진행하였다.