• 제목/요약/키워드: Strong metal-support interaction effect

검색결과 9건 처리시간 0.03초

Revealing Strong Metal Support Interaction during CO Oxidation with Metal Nanoparticle on Reducible Oxide Substrates

  • Park, Dahee;Kim, Sun Mi;Qadir, Kamran;Park, Jeong Young
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.264-264
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    • 2013
  • Strong metal-support interaction effect is an important issue in determining the catalytic ac-tivity for heterogeneous catalysis. In this study, we investigated the support effect and the role of organic capping layers of two-dimensional Pt nanocatalysts on reducible metal oxide supports under the CO oxidation. Several reducible metal oxide supports including CeO2, Nb2O5, and TiO2 thin films were prepared via sol-gel techniques. The structure, chemical state and optical property were characterized using XRD, XPS, TEM, SEM, and UV-VIS spectrometer. We found that the reducible metal oxide supports have a homogeneous thin thickness and crystalline structure after annealing at high temperature showing the different optical band gap energy. Langmuir-Blodgett technique and arc plasma deposition process were employed to ob-tain Pt nanoparticle arrays with capping and without capping layers, respectively on the oxide support to assess the role of the supports and capping layers on the catalytic activity of Pt catalysts under the CO oxidation. The catalytic performance of CO oxidation over Pt supported on metal oxide thin films under oxidizing reaction conditions (40 Torr CO and 100 Torr O2) was tested. The results show that the catalytic activity significantly depends on the metal oxide support and organic capping layers of Pt nanoparticles, revealing the strong metal-support interaction on these nanocatalysts systems.

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Chemical Doping of $TiO_2$ with Nitrogen and Fluorine and Its Support Effect on Catalytic Activity of CO Oxidation

  • Chakravarthy, G. Kalyan;Kim, Sunmi;Kim, Sang Hoon;Park, Jeong Young
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.142.2-142.2
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    • 2013
  • The effect of substrate on catalytic activity of CO oxidation with transition metal Platinum nanoparticles on doped and undoped TiO2 was investigated. Titanium dioxide was doped chemically with non-metal anions including nitrogen and fluorine. Undoped TiO2 was synthesized via simple conventional sol-gel route. Thin films of titania were developed by spin coating technique and the characterization techniques SEM, XRD, UV-Vis Absorption Spectroscopy and XPS were carried out to examine the morphology of films, crystal phase, crystallites, optical properties and elemental composition respectively. XPS analysis from doped TiO2 confirmed that the nitrogen site were interstitial whereas fluorine was doped into TiO2 lattice substitutionally. Catalytic activity systems of Pt/doped-TiO2 and Pt/undoped-TiO2 were fabricated to reveal the strong metal-support interaction effect during catalytic activity of CO oxidation reactions. By arc plasma deposition technique, platinum nanoparticles with mean size of 2.7 nm were deposited on the thin films of doped and undoped titanium dioxide. The CO oxidation was performed with 40 Torr CO and 100 Torr O2 with 620 Torr He carrier gas. Turn over frequency was observed two to three folds enhancement in case of Pt/doped TiO2 as compared to Pt/TiO2. The electronic excitation and the oxygen vacancies that were formed with the doping process were the plausible reasons for the enhancement of catalytic activity.

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Support Effect of Catalytic Activity on 3-dimensional Au/Metal Oxide Nanocatalysts Synthesized by Arc Plasma Deposition

  • Jung, Chan Ho;Naik, B.;Kim, Sang Hoon;Park, Jeong Y.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.140.2-140.2
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    • 2013
  • Strong metal-support interaction effect is an important issue in determining the catalytic activity for heterogeneous catalysis. In this work, we report the catalytic activity of $Au/TiO_2$, $Au/Al_2O_3$, and $Au/Al_2O_3-CeO_2$ nanocatalysts under CO oxidation fabricated by arc plasma deposition (APD), which is a facile dry process with no organic materials involved. These catalytic materials were characterized by transmission electron microscopy (TEM), energy-dispersive X-ray spectroscopy (EDS) and $N_2$-physisorption. Catalytic activity of the materials has measured by CO oxidation using oxygen, as a model reaction, in a micro-flow reactor at atmospheric pressure. Using APD, the catalyst nanoparticles were well dispersed on metal oxide powder with an average particle size (3~10 nm). As for catalytic reactivity, the result shows $Au/Al_2O_3-CeO_2$ nanocatalyst has the highest catalytic activity among three samples in CO oxidation, and $Au/TiO_2$, and $Au/Al_2O_3$ in sequence. We discuss the effects of structure and metal-oxide interactions of the catalysts on catalytic activity.

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Support Effect of Arc Plasma Deposited Pt Nanoparticles/TiO2 Substrate on Catalytic Activity of CO Oxidation

  • Qadir, Kamran;Kim, Sang Hoon;Kim, Sun Mi;Ha, Heonphil;Park, Jeong Young
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.261-261
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    • 2013
  • The smart design of nanocatalysts can improve the catalytic activity of transition metals on reducible oxide supports, such as titania, via strong metal-support interactions. In this work, we investigatedtwo-dimensional Pt nanoparticle/titania catalytic systems under the CO oxidation reaction. Arc plasma deposition (APD) and metal impregnation techniques were employed to achieve Pt nanoparticle deposition on titania supports, which were prepared by multitarget sputtering and sol-gel techniques. APD Pt nanoparticles with an average size of 2.7 nm were deposited on sputtered and sol-gel-prepared titania films to assess the role of the titania support on the catalytic activity of Pt under CO oxidation. In order to study the nature of the dispersed metallic phase and its effect on the activity of the catalytic CO oxidation reaction, Pt nanoparticles were deposited in varying surface coverages on sputtered titania films using arc plasma deposition. Our results show an enhanced activity of Pt nanoparticles when the nanoparticle/titania interfaces are exposed. APD Pt shows superior catalytic activity under CO oxidation, as compared to impregnated Pt nanoparticles, due to the catalytically active nature of the mild surface oxidation and the active Pt metal, suggesting that APD can be used for large-scale synthesis of active metal nanocatalysts.

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M(1)-Ni(5)/AlCeO3 (M = La, Ce, Y) 촉매상에서 수소 제조를 위한 메탄의 부분산화반응에서 La의 효과 (Effect of La in Partial Oxidation of Methane to Hydrogen over M(1)-Ni(5)/AlCeO3 (M = La, Ce, Y) Catalysts)

  • 서호준
    • 공업화학
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    • 제30권6호
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    • pp.757-761
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    • 2019
  • 고정층 상압 유통식 반응기를 사용하여 M(1)-Ni(5)/AlCeO3 (M = La, Ce, Y) 촉매상에서 메탄의 부분 산화 반응을 수행하여 수소의 수율을 조사하였다. XRD 분석으로 반응 전과 반응 후의 환원된 La(1)-Ni(5)/AlCeO3 촉매의 결정상 특성피크를 조사하였고 FESEM과 EDS 분석으로 La, Ni, Ce 금속 입자가 촉매 표면상에 균일하게 분포하고 있음을 조사하였다. XPS 분석으로 촉매 표면상에 O2-, O22-의 산소와 Ce3+, Ce4+, La3+, Ni2+ 등의 이온이 존재함을 알 수 있었고, Ni(5)/AlCeO3 촉매에 1 wt%의 La를 첨가하면 Ni2p3/2과 Ce3d5/2의 원자가 각각 52.7과 6.3%로 증가하였다. La(1)-Ni(5)/AlCeO3 촉매상에서 수소의 수율은 89.1%이었으며, M(1)-Ni(5)/AlCeO3 (M = Ce, Y)보다 매우 우수하였다. AlCeO3이 산소와 반응하여 만들어진 CeO2의 Ce4+ 이온이 La3+로 치환됨으로서 격자에 산소 빈자리를 만들고 strong metal-support interaction (SMSI) 효과로 Ni 원자의 분산을 증가시켜 수소 수율를 향상시켰다.

가혹한 조건의 SRM 반응에서 Ni-Ce0.8Zr0.2O2 촉매의 소성온도에 따른 영향 (The Effect of Calcination Temperature on the Performance of Ni-Ce0.8Zr0.2O2 Catalysts for Steam Reforming of Methane under Severe Conditions)

  • 장원준;정대운;심재오;노현석
    • 한국수소및신에너지학회논문집
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    • 제23권3호
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    • pp.213-218
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    • 2012
  • Steam reforming of methane (SRM) is the primary method to produce hydrogen. Commercial Ni-based catalysts have been optimized for SRM with excess steam ($H_2O/CH_4$ > 2.5) at high temperatures (> $700^{\circ}C$). However, commercial catalysts are not suitable under severe conditions such as stoichiometric steam over methane ratio ($H_2O/CH_4$ = 1.0) and low temperature ($600^{\circ}C$). In this study, 15wt.% Ni catalysts supported on $Ce_{0.8}Zr_{0.2}O_2$ were prepared at various calcination temperatures for SRM at a very high gas hourly space velocity (GHSV) of $621,704h^{-1}$. The calcination temperature was systematically varied to optimize 15wt.% $Ni-Ce_{0.8}Zr_{0.2}O_2$ catalyst at a $H_2O/CH_4$ ratio of 1.0 and at $600^{\circ}C$. 15wt.% $Ni-Ce_{0.8}Zr_{0.2}O_2$ catalyst calcined at $500^{\circ}C$ exhibited the highest $CH_4$ conversion as well as stability with time on stream. Also, 15wt.% $Ni-Ce_{0.8}Zr_{0.2}O_2$ catalyst calcined at $500^{\circ}C$ showed the highest $H_2$ yield (58%) and CO yield (21%) among the catalysts. This is due to complex NiO species, which have relatively strong metal to support interaction (SMSI).

Ln(1)-Ni(5)/SBA-15 (Ln = Dy, Eu, Pr, Tb) 촉매상에서 수소제조를 위한 메탄의 부분 산화 반응에서 Eu의 효과 (Effect of Eu in Partial Oxidation of Methane to Hydrogen over Ln(1)-Ni(5)/SBA-15 (Ln = Dy, Eu, Pr, and Tb) Catalysts)

  • 서호준
    • 공업화학
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    • 제32권4호
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    • pp.478-482
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    • 2021
  • 고정층 상압 유통식 반응기를 사용하여 Ln(1)-Ni(5)/SBA-15 (Ln = Dy, Eu, Pr, Tb) 촉매상에서 메탄의 부분 산화 반응을 수행하여 수소의 수율을 조사하였다. X-ray photoelectron spectroscopy (XPS) 분석으로 Ni(5)/SBA-15 촉매에 1 wt%의 Eu를 첨가함으로써 Eu(1)-Ni(5)/SBA-15의 O1s와 Si2p의 핵심 전자 수준의 화학적 이동이 있었으며, O1s, Ni2p3/2, Si2p의 원자의 비가 1.284, 1.298, 1.058로 증가하였다. 촉매 표면상에 O-, O2-의 산소와 Eu3+, Ni0, Ni2+, Si4+의 이온이 존재함을 알 수 있었다. Eu(1)-Ni(5)/SBA-15 촉매상에서 수소의 수율은 57.2%이었으며, Ln(1)-Ni(5)/SBA-15 (Ln = Dy, Pr, Tb)보다 우수한 수소 수율을 보여주었고 25 h의 반응에서 안정된 촉매 활성을 유지하였다. Eu를 Ni(5)/SBA-15에 1wt%를 첨가함으로서 금속과 담체 간에 강한 상호 작용에 의한 SMSI 효과로 산소 빈자리를 만들고 촉매 표면상에 Ni0, N2+의 나노입자의 분산을 증가시켜 촉매 활성을 유지시켰다.

니켈 촉매상에서 에탄올의 환원성 아민화반응에 의한 에틸아민 제조 : 담체의 영향 (Synthesis of Ethylamines for the Reductive Amination of Ethanol over Ni Catalysts: Effect of Supports)

  • 정예슬;신채호
    • Korean Chemical Engineering Research
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    • 제57권5호
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    • pp.714-722
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    • 2019
  • 산 염기성질이 다양하게 존재하는 담체($SiO_2-Y_2O_3$, $Al_2O_3$, $SiO_2-ZrO_2$, $SiO_2$, $TiO_2$, MgO) 상에 17 wt% Ni을 고정한 상태에서 함침법을 사용하여 촉매를 제조하여 수소 존재 하에 에탄올과 암모니아의 환원성 아민화 반응에 대한 촉매활성을 비교 평가하였다. 반응 전후에 있어 사용된 촉매는 X-선 회절, 질소 흡착, 에탄올-승온탈착(EtOH-TPD), 이소프로판올-승온탈착(IPA-TPD), 수소 화학흡착을 사용하여 특성분석을 수행하였다. pH 9.5 이상에서 침전법을 사용하여 $ZrO_2$$Y_2O_3$ 담체 제조 시 파이렉스 반응기에서 미량의 Si 용융으로 인해 $SiO_2-ZrO_2$$SiO_2-Y_2O_3$ 복합 산화물이 각각 생성되었다. 사용된 촉매 중에서 $Ni/SiO_2-Y_2O_3$ 촉매가 가장 좋은 활성을 보였으며 이는 높은 니켈 분산도와 EtOH-TPD와 IPA-TPD에서의 낮은 탈착온도 등과 밀접한 관련이 있었다. Ni/MgO 촉매상에서의 낮은 촉매 활성은 NiO-MgO 고형물 형성에 기인한 것으로 보이며, $Ni/TiO_2$ 경우에서는 담체-금속 간의 강한 상호 작용으로 인해 낮은 니켈 금속 상 존재로 인해 반응성이 낮게 나왔다. $TiO_2$와 MgO 이외의 담체를 사용한 경우에 있어서 유사한 에탄올 전환율에서의 에틸아민류와 아세토니트릴 선택도는 큰 차이를 보이지 않았다.

Ce/Zr 비율에 따른 Ni/CeO2-ZrO2 촉매가 메탄의 수증기 개질 반응에서 미치는 영향 (Effect of Ce/Zr Ratios on Ni/CeO2-ZrO2 Catalysts in Steam Reforming of Methane Reaction)

  • 성인호;조경태;이종대
    • Korean Chemical Engineering Research
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    • 제62권1호
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    • pp.125-131
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    • 2024
  • 본 연구에서는 제조된 Ni/CexZr1-xO2 촉매를 허니컴 구조의 금속 모노리스 구조체 표면에 코팅하여 수증기 메탄 개질 반응에 대한 활성을 연구하였다. Ce/Zr의 비율을 달리한 지지체를 합성하여 수증기 메탄 개질 반응에서의 거동을 확인하였으며, Ni 함량이 촉매 활성에 미치는 영향을 분석하기 위해 다양한 Ni 함량의 촉매를 제조하였다. 촉매의 특성은 XRD, BET, TPR 및 SEM으로 분석하였으며 TPR 분석에서 활성 금속 Ni이 CeO2-ZrO2 혼합물 지지체와 강한 상호작용으로 Ni-Ce-Zr 산화물을 형성하였음을 나타내었다. 15 wt% Ni/Ce0.80Zr0.20O2 촉매는 수증기 메탄 개질 반응에서 가장 높은 활성 및 안정성을 보였다. 우수한 산소저장 및 공여 특성의 CeO2와 열적 특성의 ZrO2를 복합소재로 제조하여 활성과 안정성이 향상된 촉매를 합성하였다.