• 제목/요약/키워드: 용액 전도도

검색결과 339건 처리시간 0.027초

Process for the Preparation of Conducting Polymer Composites (I) : Effect of the Porosity on the Conductivity (전도성 고분자 복합체 제조를 위한 신합성 연구 (I) : 다공성정도가 전도성 고분자 복합체의 전도도에 미치는 영향)

  • Son, Suk-Hye;Park, Young-Jun;Kim, Jung-Hyun
    • Applied Chemistry for Engineering
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    • 제7권2호
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    • pp.393-400
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    • 1996
  • The conducting polymer composites were prepared by imbibing the porous particle with an $FeCl_3$ oxidant solution, drying the imbibed porous particle, and imbibing again with pyrrole solution for polymerization to take place in the pore. The conductivity of the porous composite particles, was higher than that of nonporous particles. Also, the conductivity of composite was increased with increasing specific surface area and pore specific volume of the host porous particles since the degree of formation of conducting polymer in the pore increased.

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Electrical Resistivity of Cylindrical Cement Core with Successive Substitution by Electrolyte of Different Conductivity (전도성이 다른 공극수로 순차 치환한 시멘트 시험편의 전기비저항)

  • Lee, Sang-Kyu;Lee, Tae-Jong
    • Geophysics and Geophysical Exploration
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    • 제12권4호
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    • pp.328-337
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    • 2009
  • To investigate the relation between pore fluid conductivity and bulk resistivity of a rock sample it is assumed that electrolyte solution perfectly substitute the pore fluid that occupied the pore space within the sample in general. In this study, it is investigated that how much can the electrolyte solution substitute the pore fluid by repeating the same saturation process. Four kinds of NaCl solutions of 8, 160, 3200, 64000 ${\mu}S$/cm are used. The saturation process has repeated four times for each electrolyte in increasing conductivity order first then four times each in decreasing order. The more the saturation process repeated with the same electrolyte, the more electrolyte solution substitute the pore fluid. Geometric mean of bulk resistivity in increasing and decreasing orders with the same electrolyte solution is assumed to be mostly close to the bulk resistivity with perfect substitution. Bulk resistivity measurements for both increasing and decreasing order differs within 10% to the geometric mean when repeating the saturation process 4 times while maximum 40% difference is observed when single saturation process for each electrolyte solution with increasing order. The modified parallel resistant model can generally represent the relations between pore fluid resistivity and bulk resistivity in the experiment, but more experimental data with various rock samples with different porosity is needed to generalize the model.

Preparation of Porous Separators for Zn Air Batteries through Phase Inversions of Polyetherimide-PVP Solutions (Polyetherimide-PVP 용액의 상전이를 통한 아연공기전지의 다공성 분리막 제조)

  • Cho, Yu Song;Kim, Young Kyoung;Koo, Ja-Kyung
    • Membrane Journal
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    • 제24권3호
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    • pp.231-239
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    • 2014
  • Polyetherimide (PEI) membranes for separators in Zn air batteries were prepared via phase inversion process from casting solution composed of PEI, n-methylpyrolidone (NMP), and polyvinylpurrolidone (PVP). Furthermore, Zn air batteries were fabricated with the separators. The effects of PEI content and PVP addition in the casting solution on the morphology, mechanical strength, ionic conductivity were investigated through SEM, stress-strain test and ac impedance test. The elelctrochemical performances of the batteries were evaluated through galvanostatic discharge analysis. The mechanical strength of the membrane increased with increasing PEI composition in the casting solution. Little effect of PVP addition into the solution on the mechanical strength of the membrane was investigated. The ionic conductivity value decreased with increasing PEI composition in the solution. With addition of PVP, ionic conductivity of membrane increased until 10 wt% to show the maximum value of 0.1 S/cm. In the higher range of PVP addition over 10%, the ionic conductivity decreased with increasing PVP addition. Ionic conductivity of separator strongly affected the capacity of Zn air battery, and the battery assembled with the separator which showed high ionic conductivity showed high capacity.

탄소나노튜브를 이용한 고성능 투명 전도성 필름의 제조

  • Jeong, Hyeok;Kim, Do-Jin
    • Proceedings of the Materials Research Society of Korea Conference
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    • 한국재료학회 2012년도 춘계학술발표대회
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    • pp.112.2-112.2
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    • 2012
  • 고투과도, 고전도성을 갖는 탄소나노튜브 기반의 투명 전도성 필름은 분산조건의 최적화에 의해 제조하였다. 탄소나노튜브간의 응집현상은 탄소나노튜브간의 접촉저항의 증가를 야기하여 탄소나노튜브가 갖고 있는 고유의 우수한 전기적 특성을 감소시킨다. 이에 대해 본 연구에서는 분산제 농도, 분산 시간, 기판 표면처리에 따른 특성 변화 및 이에 따른 탄소나노튜브간의 응집이 최소화된 용액을 제조하였다. 또한, 이를 기반으로 연속공정이 가능한 탄소나노튜브 용액을 제조하고 평가하였다.

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Octanethiol 산화 방지 처리된 구리 나노분말의 분산 용액 제조

  • Kim, Dong-Gwon;Gwon, Jin-Hyeong;Jo, Dong-Guk;Kim, Yeong-Seok;Lee, Seon-Yeong
    • Proceedings of the Materials Research Society of Korea Conference
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    • 한국재료학회 2009년도 추계학술발표대회
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    • pp.48.2-48.2
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    • 2009
  • 구리 나노분말은 우수한 전기전도도와 상대적으로 저렴한 가격으로 주목을 받고 있어이를 이용한 다양한 기술들이 개발 중에 있다. 이들 중 잉크젯 프린팅용 구리 나노잉크는 기존의 포토리소그래피방식의 복잡한 공정단계와 이로 인한 단가 인상을 해결할 수 있는 공정으로 기대되는 잉크젯 프린팅에 구리를 사용할 수 있게 해주어 광범위한 응용이가능할 것으로 기대되어 많은 연구가 진행되고 있는 분야이다. 실제로 구리 나노분말의 이용하게 될 때에있어서 어려운 점 중 하나가 바로 빠른 표면 산화의 문제이다. 이를 막기 위해 본 연구에서는 건식 분말코팅 방법을 이용해 octanethiol 자기조립박막을 구리 표면에 부착한 분말을 사용하여 구리 나노분말용액을 제조하는 실험을 수행하였다. 건식 분말 코팅에 의해 산화 방지막이 부착된 분말을 표면 활성제인 Diethanolamine을 이용해 안정적으로 분산시켜 잉크로 사용이 가능한 용액을 제조해 보고, 분산된 용액의 안정도를 확인하기 위해 zetapotential analyzer를이용하여 분산도를 분석하였다. 또한 분산된 용액의 활용 실험을 위해 유리 기판에 바른 용액을 질소 분위기의튜브로에서 $250^{\circ}C$, $300^{\circ}C$, $400^{\circ}C$의 온도에서 30분간 소결을 진행한 후 probe-station을 이용하여 전기 전도도를 측정하였다. 이렇게제작된 샘플은 Scanning Electronic Microscope 를 이용하여 소결된 상태의 표면의 사진을 찍어 서로 비교해보았다. $300^{\circ}C$에서 소결한 시편부터 소결이 시작되어 $400^{\circ}C$에서 소결한 시편은 다량의 소결목이 형성되었다.

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A Study on the Electrometric Measurement of the pH of Acid Rain (산성비의 pH 측정에 대한 연구)

  • Lee, Hwa-Shim;Kim, Myung-Soo
    • Journal of the Korean Chemical Society
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    • 제44권1호
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    • pp.10-16
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    • 2000
  • In general, acid rain is unbuffered solution with low ionic strength and high resistance. Therefore during the pH measurement of acid rain, error can be occurred due to the liquid junction potential difference between the sample and the standard solution. Actually the average conductivity of rain in Taeduk Science Town during 1998 is 12.8 ${\mu}S/cm$, while that of pH standmd solutions is about 5,980 ${\mu}S/cm$. There is a large difference in ionic strength. To compensate the bias due to residual liquid junction potentials, a quality control standard(QCS) of dilute sulfuric acid, which has the conductivity and pH values simikw to rain, was prepared. The pH of QCS solution was determined using the hydrogen electrode system without liquid junction, and compensation has been made for the bias terms by performing the pH measurements with glass electrode. On the basis of this compensation method, the pH vaiues of rain in Taeduk Science Town during 1998 were measured.

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Preparation of Conductive Coating Solutions by Blending Waterborne Acrylic Polyurethane Dispersion with Carbon Nanotube (수분산 아크릴 폴리우레탄과 탄소나노튜브의 혼합에 의한 전도성 코팅용액 제조)

  • Huh, Woo Young;Yun, Dong Gu;Song, Ki Chang
    • Korean Chemical Engineering Research
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    • 제51권1호
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    • pp.73-79
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    • 2013
  • Waterborne polyurethane dispersion (WPUD) was synthesized from polycarbonate diol (PCD), isophorone diisocyanate (IPDI) and dimethylol propionic acid (DMPA) as starting materials. Then, waterborne acrylic polyurethane dispersion (AUD) was synthesized by reacting the WPUD with an acrylate monomer, methyl methacrylate (MMA). Subsequently, the AUD was mixed with multi-walled carbon nanotube (MWCNT) to yield a conductive coating solution, and the mixture was coated on the polycarbonate substrate. With increasing the amount of MMA in the AUD, the pencil hardness, abrasion resistance and chemical resistance of the coating films were improved, but the electrical conductivity of the coating films was decreased. On the other hand, the pencil hardness, abrasion resistance and chemical resistance of coating films were decreased, but the electrical conductivity was enhanced with increasing the amount of MWCNT in the conductive coating solutions.

Improvement of Properties in Solid Polymer Electrolyte Using New Preparation Method (새로운 막 제조 방법에 의한 고분자 전해질막의 특성 향상)

  • Kim, Tae-Hee;Lee, Jung-Hun;Park, Kwon-Pil
    • Journal of Hydrogen and New Energy
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    • 제17권3호
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    • pp.331-337
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    • 2006
  • 높은 이온전도도와 충분한 기계적 강도, 전해질 누수가 적은 새로운 형태의 고분자 전해질막(pore-gel SPE)을 연구 개발하였다. 다공성 PVDF-HFP 고분자막의 기공 내에 전해질 용액을 흡수시킨 후 막 내에서 젤화를 진행시켰다. 전해질 용액은 2:2:1의 비를 갖는 PC/EC/DMA에 1M SA(Salicylic acid)를 용해하고 여기에 고분자막을 용해시킬 수 있는 아세톤을 첨가하였다. 초음파를 이용함으로써 고분자막의 용액 흡수율을 증가시키고 또 고분자막에서 젤화를 촉진 시킬 수 있었다. 이렇게 젤화한 막의 이온전도도는 젤화 전 막보다 $1{\sim}2.2$ 배 향상되었고, 인장강도는 gel-type SPE 보다 40 배 증가하였으며, 전해질 누수실험결과 hybrid-type SPE는 13%의 누수를 보였으나 본 연구의 막(pore-gel SPE)은 6%로 감소함을 보였다.

The Study on property of electrical conduction through variable tip-distance Using STM (STM 탐침과 니트로벤젠 분자 사이의 거리변화에 따른 전기전도 특성 연구)

  • Lee, Nam-Suk;Choi, Won-Suk;Chang, Jeong-Soo;Kwon, Young-Soo
    • Proceedings of the KIEE Conference
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    • 대한전기학회 2006년도 제37회 하계학술대회 논문집 C
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    • pp.1390-1391
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    • 2006
  • 본 연구에서는 전도성 분자로 잘 알려진 4,4-Di(ethynyl phenyl) -2'-nitro-1-(thioacetyl)-benzene(nitro - benzene) 분자를 Au (111) 표면에 자기조립하고, ultra high vacuum scanning tunneling microscopy (UHV-STM)을 사용하여 STM tip과 sample 사이의 거리를 변화시키면서 전기전도 특성을 측정하였다. Au 기판제작은 연증착시스템 (Thermal Evaporation System)으로 제작하였으며, piranha 용액 ($H_{2}SO_{4}\;:\;H_{2}O_{2}$=3:1)을 사용하여 전치리한 후, 자기조립 단분자막 (SAMs)을 형성하였다. 먼저 1-octanethiol을 ethanol solution용액 1 mM/L 농도에서 24시간 동안 자기조립한 후에, ethanol를 solution 용액으로 이용하여 nitro-benzene를 0.1 nM/L 농도로 암실에서 30분간 자기조립 하였다. 자기조림 후 solution을 제거하기 위해 에탄올로 세척하여 $N_2$로 건조시켰다. 이 조건하에서 UHV-STM을 사용하여 nitro-benzene SAMs의 실시간 모폴로지의 변화에 따른 nitro-benzene의 전기전도 특성을 STM tip - SAMs - Au 기판의 수직구조로 STM tip과 nitro-benzene의 거리를 변화시키면서, tunneling current을 조사하였다. 측정 결과 Z-position 변화에 대한 tunneling current와 resistance의 변화를 확인할 수 있었다.

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Fabrication and Characterization of UV-curable Conductive Transparent Film with Polyaniline Nanofibers (폴리아닐린 나노섬유를 이용한 광경화형 전도성 투명필름의 제조 및 특성)

  • Kim, Sung-Hyun;Song, Ki-Gook
    • Polymer(Korea)
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    • 제36권4호
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    • pp.531-535
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    • 2012
  • Conductive polyaniline (PANI) nanofibers in UV-curable resin were used for a transparent conductive film. The emeraldine-salt PANI (ES-PANI) nanofibers were prepared by chemical oxidation polymerization of aniline, which could be changed into emeraldine-base PANI by dedoping. EB-PANI nanofibers as a precursor for conductive fillers were thereby transformed into re-dpoed PANI (rES-PANI) by dodecylbenzenesulfonic acid in the UV-curable resin solution. rES-PANI nanofibers have high conductivity and long-term stability in the solution without a defect of nanostructure. The resulting conductive resin solution was proved to be highly stable where no precipitation of rES-PANI fillers was observed over a period of 3 months. The transparent film was spin-casted on a poly(methyl methacrylate) sheet of thickness ca. $5{\mu}m$. A surface resistance of $6.5{\times}10^8{\Omega}/sq$ and transmittance at 550 nm of 91.1% were obtained for the film prepared with a concentration of 1.4 wt% rES-PANI nanofibers in the solution. This transformation process of rES-PANI from ES-PANI by dedoping-redoping can be an alternative method for the preparation of an antistatic protection film with controllable surface resistance and optical transparencies with the PANI concentration in UV-curable solution.