• 제목/요약/키워드: Ion Range

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진공증착법으로 제조된 $\beta$-PVDF 박막의 유전 특성에 미치는 이온의 영향 (The Effect of Ion Contribution to the Dielectric Properties of $\beta$-PVDF Thin Film Fabricated by Vapor Deposition Method)

  • 박수홍;김종택;이덕출
    • 한국전기전자재료학회논문지
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    • 제11권11호
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    • pp.1007-1013
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    • 1998
  • In this paper, the dielectric properties of fabricated Polyvinylidene fluoride(PVDF, $PVF_2$) thin film with substrate temperature from 30 to at vapor deposition. The dielectric properties of PVDF thin film had been studied in the frequency range from 10Hz to 4MHz at measuring temperature between 20 and $100^{/circ}C$. The anomalous increasing in dielectric constant and dielectric loss at low frequencies and high temperature was described for PVDF thin film containing ion impurities. In particularly, ion mobility of fabricated PVDF thin film at substrate temperature at $30^{/circ}C$ decrease from $2\times10^{-5}\;to\;3.07$\times10^{-7}cm^2/V.s$ On the other hand, ion density increase abruptly from 1.49\times$$10^{13}$ to $1.5\times$10^{16}$cm^{-3}$ In spite of decreasing of ion mobility, dielectric constants and dielectric loss for PVDF thin film increase rapidly with decreasing frequency and high temperature. It was concluded that the dielectric constants and dielectric loss was related to ion density than to ion mobility at low frequency and high temperatures.

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Zeta-potentials of Oxygen and Nitrogen Enriched Activated Carbons for Removal of Copper Ion

  • Park, Kwan-Ho;Lee, Chang-Ho;Ryu, Seung-Kon;Yang, Xiaoping
    • Carbon letters
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    • 제8권4호
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    • pp.321-325
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    • 2007
  • The oxygen and nitrogen enriched activated carbons were obtained from modification of commercial activated carbon by using nitric acid, sodium hydroxide and urea. Zeta-potentials of modified activated carbons were investigated in relation to copper ion adsorption. The structural properties of modified activated carbons were not so much changed, but the zeta-potentials and isoelectric points were considerably changed. The zeta-potential of nitric acid modified activated carbon was the most negative than other activated carbons in the entire pH region, and the $pH_{IEP}$ was shifted from pH 4.8 to 2.6, resulted in the largest copper ion adsorption capacities compare with other activated carbons in the range of pH 3~6.5. In case of urea modified activated carbon, copper ion adsorption was larger than that of the as-received activated carbon from pH 2 to pH 6.5 even though the $pH_{IEP}$ was shifted to pH 6.0, it was due to the coordination process operated between nitrogen functional groups and copper ion. The adsorption capacity of copper ion was much influenced by zeta-potential and $pH_{IEP}$ of carbon adsorbent.

Simulation of 4H-SiC MESFET for High Power and High Frequency Response

  • Chattopadhyay, S.N.;Pandey, P.;Overton, C.B.;Krishnamoorthy, S.;Leong, S.K.
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제8권3호
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    • pp.251-263
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    • 2008
  • In this paper, we report an analytical modeling and 2-D Synopsys Sentaurus TCAD simulation of ion implanted silicon carbide MESFETs. The model has been developed to obtain the threshold voltage, drain-source current, intrinsic parameters such as, gate capacitance, drain-source resistance and transconductance considering different fabrication parameters such as ion dose, ion energy, ion range and annealing effect parameters. The model is useful in determining the ion implantation fabrication parameters from the optimization of the active implanted channel thickness for different ion doses resulting in the desired pinch off voltage needed for high drain current and high breakdown voltage. The drain current of approximately 10 A obtained from the analytical model agrees well with that of the Synopsys Sentaurus TCAD simulation and the breakdown voltage approximately 85 V obtained from the TCAD simulation agrees well with published experimental results. The gate-to-source capacitance and gate-to-drain capacitance, drain-source resistance and trans-conductance were studied to understand the device frequency response. Cut off and maximum frequencies of approximately 10 GHz and 29 GHz respectively were obtained from Sentaurus TCAD and verified by the Smith's chart.

Evolution the surface morphology and mechanical properties of Polyimide induced by Ion Beam Irradiation

  • Ahmed, Sk. Faruque;Nho, Gun-Ho;Moon, Myoung-Woon;Han, Jun-Hyun;Lee, Kwang-Ryeol
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.98-98
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    • 2010
  • Ion beam irradiation has been extensively used for surface modification of polymers, glassy metals and amorphous and crystalline materials at micron and submicron scales. The surface structures created by exposure to an ion beam range from dots, steps and one-dimensional straight wrinkles to highly complex hierarchical undulations and ripples. In general, the morphology of these nanoscale features can be selected by controlling the ion beam parameters (e.g. fluence and acceleration voltage), making ion beam irradiation a promising method for the surface engineering of materials. In the work, we presented that ion beam irradiation results in creation of a peculiar nanoscale dimple-like structure on the surface of polyimide - a common polymer in electronics, large scale structures, automobile industry, and biomedical applications. The role of broad Ar ion beam on the morphology of the structural features was investigated and insights into the mechanisms of formation of these nanoscale features were provided. Moreover, a systematic experimental study was performed to quantify the role of ion beam treatment time, and thus the morphology, on the coefficient of friction of polyimide surfaces covered by nanostructure using a tribo-experiment. Nano-indentation experiment were performed on the ion beam treated surfaces which shows that the hardness as well as the elastic modulus of the polyimide surface increased with increase of Ar ion beam treatment time. The increased of hardness of polyimide have been explained in terms of surface structure as well as morphology changes induced by Ar ion beam treatment.

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국산 Ni-Ti합금 교정용 선재의 특성에 관한 연구 (A STUDY CONCERNING THE CHARACTERISTICS OF KOREAN NI-TI ALLOY ORTHODONTIC WIRE)

  • 박동옥;권오원
    • 대한치과교정학회지
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    • 제25권2호
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    • pp.187-200
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    • 1995
  • 국산 Ni-Ti합금 교정용 선재(ORTHOLLOY)의 특성을 평가하기 위하여 성분, 인장특성, 굽힘특성, 열처리성, 내식성, 이온용출 등에 대해 조사하고 외국산 Ni-Ti합금 선재(SENTALLOY)의 특성과 비교 분석한 결과는 다음과 같았다. ORTHOLLOY는 초탄성 효과를 나타내는 범위내에서의 Ni과Ti 함량을 포함하고 있었다. 인장실험에서 ORTHOLLOY는 연신율 $2\%$에서 $8\%$정도 범위내에서 하중의 변화가 거의 없는 초탄성 효과를 나타내었다. 3점 굴곡실험에서 ORTHOLLOY는 SENTALLOY 보다 같은 변위량에서 높은 하중값을 나타내었고, 초탄성을 나타내는 변위영역에서의 하중 범위는 ORTHOLLOY의 경우 0.014" 에서 80-100g, 0.016"에서 140-180g, 0.018" 에서 150-200g의 값을 나타내었다. $400^{\circ}C,\;500^{\circ}C$의 열처리에 의해 초탄성을 나타내는 하중범 위가 낮아졌고, 각 열처리 온도에서는 시간이 증가함에 따라 초탄성을 나타내는 하중값의 범위가 낮아졌으며 $600^{\circ}C$에서는 10분간의 열처리로 초탄성 효과가 소실되었다. 용출되어 나온 Ni 이온의 양은 SENTALLOY의 0.01ppm미만의 극소량에 비해 ORTHOLLOY에서는 0.3ppm 전후로 높게 나타났다. 침적 실험후 주사전자현미경 관찰을 통한 표면조직 소견은 SENTALLOY에서는 침적 전후 및 침적 시간의 경과에 관계없이 전체적으로 비교적 균일한 양상을 보였으나 ORTHOLLOY에서는 pitting corrosion양상을 보였다.

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N,N,N,N-Tetrabenzylethylenediamine 중성운반체를 이용한 수소 이온 선택성 막전극 (A hydrogen ion-selective membrane electrode based on N,N,N,N-Tetrabenzylethylenediamine as neutral carrier)

  • 정성숙;박면용;정구춘;조동회;이경재;김재우
    • 분석과학
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    • 제8권2호
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    • pp.187-193
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    • 1995
  • N,N,N,N-Tetrabenzylethylenediamine 중성운반체를 이용하여 PVC 수소이온 선택성 막전극을 제조하였다. 가소제 종류(phthalates와 sebacate) 및 친지방성 첨가제(NaTPB)에 따른 막전극의 전기저항과 수소이온 감응범위 및 알칼리금속과 알칼리토금속의 존재하에서 방해효과를 조사하였다. 가소제 종류에 의한 전기저항은 영향을 거의 받지 않았고 NaTPB 0.7%의 경우 수소이온에 대한 Nernstian 기울기는 가장 이론값에 근접하였으며, 또한 알칼리금속 및 알칼리토금속에 의한 방해도 적게 받았다. pH-선택성 고분자 막전극은 pH 2~10 범위내에서 선형적이고, 산과 알칼리용액 중에서 안정성 및 재현성 시험 결과 매우 좋게 나타났다.

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keV and MeV Ion Beam Modification of Polyimide Films

  • Lee, Yeonhee;Seunghee Han;Song, Jong-Han;Hyuneui Lim;Moojin Suh
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2000년도 제18회 학술발표회 논문개요집
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    • pp.170-170
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    • 2000
  • Synthetic polymers such as polyimide, polycarbonate, and poly(methyl methacrylate) are long chain molecules which consist of carbon, hydrogen, and heteroatom linked together chemically. Recently, polymer surface can be modified by using a high energy ion beam process. High energy ions are introduced into polymer structure with high velocity and provide a high degree of chemical bonding between molecular chains. In high energy beam process the modified polymers have the highly crosslinked three-dimensionally connected rigid network structure and they showed significant improvements in electrical conductivity, in hardness and in resistance to wear and chemicals. Polyimide films (Kapton, types HN) with thickness of 50~100${\mu}{\textrm}{m}$ were used for investigations. They were treated with two different surface modification techniques: Plasma Source Ion Implantation (PSII) and conventional Ion Implantation. Polyimide films were implanted with different ion species such as Ar+, N+, C+, He+, and O+ with dose from 1 x 1015 to 1 x 1017 ions/cm2. Ion energy was varied from 10keV to 60keV for PSII experiment. Polyimide samples were also implanted with 1 MeV hydrogen, oxygen, nitrogen ions with a dose of 1x1015ions/cm2. This work provides the possibility for inducing conductivity in polyimide films by ion beam bombardment in the keloelectronvolt to megaelectronvolt energy range. The electrical properties of implanted polyimide were determined by four-point probe measurement. Depending on ion energy, doses, and ion type, the surface resistivity of the film is reduced by several orders of magnitude. Ion bombarded layers were characterized by Time-of-Flight Secondary Ion Mass Spectrometry (TOF-SIMS), XPS, and SEM.

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Consensus channelome of dinoflagellates revealed by transcriptomic analysis sheds light on their physiology

  • Pozdnyakov, Ilya;Matantseva, Olga;Skarlato, Sergei
    • ALGAE
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    • 제36권4호
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    • pp.315-326
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    • 2021
  • Ion channels are membrane protein complexes mediating passive ion flux across the cell membranes. Every organism has a certain set of ion channels that define its physiology. Dinoflagellates are ecologically important microorganisms characterized by effective physiological adaptability, which backs up their massive proliferations that often result in harmful blooms (red tides). In this study, we used a bioinformatics approach to identify homologs of known ion channels that belong to 36 ion channel families. We demonstrated that the versatility of the dinoflagellate physiology is underpinned by a high diversity of ion channels including homologs of animal and plant proteins, as well as channels unique to protists. The analysis of 27 transcriptomes allowed reconstructing a consensus ion channel repertoire (channelome) of dinoflagellates including the members of 31 ion channel families: inwardly-rectifying potassium channels, two-pore domain potassium channels, voltage-gated potassium channels (Kv), tandem Kv, cyclic nucleotide-binding domain-containing channels (CNBD), tandem CNBD, eukaryotic ionotropic glutamate receptors, large-conductance calcium-activated potassium channels, intermediate/small-conductance calcium-activated potassium channels, eukaryotic single-domain voltage-gated cation channels, transient receptor potential channels, two-pore domain calcium channels, four-domain voltage-gated cation channels, cation and anion Cys-loop receptors, small-conductivity mechanosensitive channels, large-conductivity mechanosensitive channels, voltage-gated proton channels, inositole-1,4,5-trisphosphate receptors, slow anion channels, aluminum-activated malate transporters and quick anion channels, mitochondrial calcium uniporters, voltage-dependent anion channels, vesicular chloride channels, ionotropic purinergic receptors, animal volage-insensitive cation channels, channelrhodopsins, bestrophins, voltage-gated chloride channels H+/Cl- exchangers, plant calcium-permeable mechanosensitive channels, and trimeric intracellular cation channels. Overall, dinoflagellates represent cells able to respond to physical and chemical stimuli utilizing a wide range of G-protein coupled receptors- and Ca2+-dependent signaling pathways. The applied approach not only shed light on the ion channel set in dinoflagellates, but also provided the information on possible molecular mechanisms underlying vital cellular processes dependent on the ion transport.

Determination of Cobalt(III) Ion Using a Nafion-Ethylenediamine Modified Glassy Carbon Electrode

  • Kim, Seok Jin;Ko, Young Chun
    • 통합자연과학논문집
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    • 제7권3호
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    • pp.188-192
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    • 2014
  • Determination of cobalt(III) ion with a perfluorinated sulfonated polymer-ethylenediamine (nafion-en) modified glassy carbon electrode is studied. It is based on the chemical reactivity of an immobilized layer, nafion-en, to yield complex $[Co(en)_3]^{3+}$. The reduction peak potential by differential pulse voltammetry (DPV) is observed at $-0.437{\pm}0.047$ V (vs. Ag/AgCl). The linear calibration curve is obtained in cobalt(III) ion concentration range $1.0{\times}10^{-8}{\sim}1.0{\times}10^{-3}M$ ($5.893{\times}10^{-12}{\sim}5.893{\times}10^{-5}g/mL$).