• 제목/요약/키워드: Ion oxide

검색결과 1,042건 처리시간 0.029초

Layered Nickel-Based Oxides on Partially Oxidized Metallic Copper Foils for Lithium Ion Batteries

  • Chung, Young-Hoon;Park, Sun-Ha;Kim, Hyun-Sik;Sung, Yung-Eun
    • Journal of Electrochemical Science and Technology
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    • 제2권4호
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    • pp.204-210
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    • 2011
  • Thin film electrodes have been intensively studied for active materials and current collectors to enhance the electrochemical performance. Here, porous structures of nickel-based oxide films, consisting of nickel oxide and copper (II) oxide, which was derived from the copper substrate during the annealing process, were deposited on metallic copper foils. The half-cell tests revealed excellent capacity retention after $80^{th}$ charge/discharge cycles. Some films showed an excess of the theoretical capacity of nickel oxides, which mainly originate from partially oxidized copper substrates during annealing. These results exhibit that both a preparation method of an active materials and partially oxidized current collectors could be important roles to apply thin film electrodes.

Preparation of bi-polar membranes and their application to hypochlorite production

  • Kim, Jung Sik;Cho, Eun Hye;Rhim, Ji Won;Park, Chan Jong;Park, Soo-Gil
    • Membrane and Water Treatment
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    • 제6권1호
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    • pp.27-42
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    • 2015
  • In this study, poly (phenylene oxide) (PPO) and poysulfone (PSf) were sulfonated and aminated respectively. Both sulfonated poly (phenylene oxide) (SPPO) and aminated polysulfone (APSf) were characterized via the measurement of FT-IR, swelling degree, ion exchange capacity (IEC), and ion conductivity. Then the surfaces of these membranes were modified by surface fluorination using 2000 ppm $F_2$ gas against $N_2$ gas for 1 h at room temperature. The surface fluorinated SPPO and APSf membranes were characterized again to determine any differences between the pristine and fluorinated membranes. In total, 3 types of bi-polar membranes were prepared by varying the IEC of the APSf and having a fixed value for the IEC of the SPPO. The hypochlorite concentration generated by using the surface fluorinated membranes was dependent on the IEC of the APSf and ranged from 683 to 826 ppm, while there was a considerable improvement in the durability of the surface fluorinated membranes as they remained intact even after operating for 4 h.

상온 이온 보조 증착된 ITO 박막의 특성 (Properties of indium tin oxide thin films prepared by ion assisted deposition at room temperature)

  • 이임영;최상대;이기암
    • 한국광학회지
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    • 제13권3호
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    • pp.204-208
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    • 2002
  • 본 논문에서는 ITO박막의 면저항과 투과율의 최적 상태를 얻기 위해 이온총에 주입된 Ar:O$_2$혼합비율과 이온빔 발산 각안으로 도입된 $O_2$에 따른 변화를 연구하였다. 기판은 이온빔 발산 각 외부에 위치시켰고, 박막은 상온에서 전자빔으로 증발시킨 ITO와 이온 mixing하여 제작하였다. XRD 측정 결과, 상온에서 제작된 ITO 박막은 모두 비정질이었다. 3$\times$$10^{-5}$ Torr의 산소 분위기에서 이온총에 주입된 Ar:O$_2$비율이 40:60일 때 85%로 가장 높은 투과율을 보였고, 1$\times$$10^{-5}$ Torr에서 Ar:O$_2$비율이 40:60일 때 132 $\Omega$/$\square$ 의 가장 낮은 면 저항을 보였다.

Indium Tin Oxide(ITO) Thin Film Deposition on Polyethylene Terephthalate(PET) Using Ion Beam Assisted Deposition(IBAD)

  • Bae, J.W.;Kim, H.J.;Kim, J.S.;Lee, Y.H.;Lee, N.E.;Yeom, G.Y.
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2000년도 제1회 학술대회 논문집
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    • pp.81-83
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    • 2000
  • Tin-doped indium oxide(ITO) thin films were deposited on polyethylene terephthalate(PET) at room temperature by oxygen ion beam assisted evaporator system and the effects of oxygen gas flow rate on the properties of room temperature ITO thin films were investigated. Plasma characteristics of the ion gun such as oxygen ions and atomic oxygen radicals as a function of oxygen flow rate were investigated using optical emission spectroscopy(OES). Faraday cup also used to measure oxygen ion density. The increase of oxygen flow rate to the ion gun generally increase the optical transmittance of the deposited ITO up to 6sccm of $O_2$ and the further increase of oxygen flow rate appears to saturate the optical transmittance. In the case of electrical property, the resistivity showed a minimum at 6 sccm of $O_2$ with the increase of oxygen flow rate. Therefore, the improved ITO properties at 6 sccm of $O_2$ appear to be more related to the incorporation of low energy oxygen radicals to deposited ITO film rather than the irradiation of high energy oxygen ions to the substrate. At an optimal deposition condition, ITO thin films deposited on PET substrates showed the resistivity of $6.6{\times}10^{-4}$ ${\Omega}$ cm and optical transmittance of above 90%.

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Photoluminescent Graphene Oxide Microarray for Multiplex Heavy Metal Ion Analysis

  • Liu, Fei;Ha, Hyun Dong;Han, Dong Ju;Park, Min Su;Seo, Tae Seok
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.281.2-281.2
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    • 2013
  • Since heavy metal ions included in water or food resources have critical effects on human health, highly sensitive, rapid and selective analysis for heavy metal detection has been extensively explored by means of electrochemical, optical and colorimetric methods. For example, quantum dots (QDs), such as semiconductor QDs, have received enormous attention due to extraordinary optical properties including high fluorescence intensity and its narrow emission peaks, and have been utilized for heavy metal ion detection. However, the semiconductor QDs have a drawback of serious toxicity derived from cadmium, lead and other lethal elements, thereby limiting its application in the environmental screening system. On the other hand, Graphene oxide (GO) has proven its superlative properties of biocompatibility, unique photoluminescence (PL), good quenching efficiency and facile surface modification. Recently, the size of GO was controlled to a few nanometers, enhancing its optical properties to be applied for biological or chemical sensors. Interestingly, the presence of various oxygenous functional groups of GO contributes to opening the band gap of graphene, resulting in a unique PL emission pattern, and the control of the sp2 domain in the sp3 matrix of GO can tune the PL intensity as well as the PL emission wavelength. Herein, we reported a photoluminescent GO array on which heavy metal ion-specific DNA aptamers were immobilized, and sensitive and multiplex heavy metal ion detection was performed utilizing fluorescence resonance energy transfer (FRET) between the photoluminescent monolayered GO and the captured metal ion.

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