• Title/Summary/Keyword: MoSi

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Adsorption Properties of Keggin-type Polyoxometalates on Carbon Based Electrode Surfaces and Their Electrocatalytic Activities

  • Choi, Su-Hee;Kim, Jong-Won
    • Bulletin of the Korean Chemical Society
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    • v.30 no.4
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    • pp.810-816
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    • 2009
  • The interactions between four Keggin-type POMs (${SiW_{12}O_{40}}^{4-},\;{PW_{12}O_{40}}^{3-},\;{SiMo_{12}O_{40}}^{4-},\;and\;{PMo_{12}O_{40}}^{3-}$) and glassy carbon (GC) and highly oriented pyrolytic graphite (HOPG) surfaces are investigated in a systematic way. Electrochemical results show that molibdate series POMs adsorb relatively stronger than tungstate POMs on GC and HOPG surfaces. Adsorption of POMs on HOPG electrode surfaces is relatively stronger than on GC surfaces. ${SiMo_{12}O_{40}}^{4-}$ species exhibits unique adsorption behaviors on HOPG surfaces. Surface-confined ${SiMo_{12}O_{40}}^{4-}$ species on HOPG surfaces exhibit unique adsorption behaviors and inhibit the electron transfer from the solution phase species. The catalytic activity of the surface-confined POMs for hydrogen peroxide electroreduction is also examined, where ${PW_{12}O_{40}}^{3-}$ species adsorbed on GC surfaces exhibits the highest catalytic efficiency among the investigated POM modified electrode systems.

박막형 CIGS 연성태양전지용 Mo 배면전극 증착에 관한 연구

  • Kim, Gang-Sam;Jo, Yong-Gi
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.169-169
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    • 2010
  • 박막형 CIGS 태양전지의 배면전극으로 사용되는 Mo 박막은 낮은 저항으로 인한 전기전도성과 열적 안전성이 아주 우수하다. 연구에서는 연성 CIGS 태양전지의 제조를 위한 Mo 배면전극의 대면적 증착기술에 관한 것으로 DC Magnetron Sputtering 공정을 이용하여 전주기술을 통한 Ni-Fe계 연성기판재 위에 졸걸법으로 합성된 $SiO_2$ 절연박막에 Mo 박막을 증착하는 것을 목적으로 하고 있다. 실험에서는 연성기판재 대신 시편을 Sodalime glass, Si wafer, SUS계 소재를 사용하여 스퍼터링 공정에 의한 Mo 박막을 증착하였다. 실험에서 타겟에 인가되는 전력과 공정압력을 변수로 하여 Mo 박막의 증착율, 전기저항성을 측정하였다. 타겟의 크기는 $80mm{\times}350mm$, 타겟과 기판간 거리 20cm 이었으며, 공정 압력은 2~50 mtorr 영역에서 인가전력을 0.5-1.5kW로 하였다. Mo 박막의 증착율과 전기적 특성을 측정하기 위하여 $\alpha$-step과 4-point probe(CMT-SR 1000N)를 이용하였다. 그리고 Mo 박막의 잔류응력을 측정하기 위하여 잔류응력측정기를 이용하였다. Mo 박막의 미세구조분석을 위하여 SEM 및 XRD를 분석을 실시하였다. 배면전극으로서 전기저항성은 공정압력에 따라 좌우 되었으며, 2 mTorr 공정압력과 1.5kW의 전력에서 최소값인 $8.2\;{\mu}{\Omega}-cm$의 저항값과 증착율 약 $6\;{\mu}/h$를 보였다. 기판재와의 밀착성과 관련한 잔류응력 측정과 XRD분석을 통한 결정립 크기를 분석하여 공정압력에 따른 Mo 박막의 잔류응력과 전기 저항 및 결정립 크기의 상관관계를 조사하였다. 그리고 대면적 CIGS 증착공정을 위해 직각형 타겟을 통해 증착된 Mo 박막의 증착분포를 20cm 이내 조사하였다.

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Effects of Si and Mo on the Temperature-Dependent Properties of High Si High Mo Ductile Cast Irons (고규소 고몰리브덴 구상흑연주철의 온도 의존 특성에 미치는 규소와 몰리브덴의 영향)

  • Choe, Kyeong-Hwan;Lee, Sang-Mok;Kim, Myung-Ho;Yun, Sang-Weon;Lee, Kyong-Whoan
    • Journal of Korea Foundry Society
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    • v.29 no.6
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    • pp.257-264
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    • 2009
  • The effects of silicon and molybdenum on the temperature-dependent properties of high silicon and high molybdenum ductile cast iron were investigated. Microstructure was composed of ferrite, cell boundary complex carbide, carbide precipitated in the grain and graphite. The number and size of carbide decreased with the increase of silicon content and increased with the increase of molybdenum content, however, the size of cell boundary carbide increased above 0.81wt%Mo. The room temperature tensile strength increased with the increase of silicon and molybdenum contents. That did not increase with the latter with more than 0.8wt%. Meanwhile the high temperature tensile strength showed the similar trend to that of room temperature one, that of the specimen with 0.55wt%Mo was the highest. The $A_1$ transformation temperature increased with the silicon and molybdenum contents, and showed similar tendency with the variation of strength. It was discussed due to the solubility limit of Molybdenum in ferrite, of which value was assumed to be in the vicinity of 0.81wt%Mo. The weight after oxidation at 1,173K showed the result caused by the difference in solubility of molybdenum in the matrix. That and the thickness change after oxidation did not show any consistent trend with the silicon and molybdenum contents.

The Effects of Si or Sn on the Sintered Properties of Fe-(Mo,Mn)-P Lean alloy (Fe-(Mo,Mn)-P계 Lean alloy의 소결특성에 미치는 Si와 Sn의 영향)

  • Jung, Woo-Young;Ok, Jin-Uk;Park, Dong-Kyu;Ahn, In-Shup
    • Journal of Powder Materials
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    • v.25 no.4
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    • pp.302-308
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    • 2018
  • A lean alloy is defined as a low alloy steel that minimizes the content of the alloying elements, while maintaining the characteristics of the sintered alloy. The purpose of this study is to determine the change in microstructure and mechanical properties due to the addition of silicon or tin in Fe-Mo-P, Fe-Mn-P, and Fe-Mo-Mn-P alloys. Silicon- or tin-added F-Mo-P, Fe-Mn-P, and Fe-Mo-Mn-P master alloys were compacted at 700 MPa and subsequently sintered under a $H_2-N_2$ atmosphere at $1120^{\circ}C$. The sintered density of three alloy systems decreases under the same compacting pressure due to dimensional expansion with increasing Si content. As the diffusion rate in the Fe-P-Mo system is higher than that in the Fe-P-Mn system, the decrease in the sintered density is the largest in the Fe-P-Mn system. The sintered density of Sn added alloys does not change with the increasing Sn content due to the effect of non-dimensional changes. However, the effect of Si addition on the transverse rupture strengthening enhancement is stronger than that of Sn addition in these lean alloys.