• Title/Summary/Keyword: 적층전지

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Advances in Absorbers and Reflectors of Amorphous Silicon Oxide Thin Film Solar Cells for Tandem Devices (적층형 태양전지를 위한 비정질실리콘계 산화막 박막태양전지의 광흡수층 및 반사체 성능 향상 기술)

  • Kang, Dong-Won
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.30 no.2
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    • pp.115-118
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    • 2017
  • Highly photosensitive and wide bandgap amorphous silicon oxide (a-$SiO_x$:H) films were developed at low temperature ranges ($100{\sim}150^{\circ}C$) with employing plasma-enhanced chemical vapor deposition by optimizing $H_2/SiH_4$ gas ratio and $CO_2$ flow. Photosensitivity more than $10^5$ and wide bandgap (1.81~1.85 eV) properties were used for making the a-$SiO_x$:H thin film solar cells, which exhibited a high open circuit voltage of 0.987 V at the substrate temperature of $100^{\circ}C$. In addition, a power conversion efficiency of 6.87% for the cell could be improved up to 7.77% by employing a new n-type nc-$SiO_x$:H/ZnO:Al/Ag triple back-reflector that offers better short circuit currents in the thin film photovoltaic devices.

Manufacture and Evaluation of Small Size PEMFC Stack Using Carbon Composite Bipolar Plate (탄소복합소재 분리판을 이용한 소형 고분자전해질 연료전지 스택 제작 및 성능분석)

  • Han, C.;Choi, M.;Lee, J.J.;Lee, J.Y.;Kim, I.T.;An, J.C.;Shim, J.;Lee, H.K.
    • Journal of the Korean Electrochemical Society
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    • v.13 no.2
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    • pp.81-88
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    • 2010
  • Small size polymer electrolyte membrane fuel cell (PEMFC) stacks were prepared using carbon composite and graphite bipolar plates and their performances were evaluated on reactant gas and operating time. In comparison to single cell and stack, it was identified that home-made bipolar plate was well-designed to maximize stack performance as high as that of single cell. During long-term operation, the performances of stacks using two different kinds of bipolar plates were compared. The decrease of performance in both stacks was accelerated with increasing load current. It was observed from stack test that the stack performance using carbon composite bipolar plate was very similar to that using graphite bipolar plate.

Stacking of functional inks for organic solar cell using inkjet printing (잉크젯 프린팅을 이용한 유기태양전지용 기능성 잉크의 적층)

  • Kim, Myong-Ki;Hwang, Jun-Young;Lee, Sang-Ho;Kang, Heui-Seok;Kang, Kyung-Tae;Kim, Jong-Seok;Cho, Young-Joon
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.05a
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    • pp.398-401
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    • 2008
  • Inkjet printing is commonly used in the controlled deposition of solutions of functional materials in specific locations on a substrate, and it can provide easy and fast deposition of polymer films over a large area. which could become a way to manufacturer low cost solar cells. In the present study, inkjet printing technology is adopted to deposit functional layers of PEDOT/PSS solutions and P3HT/PCBM blends for organic solar cell. The results show that merging of separately deposited ink droplets into a continuous, pinhole-free organic thin film could be achieved by a balance between ink property and substrate treatment. As a result, a power conversion efficiency of 2.0% has been accomplished a solar cells applying inkjet technology.

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Operation Characteristics of 500W Class Anode Support Planar SOFC Stack (500W급 연료극 지지체 평판형 SOFC 스택의 운전특성)

  • Lim Tak-Hyoung;Song Rak-Hyun;Shin Dong-Ryul;Yang Jung-Il;Jeong Hun;Vinke I.C.
    • New & Renewable Energy
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    • v.2 no.2 s.6
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    • pp.44-49
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    • 2006
  • 본 연구는 독일 율리히 연구소에서 도입된 면적 200mm*200mm의 연료극 지지체 평판형 SOFC 셀 및 금속 분리판 5장을 적층하여 500W급 SOFC 스택을 제작하고, 이러한 스택의 운전특성을 분석한 연구이다. 도입된 500W급 SOFC 스택은 가스터빈-연료전지 하이브리드 시스템어에 사용되는 5kW급 SOFC 스택의 예비실험을 위한 것으로서, 본 연구의 목적은 상압 운전특성을 바탕으로 외국에서 시도된 적이 없는 평판형 SOFC 스택의 가압 운전기술을 확보하는 것이다. 이러한 목적을 위해 본 연구에서는 상압형 500W급 SOFC 발전시스템에 대한 구성과 설계, 전반적인 운전 특성평가 (5셀 스택 운전, 연료 전환 $(H_2{\rightarrow}pre-reformed\;gas)$, 500 시간 연속운전 등)가 이뤄졌다.

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Finite Element Analysis for Performance Evaluation of Type III Hydrogen Pressure Vessel for the Clean Tech Fuel Cell Vehicles (친환경 연료전지 자동차용 Type III 수소 압력용기의 구조성능 평가를 위한 유한 요소 해석)

  • Son, Dae-Sung;Chang, Seung-Hwan
    • Journal of the Korean Society for Precision Engineering
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    • v.29 no.9
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    • pp.938-945
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    • 2012
  • To design and estimate material failures of Type III pressure vessels, which have excellent stability and performance, various modeling techniques have been introduced. This paper provided a hybrid modeling technique composed of ply-based modeling for a cylinder part and laminate-base modeling technique for a dome part for enhancing modeling efficiency. The ply-based modeling technique provided accurate ply stresses directly for predicting material failure, on the other hand, additional manipulations in stress calculations, which may cause some errors, were needed for the case of the laminate-based modeling technique. The ply stresses in fiber, transverse and in-plane shear directions were compared with the corresponding material strengths to predict material failure.

Thickness Effect of SiOx Layer Inserted between Anti-Reflection Coating and p-n Junction on Potential-Induced Degradation (PID) of PERC Solar Cells (PERC 태양전지에서 반사방지막과 p-n 접합 사이에 삽입된 SiOx 층의 두께가 Potential-Induced Degradation (PID) 저감에 미치는 영향)

  • Jung, Dongwook;Oh, Kyoung-suk;Jang, Eunjin;Chan, Sung-il;Ryu, Sangwoo
    • Journal of the Microelectronics and Packaging Society
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    • v.26 no.3
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    • pp.75-80
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    • 2019
  • Silicon solar cells have been widely used as a most promising renewable energy source due to eco-friendliness and high efficiency. As modules of silicon solar cells are connected in series for a practical electricity generation, a large voltage of 500-1,500 V is applied to the modules inevitably. Potential-induced degradation (PID), a deterioration of the efficiency and maximum power output by the continuously applied high voltage between the module frames and solar cells, has been regarded as the major cause that reduces the lifetime of silicon solar cells. In particular, the migration of the $Na^+$ ions from the front glass into Si through the anti-reflection coating and the accumulation of $Na^+$ ions at stacking faults inside Si have been reported as the reason of PID. In this research, the thickness effect of $SiO_x$ layer that can block the migration of $Na^+$ ions on the reduction of PID is investigated as it is incorporated between anti-reflection coating and p-n junction in p-type PERC solar cells. From the measurement of shunt resistance, efficiency, and maximum power output after the continuous application of 1,000 V for 96 hours, it is revealed that the thickness of $SiO_x$ layer should be larger than 7-8 nm to reduce PID effectively.

Electrochemical Characteristics of CFX Based Lithium Primary Batteries Produced by Carbon Fiber Reinforced Plastic -Derived Waste Carbon Fibers (탄소섬유강화플라스틱 유래 폐 탄소섬유로 제조된 불화탄소 기반 리튬일차전지의 전기화학적 특성)

  • Naeun Ha;Chaehun Lim;Seongmin Ha;Seongjae Myeong;Young-Seak Lee
    • Applied Chemistry for Engineering
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    • v.34 no.5
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    • pp.515-521
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    • 2023
  • In this study, waste carbon fiber obtained by pyrolysis of carbon fiber reinforced plastic (CFRP) was used to produce carbon fluoride through vapor phase fluorination and recycled as a reducing electrode material for lithium primary batteries. First, the physicochemical properties of the waste carbon fiber obtained by pyrolysis were determined, and the structural and chemical properties of carbon fluoride were analyzed to evaluate the effect of vapor phase fluorination on the waste carbon fiber. XRD analysis confirmed that the hexagonal network carbon laminated structure (002 peak) of the waste carbon fiber was gradually converted into a carbon fluoride structure (CFX, 001 peak) as the temperature of gas phase fluorination increased. The discharge capacity of the lithium primary battery produced using this carbon fluoride was up to 862 mAh/g. This was compared to the discharge capacity of carbon fluoride-based Li-ion batteries made of other carbon materials. These results suggest that carbon fluoride made from waste CFRP-based carbon fibers can be used as a reducing electrode material for Li-ion batteries.

Development of Multiple Layers Insulation for SOFC (SOFC를 위한 고온용 적층단열재 개발)

  • CHOI, CHONGGUN;HWANG, SEUNG-SIK;CHOI, GYU-HONG
    • Journal of Hydrogen and New Energy
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    • v.29 no.4
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    • pp.386-392
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    • 2018
  • Fuel cells are known as eco - friendly energy facilities that can use heat energy and electric energy at the same time. Fuel cells are classified according to the temperature and material used, and solid oxide fuel cell (SOFC) is relatively high temperature ($700-800^{\circ}C$). SOFC requires a hot box consisting of a high temperature stack, a reformer, a burner, and the heat exchangers in order to use energy efficiently. The hot box needs to maintain heat insulation performance at high temperature to reduce heat loss. However, Fibrous insulation, which is widely used, needs to be improved because it has a disadvantage that the thermal conductivity is rapidly increased due to the increase of temperature. Therefore, this study was carried out to develop a thermal insulation, which is applied to multiple layers insulation (MLI) technic, that can be used under SOFC operating conditions and prevent a drastic drop in thermal conductivity at high temperature. The developed insulation is consist of a thermally conductive material, a spacer, and a reflective plate. The thermal conductivity of the insulation was measured by in the thermal conductivity measuring device at high temperature range. As a result, it was confirmed that the developed layers insulation have an good thermal conductivity (0.116 W/mK) than fibrous insulation (0.24 W/mK) as a radiation shielding effect at a high temperature of 1,173 K.

Feasibility Evaluation of Glass-ceramic Sealant for SOFC (SOFC용 결정화계 밀봉재 특성평가 및 단전지 실증평가)

  • Lee, InSung;Kim, YeongWoo;Park, YoungMin;Bae, HongYoul;Ahn, JinSoo;Kim, InTae
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.88.1-88.1
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    • 2011
  • SOFC는 사용되는 셀의 디자인에 따라 튜브형, 평판형으로 구분되어진다. 평판형의 경우에는 전해질 지지형(ESC), Anode 지지형(ASC) 및 금속 지지형(MSC)로 크게 나눌 수 있다. SOFC 스택은 이와 같은 셀과 밀봉재, 집전체, 분리판의 구성요소를 여러 장으로 적층하여 이루어진다. SOFC 발전시스템은 SOFC 스택과 EBOP, MBOP로 구성되는데, SOFC 발전시스템의 상용화를 위해 선행되어야 할 것은 스택의 안정적 출력 및 신뢰성 확보이다. 즉, 셀, 밀봉재, 분리판 및 집전체로 대변되는 구성요소들이 스택에 장착되었을 때 그 기능을 최대한 발휘하면서도 점진적 또는 급격한 품질저하가 발생되지 말아야 한다. 특히, 밀봉재의 경우 SOFC에 사용되는 연료와 공기의 혼합(Cross-over)을 방지하는 중요한 기능을 담당하고 있으며 여러 장 적층된 분리판의 전기적 단락을 방지해야 한다. 또한 SOFC의 특성상 $700^{\circ}C$ 이상의 고온에서 다른 구성요소와 화학적 반응이 없어야하고 열싸이클(Thermal cycle)을 견딜 수 있도록 충분한 기계적 강도가 보장되어야 하는 등 요구되는 품질기준이 엄격하다. SOFC의 밀봉재는 접합형(Brazing), 압착형(Compressive), 용융-고정형(Glass-ceramic)이 대표적으로 적용되고 있다. 이 중에서 Brazing 물질과 방법은 현재 활발히 연구가 수행 중에 있지만 범용적으로 사용되고 있지는 않은 상태이고 Compressive 밀봉재와 Glass-ceramic 밀봉재가 대면적 SOFC 스택에 사용되어 적용 가능성을 평가받고 있다. 본 연구에서는 SOFC 구성요소의 국산화를 추진하는 지경부과제의 결과물 중 (주)써모텍에서 개발한 Glass-ceramic 밀봉재(RC1) 단품에 대한 특성평가와 실제 단전지 평가를 통해 SOFC 스택 적용 가능성을 평가하였다. 밀봉재 단품에 대한 특성평가는 용융특성, 상분석, 열팽창계수 등의 물리적, 화학적 평가 외에 가스 누설 정도를 평가하는 기밀도 평가와 SOFC의 작동 온도인 $700^{\circ}C$와 상온 분위기를 주기적으로 인가하는 Thermal cycle 특성을 평가하였다. 셀을 한 장 사용하는 단전지(Unit cell) 평가는 RIST에서 자체 제작한 $100{\times}100mm^2$ 평판형 ASC 셀을 사용하여 수행하였으며, 밀봉재는 Dispensing 공정을 통해 구성되었다.

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Evaluation of Long Term Operation of Cross-flow Molten Carbonate Fuel Cell Stack (교차류형 100W급 용융탄산염 연료전지 스택 장기운전평가)

  • Lim, H.C.;Seol, J.H.;Ryu, C.S.;Lee, C.W.;Hong, S.A.
    • Journal of Hydrogen and New Energy
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    • v.6 no.2
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    • pp.53-63
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    • 1995
  • A 100kW class stack consisting of 10 molten carbonate fuel cells has been fabricated. Internally manifold stack has been tested for endurance. Each cell in the stack had an electrode area of $100cm^2$ and reactant gases were distributed in each cells in a cross-flow configuration. Initial and long term operation performance of the stack was investgated as a function of gas utilization using a specially designed small scale stack test facility. It was possible to have a stack with an output of more than 100W using an anode gas of 72% $H_2/18%$ $CO_2/10%H_2O$ and cathode gas of 33% $O_2/67%$ $CO_2$ and 70% Air 30% $CO_2$. The output and voltage of the stack at a current 15A($150mA/cm^2$) and gas utilization of 0.4 showed 125.8W and 8.39V respectively by elapsed time of 310 hours operation. In long term operation characteristics, the voltage drop of 52.4mV/1000hour was observed after more than 1,840 hours operation. Among the voltage drop, the OCV loss was highest than other voltage loss such as internal resistance and electrode polarization. Non uniformity of 2voltages and degradation of cell voltage in the stack was observed in according to changing the utilization rate after a long term operation. Further work for increasing the performance prolonging the life of the stack are required.

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