• Title/Summary/Keyword: 원자산소

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The Initial Stages of the Oxidation of the CdTe surfaces (CdTe 표면의 산화과정의 초기단계)

  • 김형도;오세정
    • Journal of the Korean Vacuum Society
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    • v.1 no.1
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    • pp.50-59
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    • 1992
  • By means of X-ray photoelectron spectroscopy(XPS), the initial stages of the oxidation of the cleaved CdTe (110) surface and the sputtered CdTe surface with oxygen exposure are invetigated. From the analyses of the spectra of Te 3dsn, Cd 3d5/2, 0 ls and Cd MNN Auger lines, it is shown that two oxygen atoms bond to one Te atom at the initial stages.

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Interfacial Reactions of Cu/$CoSi_2$ and Cu/Co-Ti Bilayer Silicide (Cu/$CoSi_2$ 및 Cu/Co-Ti 이중층 실리사이드의 계면반응)

  • Lee, Jong-Mu;Lee, Byeong-Uk;Kim, Yeong-Uk;Lee, Su-Cheon
    • Korean Journal of Materials Research
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    • v.6 no.12
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    • pp.1192-1198
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    • 1996
  • 배선 재료나 salicide 트랜지스터에 적용될 것으로 기대되는 Cu 배선과 Co 단일층 및 Co/Ti 이중층을 사용하여 형성된 코발트 실리사이드간의 열적 안정성에 대하여 조사하였다. 40$0^{\circ}C$열처리후 Cu3Si 막이 CoSi2층과 Si 기판 사이에 형성되었는데, 이것은 Cu 원자의 확산에 기인한 것이다. $600^{\circ}C$에서의 열처리 후에 형성된 최종막의 구조는 각각 Cu/CoSi2/Cu3Si/Si과 TiO2/Co-Ti-Si 합금/CoSi2/Cu3Si/Si였으며, 상부에 형성된 TiO2층은 산소 오염에 의한 것으로 밝혀졌다.

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$K(H_{0.34}D_{0.66})PO_4$의 상전이에 따른 결정구조 변화

  • 김신애;성기훈;이창희
    • Proceedings of the Korea Crystallographic Association Conference
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    • 2002.11a
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    • pp.11-11
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    • 2002
  • K(H/sub 0.34/D/sub 0.66/)₂PO₄는 KH₂PO₄(KDP)의 수소원자를 중수소가 일부 치환한 결정이다. 실험에 사용한 시료는 KDP 원료시약을 중수(D₂O)에서 성장시킨 것으로, 단결정 구조해석을 통해 D와 H의 점유율을 정련하였다. 본 연구에서는 상전이에 따른 결정구조의 변화를 연구하기 위하여 한국원자력연구소의 연구용 원자로인 하나로에 설치된 고분해능 분말회절장치(HRPD)로 상온에서부터 10K 까지 온도를 변화시켜가며 회절패턴을 측정하였다. 그 결과 190-l95K 사이에서 상전이가 일어났으며, 이것은 DSC(Differential Scanning Calorimetry) 측정결과와 상온에서 단결정 분석결과 D의 점유도로 계산한 상전이 온도와도 잘 일치한다. 10K와 298K에서 측정한 회절패턴에 대해 프로그램 FullProf를 사용하여 각각 리트벨트 구조정련을 수행한 결과, 상온에서는 정방정계이며 공간군은 I-42d 이고 저온에서는 사방정계인 Fdd2로 변한다. 온도변화에 따른 핵밀도 분포를 측정한 결과 상온에서 D/H는 2회 대칭축을 중심으로 50% 점유도의 두 가지 가능한 위치를 갖는 무질서(disorder) 상태로 존재하나 온도가 내려갈수록 한 쪽으로 치우쳐 상전이 온도 아래에서는 하나의 산소와 결합하여 질서(order) 상태를 보이며 다른 하나와는 수소결합을 이룬다.

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The Reaction between Organothioenamine Phosphonate and Styrene Oxide (유기 티오엔아민 포스포네이트와 산화스티렌과의 반응)

  • Keun Jae Kim;Chi Sun Han
    • Journal of the Korean Chemical Society
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    • v.20 no.4
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    • pp.295-298
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    • 1976
  • The fact that a reaction between organothioenamine phosphonate and styrene oxide produces a derivative of cyclopropane has been proved by structural identification. This suggests that an anionic oxygen atom from the ring opening of the styrene oxide by nucleophilic attack of thioenamine phosphonate links to the phosphorous atom to from a betaine as an intermediate which is followed by cleavage of the weak P-C bond. The dextrorotatory optical activity of the product showed that the reaction was under the control of steric stability of the benzyl carbon in styrene which leads to the product through a sterically stable pathway.

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MO Studies of Configuration and Conformation (Ⅲ). Conformations of Some 2-Substituted Furan, Thiophene and Pyrrole Carbonyl Compounds (配置와 形態에 관한 分子軌道函數論的 硏究 (第3報). Furan, Thiophene 및 Pyrrole 카르보닐 化合物의 2-置換體의 形態)

  • Ikchoon Lee;Shi Choon Kim
    • Journal of the Korean Chemical Society
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    • v.21 no.1
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    • pp.32-37
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    • 1977
  • Conformations of nine 2-substituted furan, thiophene and pyrrole compounds have been studied by EHT methods. The preferred conformations of furan derivatives were trans form, which were mainly stabilized by electrostatic interactions. For thiophenes, electronic conjugation between the ring S and carbonyl oxygen was dominant, while for pyrroles both the electrostatic and conjugation effects were operative in determining the preferred conformations. Results of EHT calculation agreed well with experimentally determined preferences.

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Coastal Sea Red-tide Prevention and Killing Treatment of Seaweed and Algae (연안해역의 적조방제와 해조류 사멸 처리)

  • 소대화;백민동;백희요;선우택
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2004.05b
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    • pp.285-288
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    • 2004
  • 자유수산기는 단분자 제조공정으로 분자, 원자 충에서 가공되어 기타 활성입자와 함께 얻어지며, 20% 이상의 고 밀도 질량비는 양산공정에 중요한 의미를 부여한다. 자유수산기가 선박안정수의 외래침입생물과 적조처리 및 양식수체 정화에도 효과적인 새로운 처리기술로 선박 안정수에 포함되어 타 지역으로부터 옮겨지는 외래침입생물 처리 방안의 하나로, 강 전리방전 기술을 적용하여 고 밀집산소와 물분자로부터 고농도 수산자유기(OH: hydroxyl radical)를 전리, 발생시켜서 활성입자를 신속히 확산시켜 비교적 낮은 수산기농도 하에서 유해성침입생물을 사멸 처리하는 환경 친화적 녹색 청정처리방법을 제안하였다.

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Crystallographic Studies of Dehydrated Zeolite-X Reacting with Rubidium Vapor (루비듐 증기로 처리한 탈수한 제올라이트 X의 결정학적 연구)

  • Han, Young Wook
    • Journal of the Mineralogical Society of Korea
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    • v.6 no.2
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    • pp.116-121
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    • 1993
  • A single crystla of zeolite $Na_{78}Rb_{28}-X$ (approximate composition) was prepared by exposing $Na_{92}-X$ at $350^{\circ}C$ to 0.1 Torr of rubidium vapor, and its structure was determined by single-crystal x-ray diffraction methods in the cubic space group, Fd3, ${\alpha}=25.045(4){\AA}$. The structure was refined to the final error indices $R_1=0.082$ and $R_2=0.084$ with 353 for which I>$3{\sigma}(I)$. Only about 28 of the 92 $Na^+$ ions per unit cell were reduced and only about 14 of the 28 $Na^0$ atoms produced were retained within the zeolite. A $Na_5{^{4+}}$ cluster is present within each sodalite cavity. It is a centered tetrahedron (like $CH_4$) with bond $length=2.80(2){\AA}$ and angle tetrahedral by symmetry, and shows the full symmetry of its site. $T_d$, at the center of the sodalite cavity. Each of the four terminal atoms of the $Na_5{^{4+}}$ cluster bond to three framework oxygens at $2.36(2){\AA}$. At the centers of some double 6-rings are sodium atoms which bridge linearly between $Na_5{^{4+}}$ clusters to form agglomerations such as short zig-zag chains $Na_5{^{4+}}$ clusters. Delocalized electrons, located primarily on the sodiums at centers of the sodalite and (likely) double-six-ring cavities, contribute to the stability of the clusters.

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Crystal Structure of Hexapotassium Undecahydrogen Tetratungsto Hexaantimonate(Ⅴ) Tetrahydrate (Hexapotassium Undecahydrogen Tetratungsto Hexaantimonate(Ⅴ) Tetraphydrate의 결정 구조)

  • Park, Gi Min;Yoshiki Ozawa;Lee, Uk;Lee, Uk
    • Journal of the Korean Chemical Society
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    • v.38 no.5
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    • pp.359-365
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    • 1994
  • The crystal stucture of hexapotassium undecahydrogen tetratungsto hexaantimonate(V) tetrahydrate has been determined from single crystal X-ray diffraction data. Crystal data are as follows: $K_6H_{12}[Sb_6W_4O_{36}]{\cdot}4H_2O$, Fw = 2360.62, tetragonal, I$4_1$/a, a = 10.799(1) ${\AA}$, c = 35.244(5) ${\AA}$, V = 4110.1(7) ${\AA}^3$, Z = 4, $D_x$ = 3.82 g$cm^{-3}$, $\mu(MoK\alpha)$ = 160.15 $cm^{-1}$, T = 293 K, final R = 0.0356 for 2400($F_0 > 3\sigma(F_0))$ independent reflections. The $[H_{12}Sb_6W_4O_{36}]^{-6}$ polyanion independently consists of one tungsten, two antimony, and nine oxygen atoms and belongs to the $\bar4(S_4)$ point group. This polyanion is formed by two open octahedra five membered ring of Sb(3)$O_6-W(1)O_6-Sb(2)O_6-W(1)O_6-Sb(3)O_6$ which is connected at right angle. The Sb-W, Sb-O, and W-O bond distances range from 3.2304(9) to 3.2403(5) $\AA$, 1.745(8) to 2.334(6) $\AA$, and 1.914(7) to 2.039(7) $\AA$, respectively.

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Crystal Structure and Thermal Stability Study on Tetrabutylammonium Hexamolybdate [n-Bu4N]2[Mo6O19](TBAM)

  • Zhao, Pu Su;Zhao, Zhan Ru;Jian, Fang Fang;Lu, Lu De
    • Journal of the Korean Chemical Society
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    • v.47 no.6
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    • pp.553-558
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    • 2003
  • The crystal structure of $[n-Bu_4N]_2[Mo_6O_{19}]$(TBAM) (n-Bu4N=tetrabutylammonium) has been determined by X-ray crystallography. It crystallizes in the monoclinic system, space group C2/c, with lattice parameters ${\alpha}$=16.314(5), b=17.288(5), c=17.776(4)${\AA}$ ${\beta}$=101.47(3), and Z=4. In $[Mo_6O{19}]^{2-}$ anion, Mo atoms occupy six vertices of octahedron and each Mo atom is coordinated by six oxygen atoms to adopt distorted octahedral coordination geometry. The average bond distance of Mo-Ot (terminal), Mo-Ob (bridged) and Mo-Oc (central) are 1.680 ${\AA}$, 1.931 ${\AA}$ and 2.325 ${\AA}$ respectively. In $[n-Bu_4N]^+$ cation, the N atom possesses a slightly distorted tetrahedral geometry. There are some potential extensive C-H ${\cdots}$ O hydrogen bonds in the lattice, by which connecte molecules and stabilize the crystal structure. Thermogravimetric analysis suggests that thermal decomposition of the title compound includes two transitions and it loses weight at 356.0 and 803.5 $^{\circ}$, respectively, and the residue presumable be $Mo_2O_2$. Accordingly, the title compound has high thermal stability.

Effect of Particle Size on the Atomic Structure of Amorphous Silica Nanoparticles: Solid-state NMR and Quantum Chemical Calculations (비정질 규산염 나노입자의 입자 크기에 따른 원자 구조 변화 : 고상 핵자기공명 분석 및 양자화학계산 연구)

  • Kim, Hyun-Na;Lee, Sung-Keun
    • Journal of the Mineralogical Society of Korea
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    • v.21 no.3
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    • pp.321-329
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    • 2008
  • Amorphous silica nanoparticles are among the most fundamental $SiO_2$ compounds, having implications in diverse geological processes and technological applications. Here, we explore structural details of amorphous silica nanoparticles with varying particle sizes (7 and 14 nm) using $^{29}Si$ and $^{1}H$ MAS NMR spectroscopy together with quantum chemical calculations to have better prospect for their size-dependent atomic structures. $^{29}Si$ MAS NMR spectra at 9.4 T resolve $Q^2,\;Q^3$ and $Q^4$ species at -93 ppm, -101 ppm, -110 ppm, respectively. The fractions of $Q^2,\;Q^3,\;O^4$ species are $7{\pm}1%,\;27{\pm}2%$, and $66{\pm}2%$ for 7 nm amorphous silica nanoparticles and $6{\pm}1%,\;21{\pm}2%$, and $73{\pm}2%$ for 14 nm amorphous silica nanoparticles. Whereas it has been suggested that $Q^2$ and $Q^3$ species exist on particles surfaces, the difference in $Q^{2}\;+\;Q^{3}$ fraction in both 7 and 14 nm particles is not significant, suggesting that $Q^2$ and $Q^3$ species could exist inside particles. $^{1}H$ MAS NMR spectra at 11.7 T shows diverse hydrogen environments, including physisorbed water, hydrogen bonded silanol, and non-hydrogen bonded silanol with varying hydrogen bond strength. The hydrogen contents in the 7nm silica nanoparticles (including water and hydroxyl groups) are about 3 times of that of 14 nm particles. The larger chemical shills for proton environments in the former suggest stronger hydrogen bond strength. The fractions of non-hydrogen bonded silanols in the 14 nm amorphous silica nanoparticles are larger than those in 7 nm amorphous silica nanoparticles. This observation suggests closer proximity among hydrogen atoms in the nanoparticles with smaller diameter. The current results with high-resolution solid-state NMR reveal previously unknown structural details in amorphous silica nanoparticles with particle size.