• 제목/요약/키워드: gas diffusion layer

검색결과 265건 처리시간 0.025초

Water Repellency on a Nanostructured Superhydrophobic Carbon Fibers Network

  • Ko, Tae-Jun;Her, Eun-Kyu;Shin, Bong-Su;Kim, Ho-Young;Lee, Kwang-Ryeol;Hong, Bo-Ki;Kim, Sae-Hoon;Oh, Kyu-Hwan;Moon, Myoung-Woon
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.224-224
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    • 2012
  • For decades, carbon fiber has expanded their application fields from reinforced composites to energy storage and transfer technologies such as electrodes for super-capacitors and lithium ion batteries and gas diffusion layers for proton exchange membrane fuel cell. Especially in fuel cell, water repellency of gas diffusion layer has become very important property for preventing flooding which is induced by condensed water could damage the fuel cell performance. In this work, we fabricated superhydrophobic network of carbon fiber with high aspect ratio hair-like nanostructure by preferential oxygen plasma etching. Superhydrophobic carbon fiber surfaces were achieved by hydrophobic material coating with a siloxane-based hydrocarbon film, which increased the water contact angle from $147^{\circ}$ to $163^{\circ}$ and decreased the contact angle hysteresis from $71^{\circ}$ to below $5^{\circ}$, sufficient to cause droplet roll-off from the surface in millimeter scale water droplet deposition test. Also, we have explored that the condensation behavior (nucleation and growth) of water droplet on the superhydrophobic carbon fiber were significantly retarded due to the high-aspect-ratio nanostructures under super-saturated vapor conditions. It is implied that superhydrophobic carbon fiber can provide a passage for vapor or gas flow in wet environments such as a gas diffusion layer requiring the effective water removal in the operation of proton exchange membrane fuel cell. Moreover, such nanostructuring of carbon-based materials can be extended to carbon fiber, carbon black or carbon films for applications as a cathode in lithium batteries or carbon fiber composites.

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FEMFC 최적설계를 위한 촉매층모델과 기체확산층 특성해석 (Characteristic analysis of The Catalyst Layer and Gas Diffusion Layer Model for FEMFC optimal design)

  • 권기홍
    • 전기전자학회논문지
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    • 제21권2호
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    • pp.123-129
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    • 2017
  • 고분자 막 연료전지는 높은 전력밀도, 낮은 배출 및 낮은 동작온도 때문에 미래 자동차 및 전력생산의 강력한 보류이다. FEMFC 내부의 기체확산층(GDL)의 중요한 관심은 물의 조절이다. GDL은 소수성 PTFE와 전기전도성을 위해서 탄소로 보통 구성되어 있다. 이 시뮬레이션에서 GDL 흐름은 확립된 방정식 모델의 단순화된 접근법으로 조사되었다. GDL의 성능은 모델 방정식을 이용하여 전지의 내부열, 수증기 밀도 와 산소밀도의 결과를 보였다. FEMFC 촉매층 모델은 유효인자, Butler-volmer 와 수소유동 밀도의 결과를 나타냈다. 이 결과들은 몇 가지 요소들과 함께 영향의 차이는 흥미 가지게 되며 정보는 연료전지를 설계하는데 도움을 줄 것이다.

DC 반응성 스퍼터링법에 의해 제조된 몰리브덴 후면전극과 기판과의 상관특성분석 (The Correlation Properties between Substrate and Molybdenum Back Contacts Fabricated by DC Magnetron Sputtering)

  • 김석기;한상옥
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제49권3호
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    • pp.149-154
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    • 2000
  • Bi-layer Mo films were deposited on soda-lime glass substrates using DC magnetron supttering. Increasing gas pressure, the resistivity varied from $1\times10^{-5}\; to\; 8.3\times10^{-3}\; \Omega.cm$. Furthermore, stress direction yielded compressive-to-tensile transition stress curves. The micro-structure of the compressively-stressed film which had poor adhesion consists of tightly packed columns, but of the tensile-stressed films had less dense structure. Under all gas pressure conditions, Mo films exhibited distinctly increasing optical reflection with decreasing gas pressure. The expansion of (110) peak width with the gas pressure meant the worse crystalline growth. The impurity levels in the Mo film exhibited highly concentrated Na, Se and O elements due to less dense micro-structure. The degree of Na diffusion depends on the type of the glass substrate used and the nature of the Mo film.

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MSP 기법을 적용한 고분자 전해질 연료전지 가스확산층의 포로시메트리 연구 (Porometric Study on the Gas Diffusion Layer in PEMFCs Using Method of Standard Porosimetry)

  • 이용택
    • 설비공학논문집
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    • 제25권2호
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    • pp.64-69
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    • 2013
  • The structure of pore network of gas diffusion layers (GDLs) in PEMFCs plays a critical role in determining the transport phenomena of reaction gas as well as generated water. In addition, the interactive characteristics between water and surface of pore are no less important than the structural characteristics of pore network. In this study, porometric investigation is conducted for two kinds of GDL using method of standard porosimetry which enable to distinguish hydrophobic pores from hydrophilic pores of GDLs. The porosity of TGPH-120 decreases by 6% by adding 30 wt.% of PTFE, but the porosity of hydrophilic pores decreases by 12%. The relation of $p_c-S_{nw}$ varies with the addition of PTFE, especially at low $p_c$.

고온초전도테이프 제작을 위한 YSZ 박막의 고속증착방법 (High speed deposition technique of YSZ film for the superconducting tape)

  • 김호섭;석동기;정준기;고락길;하홍수;송규정;염도준;박찬
    • 한국초전도ㆍ저온공학회논문지
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    • 제6권3호
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    • pp.27-32
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    • 2004
  • High temperature superconducting coated conductor has a structure of /< superconducting layer>//. The buffer layer consists of multi layer, and the architecture most widely used in RABiTS approach is CeO$_2$(cap layer)/YSZ(diffusion barrier layer)/CeO$_2$(seed layer). Evaporation technique is used for the CeO$_2$ layer and DC reactive sputtering technique is used for the YSZ layer, A chamber was set up specially for DC reactive sputtering, Detailed features are as following. A separator divided the chamber into two halves a sputtering chamber and a reaction chamber. The argon gas for sputtering target elements flows out of the cap of sputtering gun, and water vapor for reaction with depositing species spouts near the substrate. Turbo pump is connected with reaction chamber. High speed deposition of YSZ film could be achieved in the chamber. Detailed deposition conditions (temperature and partial pressure of reaction gas) were investigated for the rapid growth of high quality YSZ film.

FORMATION OF IRON SULFIDE BY PLASMA-NITRIDING USING SUBSIDIARY CATHODE

  • Hong, Sung-Pill;Urao, Ryoichi;Takeuchi, Manabu;Kojima, Yoshitaka
    • 한국표면공학회지
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    • 제29권6호
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    • pp.615-620
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    • 1996
  • Chromium-Molybdenum steel was plasma-nitrided at 823 K for 10.8 ks in an atmosphere of 30% $N_2$-70% $H_2$ gas under 665 Pa without and with a subsidiary cathode of $MoS_2$ to compare ion-nitriding and plasma-sulfnitriding using subsidiary cathode. When the steel was ion-nitrided without $MoS_2$, iron nitride layer of 4$\mu\textrm{m}$ and nitrogen diffusion layer of 400mm were formed on the steel. A compound layer of 15$\mu\textrm{m}$ and nitrogen diffusion layer of 400$\mu\textrm{m}$ were formed on the surface of the steel plasma-sulfnitrided with subsidiary cathode of $MoS_2$. The compound layer consisted of FeS containing Mo and iron nitrides. The nitrides of $\varepsilon$-$Fe_2$, $_3N$ and $\gamma$-$Fe_4N$ formed under the FeS. The thicker compound layer was formed by plasma-sulfnitriding than ion-nitriding. In plasma-sulfnitriding, the surface hardness was about 730 Hv. The surface hardness of the steel plasma-sulfnitrided with $MoS_2$ was lower than that of ion-nitrided without $MoS_2$. This may be due to the soft FeS layer formed on the surface of the plasma-sulfnitrided steel.

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산화물 반도체 가스 센서의 습도 의존성 제거 기술 (Humidity Dependence Removal Technology in Oxide Semiconductor Gas Sensors)

  • 박지호;윤지욱
    • 한국전기전자재료학회논문지
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    • 제37권4호
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    • pp.347-357
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    • 2024
  • Oxide semiconductor gas sensors are widely used for detecting toxic, explosive, and flammable gases due to their simple structure, cost-effectiveness, and potential integration into compact devices. However, their reliable gas detection is hindered by a longstanding issue known as humidity dependence, wherein the sensor resistance and gas response change significantly in the presence of moisture. This problem has persisted since the inception of oxide semiconductor gas sensors in the 1960s. This paper explores the root causes of humidity dependence in oxide semiconductor gas sensors and presents strategies to address this challenge. Mitigation strategies include functionalizing the gas-sensing material with noble metal/transition metal oxides and rare-earth/rare-earth oxides, as well as implementing a moisture barrier layer to prevent moisture diffusion into the gas-sensing film. Developing oxide semiconductor gas sensors immune to humidity dependence is expected to yield substantial socioeconomic benefits by enabling medical diagnosis, food quality assessment, environmental monitoring, and sensor network establishment.

가스확산층의 압축에 따른 공극률 및 기체투과율의 변화 (Variation of Porosity and Gas Permeability of Gas Diffusion Layers Under Compression)

  • 이용택
    • 대한기계학회논문집B
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    • 제37권8호
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    • pp.767-773
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    • 2013
  • 본 연구는 높은 압력으로 체결되어 있는 고분자전해질연료전지(PEMFC) 스택의 구성부품중 가장 크게 변형되는 가스확산층(GDL)의 공극률과 기체투과율의 변화를 제시하였다. 압축하중에 따른 체적변화를 실험을 통하여 측정하고 기존에 제시된 관계식을 이용하여 공극률과 기체투과율의 변화을 예측하였다. 또한 물의 배출을 향상시키기 위하여 첨가되는 PTFE 가 압축상태의 GDL 의 공극률과 기체투과율에 미치는 영향을 연구하였다. 물질전달에 직접 영향을 미치는 기체투과율은 PTFE 가 많이 포함된 GDL에서 급격하게 감소하였다. 결과적으로 같은 압축하중으로 체결하는 경우 GDL 의 PTFE 함량에 따라서 공극네트워크를 통한 물질전달은 크게 달라질 수 있다. 본 결과를 이용하면 GDL 에서의 전달현상에 대한 개선된 상관식을 개발할 수 있고 그로 인하여 모델링의 정확성을 향상시킬 수 있다.

고분자 전해질 연료전지에서 탄소복합 기체확산층의 제조와 특성분석 (Preparation and Characterization for Carbon Composite Gas Diffusion Layer on Polymer Electrolyte Membrane Fuel Cells)

  • 심중표;한춘수;선호정;박경세;이지정;이홍기
    • 한국수소및신에너지학회논문집
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    • 제23권1호
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    • pp.34-42
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    • 2012
  • Gas diffusion layers (GDLs) of carbon composite type in polymer electrolyte fuel cells were prepared by simple and cheap manufacturing process. To obtain the carbon composite GDLs, carbon black with polymer binder was mixed in solvent, rolled to make sheet, and finally heat-treated at $340^{\circ}C$. The performance of fuel cell using composite GDLs was changed by PTFE content. The physical properties of composite GDLs for pore, conductivity and air permeability were analyzed to compare with the variation of fuel cell performance. The conductivity of composite GDLs was very similar to carbon paper as commercial GDL but pore properties and air flux were considerably different. The porosity, PTFE content and conductivity for composite GDLs did not have an influence on the cell performance much. The increase of pore diameter and air flux led to enhance cell performance.

촉매분말법에 의한 PAFC용 다공성 전극제작 (Porous Electrode manufacture by catalyst powdering method for PAFC)

  • 김영우;이주성
    • 에너지공학
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    • 제2권2호
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    • pp.194-199
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    • 1993
  • 인산형 연료전지에서 cathode 및 anode 전극의 반응 면적을 넓혀 전극성능을 향상시키고자 전극 촉매층에 가스 확산로를 도입하였다. 촉매층의 제작은 기체확산로로 이용하고자 제조된, 촉매가 담지되어 있지 않은 PTFE/carbon과 10w/o의 촉매가 담지된 Pt/carbon을 혼합 비율을 달리하면서 촉매 분말법으로 제작하였다. PTFE를 60w/o 담지한 PTFE(60 w/o)/carbon 분말과 Pt(10 w/o)/carbon분말을 7 : 3의 비율로 혼합하여 제조된 전극이 가장 우수한 성능을 보였다. 이들 조성을 변화시키면서 전극의 다공성과 전극성능을 비교 검토하여 본 결과 전극성능은 기체 확산로로 이용되는 macro pore와 전해질의 침투로 이용되는 micro pore 모두가 많이 형성됨에 따라 향상되었음을 알 수 있었다. 이때 전극에 담지된 백금 촉매의 양은 0.2mg/$\textrm{cm}^2$이었으며 PTFE함량은 42w/o이었다. 작동온도 15$0^{\circ}C$, 단자전압 0.7 V에서 전류밀도는 220 ㎃/$\textrm{cm}^2$이었다.

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