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Lithium ion Transport Characteristics of Gel-Type Polymer Electrolytes Containing Lithium p-[Methoxyoligo(ethyleneoxy)] benzenesulfonates (리튬 p-[메톡시 올리고(에틸렌옥시)]벤젠설폰산염으로 제조된 젤형 고분자 전해질의 리튬 이온 운반 특성)

  • 허윤정;강영구;한규승;이창진
    • Polymer(Korea)
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    • v.27 no.4
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    • pp.385-391
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    • 2003
  • Lithium p-[Methoxyoligo(ethyleneoxy)] benzenesulfonates (LiEOnBS) with different repeating unit of ethylene oxide were synthesized and were used for preparing gel-polymer electrolytes. The conductivities and lithium ion transference number were measured as a function of Li-salt concentration and repeating unit of ethylene oxide of the LiEOnBS. The maximum conductivity of the resulting gel-polymer electrolyte was found to be 4.89${\times}$10$\^$-4/ S/cm (LiEO7.3BS, 0.5 M) at 30$^{\circ}C$. The lithium ion transference number (t$\sub$Li$\sub$+//) measurement were performed by means of the combination do polarization and ac impedance methods in gel-polymer electrolytes. Lithium ion transference number was measured to be in the range of 0.75∼0.92 for the LiEOnBS containing gel-polymer electrolytes. The maximum t$\sub$Li$\sub$+// was obtained to be 0.92 for the 0.1 M LiEOnBS containing polymer electrolytes. The synthesized LiEOnBS showed single ion transport like characteristics when n was large than 3.

Development of Polymer Electrolyte Membranes Using Dipole-dipole Interaction for Fuel Cell Applications (쌍극자-쌍극자 상호작용 형성을 이용한 향상된 기능의 연료전지용 고분자 전해질 막의 개발)

  • Won, Mihee;Kwon, Sohyun;Kim, Tae-Hyun
    • Journal of the Korean Chemical Society
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    • v.59 no.5
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    • pp.413-422
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    • 2015
  • Proton exchange membrane (PEM), which transfers proton from the anode to the cathode, is the key component of the proton exchange membrane fuel cell (PEMFC). Nafion is widely used as PEM due to its high proton conductivity as well as excellent chemical and physical stabilities. However, its high cost and the environmental hazards limit the commercial application in PEMFCs. To overcome these disadvantages, various alternative polymer electrolytes have been investigated for fuel cell applications. We used densely sulfonated polymers to maximize the ion conductivity of the corresponding membrane. To overcome high swelling, dipole-dipole interaction was used by introducing nitrile groups into the polymer backbone. As a result, physically-crosslinked membranes showed improved swelling ratio despite of high water uptake. All the membranes with different hydrophilic-hydrophobic compositions showed higher conductivity, despite their lower IEC, than that of Nafion-117.

RF-Magnetron Sputtering법에 의해 성막된 $Ga_2O_3$가 혼합된 ZnO박막의 전기적 및 광학적 특성

  • Kim, Mi-Seon;Bae, Gang;Son, Seon-Yeong;Hong, U-Pyo;Kim, Hwa-Min;Lee, Jong-Yeong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.120-120
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    • 2010
  • 최근 투명전도성 산화물(Transparent Conductive Oxide, TCO) 박막은 액정 표시소자(LCD), 플라즈마 디스플레이 패널(PDP), 압전소자 및 태양전지의 투명소자로 사용되어지고 있다. 현재 가장 널리 사용되어지고 있는 투명전극물질인 인듐주석산화물(indium tin oxide, ITO)은 낮은 비저항과 높은 투과율을 가지고 있지만, 높은 원자재의 가격 및 수소플라즈마 처리시 In과 Sn이 환원되어 전기적, 광학적으로 불안정한 문제점들이 지적되고 있다. 이러한 문제점들을 해결하기 위해 최근 적외선 및 가시광선 영역에서 높은 투과도 및 전기 전도성과 수소플라즈마에 대한 화학적 안정성을 갖는 ZnO를 기반으로 3족 원소를 첨가한 새로운 투명 전도막에 대한 연구가 활발하다. 본 연구에서는 RF-Magnetron Sputtering법을 이용하여 $Ga_2O_3$ 혼합비에 따라 제작된 ZnO(GZO) 박막들의 전기적, 광학적, 구조적인 특성들을 분석하였다. 측정결과, $Ga_2O_3$의 첨가량이 7 wt.%인 GZO 박막이 가시광선영역에서 80%이상의 높은 투과율과 $50.5\;\Omega/\Box$의 가장 낮은 면저항을 나타내었다. 이는 Ga원소가 다른 3족 원소와 격자결합을 비교할 때, 이온의 크기가 Zn원소와 비슷하여 최적화된 혼합율을 가지는 경우 격자결합을 최소화시켜 캐리어 밀도의 증가로 인해 높은 전도성을 가지며, 고온에서도 전기적 특성 및 내구성이 향상되기 때문이다. 또한 기판온도에 따른 열처리 특성으로서 기판의 온도를 $100^{\circ}{\sim}400^{\circ}C$까지 변화를 주어 실험하였다. X-선 회절패턴 분석결과 기판온도가 증가함에 따라 ZnO (002) 방향이 감소하는 반면 ZnO(103) 방향이 증가하였으며, 기판온도가 $300^{\circ}C$ 일 때 $17.1\;\Omega/\Box$의로 가장 낮은 면저항이 나타났다. 이는 SEM 이미지를 분석한 결과, 실온에서 제작된 박막과 비교해 300 에서 증착된 GZO 박막이 결정립의 크기가 크고 밀도도 조밀해져 전하의 이동도가 향상되었기 때문이다.

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Effect of Ionic Molar Conductivity on Separation Characteristics of Heavy Metals by Nanofiltration Membranes in Waste Water (이온 몰 전도도가 나노여과막에 의한 폐수 중의 중금속 분리특성에 미치는 영향)

  • Oh, Jeong-Ik
    • Land and Housing Review
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    • v.4 no.1
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    • pp.119-124
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    • 2013
  • Generally, the characteristic of nanofiltration membranes were catagorized into charged membrane, sieve effect, interaction between membarnes and target solutes. This study aims to investigate the effect item of heavy metal separation with view of charge nanofiltration membranes. The experiments of nanofiltration were conducted by nanofiltration set-up with operational pressure of 0.24 MPa at $25^{\circ}C$ by using synthetic wastewater containing 0.1mg/L of Cr, Fe, Cu, Zn, As, Sn, Pb. Nanofiltration membranes rejected heavy metals much better than chloride, sulfate and TOC, of which concentration in synthetic wastewater was higher than that of heavy metals. To consider rejection characteristics of various metals by nanofiltration membranes, separation coefficient, which is the molar conductivity ratio of the metal permeation rate to the chloride ion or TOC permeation rate, was introduced. In spite of different materials and different nominal salt rejection of nanofiltration membrane used, the separation coefficients of metals were nearly the same. These phenomena were observed in the relationship between the molar conductivity and the separation coefficient for heavy metals.

Analysis of Combined Conductive and Radiative Heat Transfer in a Two-Dimensional Rectangular Enclosure Using the Discrete Ordinates Method (구분종좌법에 의한 사각형매질내의 복사 및 전도열전달 해석)

  • 김택영;백승욱
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.15 no.1
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    • pp.341-348
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    • 1991
  • An efficient tool to deal with a multi-dimensional radiative heat transfer is in strong demand to analyze various thermal problems combined either with other modes of heat transfer or with combustion phenomena. The current study examined the discrete ordinates method (DOM) for a coupled radiative and conductive heat transfer in rectangular enclosures in which either nonscattering or scattering medium is present. The results were compared with the other benchmarked approximate solution. The efficiency and accuracy of the DOM were thus validated.

Purification of Biosynthesized Hyaluronic Acid for Its Medical Application (생합성 히아루론산의 의료용을 위한 정제)

  • 오덕근
    • KSBB Journal
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    • v.11 no.1
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    • pp.15-21
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    • 1996
  • Purification of hyaluronic acid produced by Streptococcus equi was carried out to obtain clinical grade hyaluronic acid. The removal method of the bacteria was selected as filtration because filtration was the most effective method in removing impurities such as protein and nucleic acid of the fermentation broth. The removal efficiencies of protein and nucleic acid of hyaluronic acid solution were increased to 75% and 67%, respectively, by filtration with adding 0.6% of activatied carbon and 1.0% colite. Hyaluronic acid solution was precipitated by mixing with 2 volumes of ethanol. Effects of pH and conductivity on ethanol preciptation of hyaluronic acid were investigated. Protein and nucleic acid of hyaluronic acid were remained almost constant regardless of pH and conductivity, and the recovery of hyaluronic acid was optimum as about 85% at pH 7 and l00mS of conductivity Protein of hyaluronic acid was completly removed by three serial filtration and ethanol precipitation, however, nucleic acid was not removed. Hyaluronic acid solution was passed through a column of Duolite A7 to remove its nucleic acid, where 65% of nucleic acid was removed at pH 7 and 40mS of conductivity. The residual nucleic acid of hyaluronic acid solution was completly removed by treatment of 0.2% hydroxyapatite and the clinical grade hylauronic acid could be obtained.

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A Study on Electromagnetic Properties in OPC Mortar with Different Chloride Content (염화물을 혼입한 OPC 모르타르의 전자기 특성에 대한 연구)

  • Kwon, Seung-Jun;Na, Ung-Jin;Feng, M.Q.
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.28 no.4A
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    • pp.565-571
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    • 2008
  • Recently, the evaluation technique using NDT (Nondestructive Technique : NDT) is widely utilized because it makes little damage on RC (Reinforced Concrete : RC) structures. The techniques using electromagnetic properties (EM properties) are also attempted for the evaluation of the performance of concrete which is nonmetallic. For the economic manufacturing of concrete material, sea-sand is often used as aggregate, however, chloride ion in concrete has direct effects on steel corrosion and EM properties. In this study, OPC mortar specimens with 5 different chloride amount (0.0, 0.6, 1.2, 2.4, and $3.6kg/m^3$) and 3 different water-cement ratios (45%, 55%, and 65%) are prepared in order to investigate the EM properties corresponding to concrete properties. The EM properties of conductivity and dielectric constant are measured in the frequency range over 0.2~20 GHz. To facilitate the comparison of EM properties with chloride content, average values are taken respectively for the conductivity and dielectric constant measured over the 5~20 GHz frequency range. According to the results of this experiment, dielectric constant and conductivity are increased with lower W/C ratio and larger amount of chloride content.

Conductive Performance of Mortar Containing Fe-Activated Biochar (Fe에 의해 활성화된 목질계 바이오차를 혼입한 모르타르의 전도성능)

  • Jin-Seok Woo;Ai-Hua Jin;Won-Chang Choi;Soo-Yeon Seo;Hyun-Do Yun
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.28 no.2
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    • pp.27-34
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    • 2024
  • This study was conducted to examine the feasibility of using Fe-activated wood-derived biochar as a conductive filler for manufacturing cement-based strain sensor. To evaluate the compressive and electrical properties of cement composite with 3% Fe-activated biochar, three cubic specimens of size 50 x 50 x 50mm3 and three prismatic cement-based sensors of size 40 x 40 x 80mm3 were prepared respectively. The four-probe method of electrical resistance measurement was used for cement-based sensors. For cement-based sensors with FE-activated biochar, the conductive performance such as electrical resistance and impedance under different water content and repeated compression was investigated. Results showed that the fractional changes in the DC electrical resistivity of cement-based sensors increase with increasing time and the maximum fractional changes in the resistivity decrease with increasing the moisture contents during 900s. At moisture content of 7.5% range, the conductive performance of cement composite including 3% Fe-activated biochar as a conductive filler showed the most stable, while the strain detection ability tended to decrease somewhat as the repeated compressive stress increased between repeated compressive strain and fractional change in resistivity (FCR).

그래핀-탄소나노튜브 복합체로 제작한 유연성 투명 전도막의 반복 변형에 대한 내구성 향상

  • Lee, Byeong-Ju;Jeong, Gu-Hwan
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.202-202
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    • 2012
  • 유연성 투명 전도막은 현대 전자산업의 발전에 있어 필수적인 부품소재로서, 가시광선의 투과율이 80% 이상이고 면저항이 $100{\Omega}/sq.$ 전후이며 휘거나 접히고 나아가 두루마리의 형태로도 응용이 가능한 소재를 일컫는다. 이러한 유연성 투명 전도막은 차세대 정보디스플레이 산업 및 유비쿼터스 사회의 중심이 되는 유연성 디스플레이, 터치패널, 발광다이오드, 태양전지 등 매우 다양한 분야에 응용이 기대된다. 이러한 이유로 고 신뢰성 유연성 투명 전도막 개발기술은 차세대 산업에 있어서의 핵심기술로 인식되고 있다. 현재로서는 인듐 주석 산화물(indium tin oxide; ITO) 및 전도성 유기고분자를 사용하여 투명 전도막을 제조하고 있으나, ITO 박막의 경우 인듐 자원의 고갈로 인한 가격상승 및 기판과의 낮은 접착력, 열팽창계수의 차이로 인한 공정상의 문제, 산화물 특유의 취성으로 인한 유연소자로서의 내구성 저하 등의 문제가 제기되고 있다. 전도성 유기고분자의 경우는 낮은 전기전도도와 기계적강도, 유기용매 처리 등의 문제점이 지적되고 있다. 따라서 높은 전기전도도와 투광도 뿐만 아니라 유연성을 지니는 재료의 개발이 요구되고 있는 실정이다. 최근 이러한 재료로서 그래핀(graphene)과 탄소나노튜브(carbon nanotube; CNT)를 중심으로 하는 탄소나노재료가 주목받고 있으며 많은 연구가 활발히 진행되고 있다. 본 연구에서는 열화학기상증착법(thermal vapor deposition; TCVD)으로 합성된 그래핀 및 CNT를 이용하여 탄소나노재료 복합체 기반의 유연성 투명 전도막을 제작하고 그 특성을 평가하였다. 그래핀과 CNT합성을 위한 기판으로는 각각 300 nm 두께의 니켈과 1 nm 철이 증착된 실리콘 웨이퍼를 이용하였으며, 원료가스로는 메탄(CH4)과 아세틸렌(C2H2)등의 탄화수소가스를 이용하였다. 그래핀의 경우 원료가스의 유량, 합성온도, 냉각속도를 변경하여 대면적으로 두께균일도가 높은 그래핀을 합성하였으며, CNT의 경우 합성시간을 변수로 길이 제어합성을 도모하였다. 합성된 그래핀은 식각공정을, CNT는 스프레이 증착공정을 통해 고분자 기판(polyethylene terephthalate; PET) 위에 순차적으로 전사 및 증착하여 탄소나노재료 복합체 기반의 유연성 투명 전도막을 제작하였다. 제작된 탄소나노재료 복합체 기반의 유연성 투명 전도막은 물리적 과부하를 받았을 때 발생할 수 있는 유연성 투명 전도막의 구조적결함에 기인하는 전도성 저하를 보상하는 특징이 있어, 그래핀과 탄소나노튜브 각각으로 제조된 유연성 투명 전도막보다 물리적인 하중이 반복적으로 인가되었을 때 내구성이 향상되는 효과가 있다. 40% 스트레인을 반복적으로 인가하였을 때 그래핀 투명 전도막은 20 사이클 이후에 면저항이 $1-2{\Omega}/sq.$에서 $15{\Omega}/sq.$ 이상으로 급증한 반면 그래핀-CNT 복합체 투명 전도막은 30사이클까지 $1-2{\Omega}/sq.$ 정도의 면저항을 유지하였다.

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Influence of Electrical Conductivity of Dielectric on Machinability of W-EDM (방전액의 전도율이 와이어방전가공성에 미치는 영향)

  • Kim, Chang-Ho
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.26 no.2
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    • pp.322-328
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    • 2002
  • In wire-electrical discharge machining (W-EDM), the dielectric plays an important role as the working fluid. It affects the material removal rate and the properties of the machined surface. This paper deals with the effects of the electrical conductivity of dielectric and cobalt percentage of sintered carbides on the machining characteristics and the machined surface integrities with deionized water as dielectric. A series of experiments have been performed on sintered carbides having different cobalt contents. Experimental results show that a higher cobalt content of WC decreases the metal removal rate and worsens the surface quality. Lower electrical conductivity of the dielectric results in a higher metal removal rate as the gap between wire electrode and workpiece reduced. Especially, the surface integrities of rough-cut workpiece, wire electrode, and debris were analyzed also through scanning electron microscopy(SEM) and surface roughness tester. By energy dispersive spectrometry(EDS), it is confirmed that micro cracks and some of electrode material are found on the workpiece surface.