• Title/Summary/Keyword: 전극 면적비

Search Result 116, Processing Time 0.032 seconds

Mixed Carbon/Polypyrrole Electrodes Doped with 2-Naphthalenesulfonic Acid for Supercapacitor (2-Naphthalenesulfonic Acid로 도핑된 혼합카본/폴리피롤을 이용한 Supercapacitor용 전극)

  • Jang, In-Young;Kang, An-Soo
    • Korean Chemical Engineering Research
    • /
    • v.43 no.3
    • /
    • pp.425-431
    • /
    • 2005
  • New type of supercapacitor using high surface area activated carbons mixed with high conductivity polypyrrole (Ppy) has been prepared in order to achieve low impedance and high energy density. Mixed carbons of BP-20 and MSP-20 were used as the active electrode material, and polypyrrole doped with 2-naphthalenesulfonic acid (2-NSA) and carbon black (Super P) as conducting agents were added to activated carbons in order to enhance good electric conductivity. Electrodes prepared with the activated electrode materials and the conducting agents were added to a solution of organic binder [P(VdF-co-HFP) / NMP]. The ratio of optimum electrode composition was 78 : 17 : 5 wt.% of (MSP20 : BP-20=1 : 1), (Super P : Ppy=10 : 7) and P(VdF-co-HFP) respectively. The performance of unit cell with addition of 7 wt% Ppy have shown specific capacitance of 28.02 F/g, DC-ESR of $1.34{\Omega}$, AC-ESR of $0.36{\Omega}$, specific energy of 19.87 Wh/kg and specific power of 9.77 kW/kg. With addition of Ppy, quick charge-discharge of unit cell was possible because of low ESR, low charge transfer resistance and quick reaction rate. And good stability up to 500 chargedischarge cycles were retained about 80% of their original capacity. It was concluded that the specific capacitance originated highly from compound phenomena of the pseudocapacitance by oxidation-reduction of polypyrrole and the nonfaradaic capacitance by adsorption-desorption of activated carbons.

Ar 및 N2 기체유입에 따른 저온 대기압 DBD플라즈마에 의한 Fungi의 노출 효과

  • Gang, Ju-Su;Baek, Gu-Yeon;Yu, Yeong-Hyo;Kim, Yong-Hui;Choe, Eun-Ha
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2012.02a
    • /
    • pp.514-514
    • /
    • 2012
  • 면방전 구조의 대가압 DBD플라즈마 소스를 제작하여 Ar과 N2 기체를 유입하여 미생물인 Fungi의 변화를 관찰하였다. 면방전 구조의 DBD플라즈마 소스는 유리기판위에 포토리소그라피 공정으로 미소전극을 형성하여 고밀도의 방전셀을 형성하였다. 방전시 발생하는 열에 의한 효과의 제어를 위하여 냉각장치를 장착하였다. 또한 유리기판과 포토리소그라피 공정은 방전영역에 제한없이 다양한 크기의 소스제작이 가능하다. 셀 피치가 $400{\mu}m$이며 $cm^2$ 당 200여개의 방전 셀로 구성되어 있어서 기존 메쉬타입의 DBD플라즈마 장치에 비해 균일하게 플라즈마를 조사할 수 있으며 플라즈마 제트 장치에 비해서는 넓은 면적을 동시에 조사할 수 있게 되었다. Ar 과 N2기체를 3 L/min의 유량으로 방전공간에 유입하면서 1 kV의 구동전압으로 플라즈마를 발생하였다. 이 경우 플라즈마의 조사시간을 20 s, 40 s, 60 s 간격으로 변화를 주며 Fungi의 변화를 관찰하였다.

  • PDF

금속-유기 구조체 기반 비효소식 글루코오스 센서

  • Kim, Gi-Jun;Bae, Yun-Sang;Kim, Hyeon-Jong
    • Proceedings of the Korean Institute of Surface Engineering Conference
    • /
    • 2018.06a
    • /
    • pp.92.2-92.2
    • /
    • 2018
  • 빠르고 정확한 글루코오스 농도 측정은 의료, 식품, 환경 등 다양한 산업에서 매우 중요하다. 글루코오스 산화효소를 기반으로 하는 현재 글루코오스 센서는 높은 감도와 선택성을 갖지만 온도변화나 다른 화학물 등 환경에 취약하다는 단점이 있다. 따라서 최근 비효소식 글루코오스 센서에 대한 연구가 활발히 진행되고 있다. 금속-유기 구조체(MOFs)는 금속이온과 유기물 리간드로 구성된 결정성 다공체로, 큰 기공 크기와 비표면적, 안정성 등을 특징으로 갖는다. 대부분의 MOFs는 전기전도도가 낮지만 금속이온의 산화/환원, 리간드의 화학적 개질을 통해 전기화학분야에서도 다양하게 연구되고 있다. 본 연구에서는 글루코오스 농도 측정을 위한 전극촉매로 다양한 금속이온과 리간드로 이루어진 MOFs를 합성했다. 표면분석을 통해 MOFs의 전기화학적 처리 전후의 구조와 성질 변화를 관찰했고 전기화학적 분석을 통해 금속이온과 리간드의 종류가 감도, 선택성 등 글루코오스 검지 성능에 주는 영향을 분석했다. 그 결과 Ni, Co 기반의 MOFs가 글루코오스에 대해 높은 감도를 보였으며 이를 통해 MOFs의 글루코오스 센서로의 응용 가능성을 확인했다.

  • PDF

Electrochemical Properties of PAN-based Carbon Fibers Tow Electrode Using Organic/inorganic Nanocomposite and Its Application of Non-enzymatic Sensor (유/무기 나노 복합체를 이용한 PAN계 탄소섬유 토우 유연 전극의 전기화학적 특성 평가 및 비효소 전기화학 센서의 활용)

  • Min-Jung Song
    • Korean Chemical Engineering Research
    • /
    • v.62 no.3
    • /
    • pp.233-237
    • /
    • 2024
  • This study is about the fabrication of a flexible electrode based on PAN-based carbon fibers tow using organic/inorganic nanocomposite and its application of non-enzymatic sensor. The organic/inorganic nanocomposite was composed of the conductive polymer polyaniline (PANI) and the metal oxide CuO. And glucose was used as the target of the electrochemical sensor. Commercialized CFTs were pretreated through heat treatment for desizing and electrochemical oxidation for activation. This nanocomposite was sequentially synthesized on the pretreated CFT surface using electrochemical polymerization and electrochemical deposition. Finally, the CFT/PANI/CuO NPs electrode was obtained. The electrochemical properties and sensing performance of the CFT/PANI/CuO NPs electrode were analyzed using chronoamperometry (CA), cyclic voltammetry (CV), and electrochemical impedance spectroscopy (EIS). The sensitivity of the CFT/PANI/CuO NPs electrode was about 8.352 mA/mM (in a linear range of 0.445~6.674 mM) and 3.369 mA/mM (in a linear range of 6.674~50 mM), respectively. So, the CFT/PANI/CuO NPs electrode exhibited the enhanced sensing performances due to unique properties such as small peak potential separation, low electron transfer resistance, and large specific surface area.

The Evaluation of Electrolytic Nitrate Removal Efficiency of TiO2 Nanotube Plate (TiO2 nanotube plate의 질산성질소 전기분해 효율 평가)

  • Kim, Da Eun;Lee, Yongho;Han, Heeju;Choi, Hyo yeon;Pak, Daewon
    • Journal of the Korean Applied Science and Technology
    • /
    • v.35 no.3
    • /
    • pp.612-621
    • /
    • 2018
  • In this study, $TiO_2$ nanotube plate and metal electrodes(Copper, Nickel, Stainless Steel, Aluminum, Tin, Titanium) were compared on cathodic reduction of nitrate ($NO_3{^-}-N$) during electrolysis. The electrochemical characteristics were compared based on electrochemical impedance spectroscopy (EIS). The surface morphology was obtained using scanning electron microscopy (SEM) method. Brunauer-Emmett-Teller (BET) method was implemented for the specific surface area analysis of the cathodes. To study kinetics, 90 minute batch electrolysis of nitrate solution was performed for each cathodes. In conclusion, under the condition of relatively low ($0.04 A\;cm^{-2}$) current density, $TiO_2$ nanotube plate showed no surface corrosion during the electrolysis, and the reaction rate was measured the highest in the kinetic analysis.

Gas Sensing Characteristics of $SnO_{2}(Ca)/Pt$ Thick Film Using Pt Electrode for Hydrocarbon Gases (Pt 전극을 사용한 $SnO_{2}(Ca)/Pt$ 후막소자의 탄화수소계가스에 대한 감응특성)

  • Hong, Young-Ho;Lee, Duk-Dong
    • Journal of Sensor Science and Technology
    • /
    • v.4 no.2
    • /
    • pp.37-44
    • /
    • 1995
  • A coprecipitation method was used for preparing Ca and Pt doped $SnO_{2}$-based material. Crystallite size and specific surface area were investigated by TEM, XRD and BET analysis. $SnO_{2}(Ca)/Pt$ based thick film devices were prepared by a screen printing technique for hydrocarbon gas detecting. Then the electrical and sensing characteristics of devices were investigated. As Ca and Pt addition, the crystal growth of $SnO_{2}$ was suppressed during calcining and sintering, and the sensitivity of $SnO_{2}(Ca)/Pt$ thick film to gas was enhanced. Also any difference in the sensing properties has to be attributed to the Pt and Au electrode. For the 2000 ppm $CH_{4}$, the sensitivity of $SnO_{2}(Ca)/Pt$ thick film devices were about 83% at an operating temperature of $400^{\circ}C$.

  • PDF

Roll-type Micro Contact Printing for Fine Patterning of Metal Lines on Large Plastic Substrate (대면적 미세 금속전극 인쇄를 위한 원통형 마이크로 접촉 인쇄공정)

  • Kim, Jun-Hak;Lee, Mi-Young;Song, Chung-Kun
    • Journal of the Institute of Electronics Engineers of Korea SD
    • /
    • v.48 no.6
    • /
    • pp.7-14
    • /
    • 2011
  • This paper is related to a roll-type micro-contact printing process. The proper parameters such as coating velocity, inking velocity, printing velocity and printing pressure as well as Ag contents of Ag ink were extracted to perform the fine patterning of Ag electrodes. Additionally we developed a process for PDMS with high uniform thickness. Finally, we obtained the Ag fine electrodes on $4.5cm\;{\times}\;4.5cm$ plastic substrate with the line width of 10 um, thickness less than 300 nm, surface roughness less than 40 nm, and the specific resistance of $2.08\;{\times}\;10^{-5}{\Omega}{\cdot}cm$.

Effects of 3D Flow-Channel Configurations on the Performance of PEMFC using Computational Fluid Dynamics (전산유체역학을 이용한 PEMFC의 성능에 대한 3차원 유로 구조의 영향)

  • Han, Kyoung-Ho;Yoon, Do Young
    • Korean Chemical Engineering Research
    • /
    • v.54 no.6
    • /
    • pp.847-853
    • /
    • 2016
  • Here has been examined a 3-dimensional computational fluid dynamics (CFD) modeling in order to investigate the performance analysis of proton exchange membrane (PEM) fuel cells with serpentine flow fields. The present CFD model considers the isothermal transport phenomena in a fuel cell involving mass, momentum transport, electrode kinetics, and potential fields. Co-current flow patterns for a PEMFC are considered for various geometries in the single straight cell. Current density distribution from the calculated distribution of oxygen and hydrogen mass fractions has been determined, where the activation overpotential has been also calculated within anode and cathode. CFD results showed that profiles differ from those simulations subjected to each the calculated activation overpotential. It is interesting that the present serpentine flow field shows the specific distribution of current density with respect to the aspect ratio of depth to width and the ratio of reaction area for various serpentine geometries. Simulation results were considered reasonable with the other CFD results reported in literature and global comparisons of the PEMFC model.

Comparison of Electrical Signal Properties about Top Electrode Size on Photoconductor Film (광도전체 필름 상부 전극크기에 따른 전기적 신호 특성 비교)

  • Kang, Sang-Sik;Jung, Bong-Jae;Noh, Si-Cheul;Cho, Chang-Hoon;Yoon, Ju-Sun;Jeon, Sung-Pyo;Park, Ji-Koon
    • Journal of the Korean Society of Radiology
    • /
    • v.5 no.2
    • /
    • pp.93-96
    • /
    • 2011
  • Currently, the development of direct conversion radiation detector using photoconductor materials is progressing in widely. Among of theses photoconductor materials, mercuric iodide compound than amorphous selenium has excellent absorption and sensitivity of high energy radiation. Also, the detection efficiency of signal generated in photoconductor film varies by electric filed and geometric distribution according to top-bottom electrode size. Therefore, in this work, the x-ray detection characteristics are investigated about the size of top electrode in $HgI_2$ photoconductor film. For sample fabrication, to solve the problem that is difficult to make a large area film, we used the spatial paste screen-print method. And the sample thickness is $150{\mu}m$ and an film area size is $3cm{\times}3cm$ on ITO-coated glass substrate. ITO(Indium-Tin-Oxide) electrode was used as top electrode using a magnetron sputtering system and each area is $3cm{\times}3cm$, $2cm{\times}2cm$ and $1cm{\times}1cm$. From experimental measurement, the dark current, sensitivity and SNR of the $HgI_2$ film are obtained from I-V test. From the experimental results, it shows that the sensitivity increases in accordance with the area of the electrode but the SNR is decreased because of the high dark current. Therefore, the optimized size of electrode is importance for the development of photoconductor based x-ray imaging detector.

Effect of Cathode Porosity on the Cathodic Polarization Behavior of Mixed Conducting LSCF(La0.6Sr0.4Co0.2Fe0.8O3) (혼합전도체 LSCF(La0.6Sr0.4Co0.2Fe0.8O3) 양극의 기공률에 따른 양극분극 특성)

  • Yun, Joong-Cheul;Lee, Jong-Ho;Kim, Joosun;Lee, Hae-Weon;Kim, Byong-Ho
    • Journal of the Korean Ceramic Society
    • /
    • v.42 no.4
    • /
    • pp.251-259
    • /
    • 2005
  • In order to characterize the influence of the reaction-site density on the cathodic polarization property of LSCF, we chose the porosity of LSCF as a main controlling variable, which is supposed to be closely related with active sites for the cathode reaction. To control the porosity of cathodes, we changed the mixing ratio of fine and coarse LSCF powders. The porosity and pore perimeter of cathodes were quantitatively analyzed by image analysis. The electrochemical half cell test for the cathodic polarization was performed via 3-probe AC-impedance spectroscopy. According to the investigation, the reduction of oxygen at LSCF cathode was mainly controlled by following two rate determining steps; i) surface diffusion and/or ionic conduction of ionized oxygen through bulk LSCF phase, ii) charge transfer of oxygen ion at cathode/electrolyte interface. Moreover, the overall cathode polarization was diminished as the cathode porosity increased due to the increase of the active reaction sites in cathode layer.