• 제목/요약/키워드: Catalytic Surface Reaction

검색결과 378건 처리시간 0.027초

Pt/TiO2 촉매의 활성금속 분산도가 NH3-SCO 반응활성에 미치는 영향 (Influence of Active Metal Dispersion over Pt/TiO2 Catalyst on NH3-SCO Reaction Activity)

  • 신중훈;권동욱;김거종;홍성창
    • 공업화학
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    • 제29권1호
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    • pp.22-27
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    • 2018
  • 본 연구에서는, $200{\sim}350^{\circ}C$의 온도범위에서 $Pt/TiO_2$의 물리적 특성이 $NH_3$-selective catalytic oxidation (SCO) 반응에 미치는 영향을 확인하였다. CO-chemisorption, BET 분석은 $Pt/TiO_2$ 촉매의 물리적 특성을 확인하기 위하여 수행되었다. Pt 함량에 따른 $Pt/TiO_2$의 물리적 특성을 확인한 결과, Pt의 함량이 적을수록 분산도가 높았다. 또한 분산도가 높은 촉매는 $N_2$로의 전환율이 우수한 것을 확인하였다. 지지체의 비표면적은 분산도에 영향을 미치기 때문에, 물리적 특성이 다른 $TiO2$를 이용하여 $Pt/TiO_2$ 촉매를 제조하였다. 그 결과, 비표면적이 넓은 촉매가 $N_2$로의 전환율이 우수한 것을 확인하였다.

Electrochemical Activity of a Blue Anatase TiO2 Nanotube Array for the Oxygen Evolution Reaction in Alkaline Water Electrolysis

  • Han, Junhyeok;Choi, Hyejin;Lee, Gibaek;Tak, Yongsug;Yoon, Jeyong
    • Journal of Electrochemical Science and Technology
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    • 제7권1호
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    • pp.76-81
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    • 2016
  • An anatase TiO2 nanotube array (NTA) was fabricated by anodization and successive heat treatments. When the anatase TiO2 NTA was cathodically polarized, its color changed to blue, and it could be used as an electrochemically active anode for an oxygen evolution reaction (OER) in alkaline water electrolysis. The structure of the blue anatase TiO2 NTA was controlled by the anodization conditions and its catalytic activity increased with an increase of the surface area. The activity of the blue anatase TiO2 NTA gradually reduced with the continued OER because of the partial oxidation of Ti3+ to Ti4+. However, an intermittent cathodic regeneration process could significantly slow its reduction rate. The blue anatase TiO2 NTA could be an alternative anode for alkaline water electrolysis.

반응 온도에 따른 CoO/Co(OH)2 나노시트의 합성 (Synthesis of CoO/Co(OH)2 Nanosheets Depending on Reaction Temperatures)

  • 이민정;윤가영;류경희
    • 한국재료학회지
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    • 제33권5호
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    • pp.222-228
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    • 2023
  • Transition metal oxides formed by a single or heterogeneous combination of transition metal ions and oxygen ions have various types of crystal structures, which can be classified as layered structures and non-layered structures. With non-layered structures, it is difficult to realize a two-dimensional structure using conventional synthesis methods. In this study, we report the synthesis of cobalt oxide into wafer-scale nanosheets using a surfactant-assisted method. A monolayer of ionized surfactant at the water-air interface acts as a flexible template for direct cobalt oxide crystallization below. The nanosheets synthesized on the water surface can be easily transferred to an arbitrary substrate. In addition, the synthesizing morphological and crystal structures of the nanosheets were analyzed according to the reaction temperatures. The electrochemical properties of the synthesized nanosheets were also measured at each temperature. The nanosheets synthesized at 70 ℃ exhibited higher catalytic properties for the oxygen evolution reaction than those synthesized at other temperatures. This work suggests the possibility of changing material performance by adjusting synthesis temperature when synthesizing 2D nanomaterials using a wide range of functional oxides, resulting in improved physical properties.

페로브스카이트 촉매에서 A-Site 치환에 따른 촉매활성 변화 (Catalytic Activity Change of Perovskite Catalysts with A-Site Substitution)

  • 함현식;김규성;안성환;신기석;김송형;박홍수
    • 한국응용과학기술학회지
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    • 제24권3호
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    • pp.272-277
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    • 2007
  • Catalytic activity changes of perovskite catalysts were examined with their A-site substitution. For the preparation of catalysts, Mn was used for B-site component and La, Ce, Sr, Ba, Ca, Ag were used for A-site component of the perovskite $catalysts(ABO_3)$ The effect of calcination temperature on methane combustion and perovskite structure was also investigated. The surface area and adsorbed oxygen species were tested with BET apparatus and $O_2-TPD$, respectively. Perovskite catalysts whose A-site was partially substituted needed higher calcination temperature than un-substituted one to form the perovskite structure. From $O_2-TPD$ experiment, it was found that methane combustion activity was directly related to the oxygen desorbing ability of the catalysts. The prepared catalyst(LM-7) was stable at $600^{\circ}C$ for 72 hours of reaction.

Synthesis, Characterization and Catalytic Evaluation of Zinc Fluorides for Biodiesel Production

  • Indrayanah, Sus;Marsih, I Nyoman;Murwani, Irmina Kris
    • 대한화학회지
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    • 제62권1호
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    • pp.7-13
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    • 2018
  • The potential of zinc fluorides with different molar ratios of Zn/F was applied as a solid catalyst in the simultaneous reaction of transesterification and esterification of crude palm oil (CPO) for biodiesel production. These materials were prepared by the fluorolytic sol-gel technique with different fluorine contents. The resulting samples were investigated using elemental analysis, XRD, FT-IR, TG/DTG, $N_2$ physisorption measurements and SEM. The results exhibited that the presence of fluorine strongly affected the catalytic activity in the biodiesel production. The catalysts with smaller fluorine contents (${\leq}1$) showed the best performance in all of the observed samples, yields from 92.94 to 89.95, 87.38 and 85.21% with increasing fluorine contents, respectively. The yield toward the formation of biodiesel depended on the phase and particle sizes of catalysts, but it was not influenced by surface area, pore size, and volume of the samples. The recovered catalyst showed a gradual decrease in activity over three cycles of same reactions.

Photocurrent Properties of TiO2 Nanorods Grown on FTO by Hydrothermal Method

  • Kim, Hyun;Yang, Bee Lyong
    • 한국세라믹학회지
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    • 제52권6호
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    • pp.531-534
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    • 2015
  • In this work, we undertake a comparative study of the crystallographic microstructures and photo-catalytic properties of rutile $TiO_2$ nanorods grown on FTO facing up and down by a hydrothermal method. An analysis of the fine structures showed that $TiO_2$ nanorods grown on FTO facing up were mixed with sea urchin and microsphere. These structures induced a vertical orientation of the nanorods on FTO. The saturated photocurrent densities of the $TiO_2$ nanorods grown both up and down were $1.5mA/cm^2$ in the former case, the IPCE was increased to 10% at 300~350 nm. The onset potential (${\fallingdotseq}$ flat band potential) of the nanorods grown on FTO facing up is negatively shifted to a value of -0.31 V. This is caused by an increase in the surface state, in this case the number of oxygen vacancies, and by the formation of $Ti^{3+}$. Therefore, the FTO facing direction is considered as a critical factor during the hydrothermal reaction for $TiO_2$ growth so as to develop an efficient photo-catalytic system.

비결정질 코발트 인산염 합성 및 NaBH4 가수분해를 통한 수소발생 촉매 활성 연구 (Synthesis of Cobalt Phosphates and their Catalytic Properties of the Hydrogen Generation from the Hydrolysis of NaBH4)

  • 김영용;박준범;권기영
    • 공업화학
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    • 제26권6호
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    • pp.743-745
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    • 2015
  • 본 연구에서는 실온에서 간단히 염기의 양을 조절함으로서 세 가지 종류의 서로 다른 형태의 비결정질의 cobalt phosphate를 합성하였다. 합성된 샘플의 결정성과 형태를 X-Ray Diffraction (XRD)과, Scanning Electron Microscopy (SEM)를 통하여 확인하였으며, sodium borohydride의 수소발생 불균일 촉매로서 적용하였다. 촉매들 중에서 실온에서 합성한 비결정질의 cobalt phosphate 중에서 염기의 양이 가장 적은 10 nm 이하의 얇은 판상 형태의 촉매가 표면적이 넓어 가장 좋은 수소 발생 촉매활성을 보였다.

Nanopatterning of Self-assembled Transition Metal Nanostructures on Oxide Support for Nanocatalysts

  • Van, Trong Nghia;Park, Jeong-Young
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제41회 하계 정기 학술대회 초록집
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    • pp.211-211
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    • 2011
  • Nanostructures, with a diversity of shapes, built on substrates have been developed within many research areas. Lithography is one powerful, but complex, technique to make structures at the nanometer scale, such as platinum nanowires for studying CO catalytic reactions [1], or aluminum nanodisks for studying the plasmon effect [2]. In this work, we approach a facile method to construct nanostructures using noble metals on a titania thin film by using self-assembled structures as a pattern. Here, a large-scale silica monolayer is transferred to the titania thin film substrates using a Langmuir-Blodgett trough, followed by the deposition of a thin transition metal layer. Owing to the hexagonal close-packed structure of the silica monolayer, we would obtain a metal nanostructure that includes separated metallic triangles (islands) after removing the patterning silica beads. This nanostructure can be employed to investigate the role of metal-oxide interfaces in CO catalytic reactions by changing the patterning silica particles with different sizes or by replacing the oxide support. The morphology and chemical composition of the structure can be characterized by scanning electron microscopy, atomic force microscopy and X-ray photoelectron spectroscopy. In addition, we modify these islands to a connected island structure by reducing the silica size of the patterning monolayer, which is utilized to generating hot electron flow based on the localized surface plasmon resonance effect of the metal nanostructures.

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CO Oxidation of Catalytic Filters Consisting of Ni Nanoparticles on Carbon Fiber

  • Seo, Hyun-Ook;Nam, Jong-Won;Kim, Kwang-Dae;Kim, Young-Dok;Lim, Dong-Chan
    • Bulletin of the Korean Chemical Society
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    • 제33권4호
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    • pp.1199-1203
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    • 2012
  • Catalytic filters consisting of Ni nanoparticle and carbon fiber with different oxidation states of Ni (either metallic or oxidic) were prepared using a chemical vapor deposition process and various post-annealing steps. CO oxidation reactivity of each sample was evaluated using a batch type quartz reactor with a gas mixture of CO (500 mtorr) and $O_2$ (3 torr) at $300^{\circ}C$. Metallic and oxidic Ni showed almost the same CO oxidation reactivity. Moreover, the CO oxidation reactivity of metallic sample remained unchanged in the subsequently performed second reaction experiment. We suggested that metallic Ni transformed into oxidic state at the initial stage of the exposure to the reactant gas mixture, and Ni-oxide was catalytically active species. In addition, we found that CO oxidation reactivity of Ni-oxide surface was enhanced by increase in the $H_2O$ impurity in the reactor.

Photoemission Study on the Adsorption of Ethanol on Chemically Modified TiO2(001) Surfaces

  • Kong, Ja-Hyun;Kim, Yu-Kwon
    • Bulletin of the Korean Chemical Society
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    • 제32권8호
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    • pp.2531-2536
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    • 2011
  • Ethanol is a prototype molecule used in probing catalytic reactivity of oxide catalysts such as $TiO_2$. In the present study, we adsorbed ethanol on $TiO_2$(001) at room temperature (RT) and the corresponding bonding state of ethanol was systematically studied by x-ray photoemission spectroscopy (XPS) using synchrotron radiation. Especially, we compared $TiO_2$(001) surfaces prepared in ultra-high vacuum (UHV) with different surface treatments such as $Ar^+$-sputtering and oxidation with molecular $O_2$, respectively. We find that the saturation coverage of ethanol at RT varies depending on the amount of reduced surface defects (e.g., $Ti^{3+}$) which are introduced by $Ar^+$-sputtering. We also find that the oxidized $TiO_2$(001) surface has other type of surface defects (not related to Ti 3d state) which can dissociate ethanol for further reaction above 600 K. Our C 1s core level spectra indicate clearly resolved features for the two chemically distinct carbon atoms from ethanol adsorbed on $TiO_2$(001), showing the adsorption of ethanol proceeds without C-C bond dissociation. No other C 1s feature for a possible oxidized intermediate was observed up to the substrate temperature of 650 K.