• 제목/요약/키워드: Selective emitter

검색결과 51건 처리시간 0.025초

Homogeneous 에미터와 Selective 에미터 결정질 실리콘 태양전지의 온도에 따른 전류-전압 특성 변화 측정 및 분석 (Measurement and Analysis of Temperature Dependence for Current-Voltage Characteristics of Homogeneous Emitter and Selective Emitter Crystalline Silicon Solar Cells)

  • 남윤정;박효민;이지은;김수민;김영도;박성은;강윤묵;이해석;김동환
    • 한국재료학회지
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    • 제24권7호
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    • pp.375-380
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    • 2014
  • Solar cells exhibit different power outputs in different climates. In this study, the temperature dependence of open-circuit voltage(V-oc), short-circuit current(I-sc), fill factor(FF) and the efficiency of screen-printed single-crystal silicon solar cells were studied. One group was fabricated with homogeneously-doped emitters and another group was fabricated with selectively-doped emitters. While varying the temperature (25, 40, 60 and $80^{\circ}C$), the current-voltage characteristics of the cells were measured and the leakage currents extracted from the current-voltage curve. As the temperature increased, both the homogeneously-doped and selectively-doped emitters showed a slight increase in I-sc and a rapid degradation of V-oc. The FF and efficiency also decreased as temperature increased in both groups. The temperature coefficient for each factor was calculated. From the current-voltage curve, we found that the main cause of V-oc degradation was an increase in the intrinsic carrier concentration. The temperature coefficients of the two groups were compared, leading to the idea that structural effects could also affect the temperature dependence of current-voltage characteristics.

Bebq2에 (pq)2Ir(acac)가 선택 도핑된 2-파장 유기발광다이오드 (2-Wavelength Organic Light-Emitting Diodes Using Bebq2 Selectively Doped with (pq)2Ir(acac))

  • 김민영;지현진;장지근
    • 한국재료학회지
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    • 제21권4호
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    • pp.212-215
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    • 2011
  • New organic light-emitting diodes with structure of indium-tin-oxide[ITO]/N,N'-diphenyl-N, N'-bis-[4-(phenyl-m-tolvlamino)-phenyl]-biphenyl-4,4'-diamine[DNTPD]/1,1-bis-(di-4-poly-aminophenyl) cyclohexane[TAPC]/bis(10-hydroxy-benzo(h)quinolinato)beryllium[Bebq2]/Bebq2:iridium(III)bis(2-phenylquinoline-N,C2')acetylacetonate[(pq)2Ir(acac)]/ET-137[electron transport material from SFC Co]/LiF/Al using the selective doping of 5%-(pq)2Ir(acac) in a single Bebq2 host in the two wavelength (green, orange) emitter formation were proposed and characterized. In the experiments, with a 300${\AA}$-thick undoped emitter of Bebq2, two kinds of devices with the doped emitter thicknesses of 20${\AA}$ and 40${\AA}$ in the Bebq2:(pq)2Ir(acac) were fabricated. The device with a 20${\AA}$-thick doped emitter is referred to as "D-1" and the device with a 4${\AA}$-thick doped emitter is referred to as "D-2". Under an applied voltage of 9V, the luminance of D-1 and D-2 were 7780 $cd/m^2$ and 6620 $cd/m^2$, respectively. The electroluminescent spectrum of each fabricated device showed peak emissions at the same two wavelengths: 508 nm and 596 nm. However, the relative intensity of 596 nm to 508 nm at those wavelengths was higher in the D-2 than in the D-1. The D-1 and D-2 devices showed maximum current efficiencies of 5.2 cd/A and 6.0 cd/A, and color coordinates of (0.31, 0.50) and (0.37, 0.48) on the Commission Internationale de I'Eclairage[CIE] chart, respectively.

박형 결정질 실리콘 태양전지 제작을 위한 웨이퍼 두께에 따른 특성 연구 (Characteristics of doping process with various wafer thicknesses for thin crystalline silicon solar cell application)

  • 정경택;이희준;송희은;유권종;양오봉
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2011년도 춘계학술발표대회 논문집
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    • pp.101-104
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    • 2011
  • Many studies in crystalline silicon solar cell fabrication have been focused on high efficiency and low cost. In this paper, we carried out the doping procedure by varying the silicon wafer thicknesses and sheet resistance. The silicon wafers with various thicknesses were obtained by shiny etching and texturing. The thicknesses of wafers were 100, 120, 150, and $180{\mu}m$. The emitter layer formed by $POCl_3$ doping process had sheet resistance with 40 and $80{\Omega}/sq$ for selective emitter application. This experiment indicated wafer thickness did not influence sheet resistance but lifetime was strongly effected.

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레이저 도핑된 선택적 에미터 태양전지의 도금 및 열처리 공정의 영향 (Effect of plating and annealing process of laser doped selective emitter solar cells)

  • 이준성;경도현;황명익;오훈;이원재;조은철
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 추계학술대회 초록집
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    • pp.48.2-48.2
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    • 2010
  • 고효율 실리콘 태양전지 개발은 단파장의 광 응답 특성 개선을 위한 선택적 에미터 형성과 반사 손실 개선을 위한 미세 패턴 전극을 형성하는데 집중적인 연구가 진행되고 있다. 본 실험에서는 레이저 도핑된 선택적 에미터 위에 미세 패턴 Ni/Cu 도금 전극을 형성하였다. 니켈과 동 도금은 무전해 Light induced plating(LIP)으로 진행하였다. 니켈 도금 전극의 접착력 개선과 접촉저항 개선을 위해서 니켈 전극을 질소 분위기에서 열처리하여 니켈실리사이드(NiSi)를 형성하였다. 니켈 도금 두께와 니켈실리사이드 열처리 조건을 최적화하여 충실도 77.4%, 변환효율 18.5%를 달성하였다.

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사막형 결정질 실리콘 태양전지의 에미터 구조에 따른 온도 별 특성 변화 분석 (Analysis on Temperature Dependence of Crystalline Silicon Solar Cells with Different Emitter Types for Desert Environment)

  • 남윤정;김수민;강윤묵;이해석;김동환
    • Current Photovoltaic Research
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    • 제2권3호
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    • pp.135-139
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    • 2014
  • Different power output of solar cells can be observed at high-temperature regions such as desert areas. In this study, performance dependence on operating temperature of crystalline silicon solar cells with different emitter types was analyzed. Based on the light current-voltage (LIV) measurement, temperature coefficients of short-circuit current density ($J_{SC}$), open-circuit voltage ($V_{OC}$), fill factor (FF) and power conversion efficiency were measured and compared for two groups of crystalline silicon solar cells with different emitter types. One group had homogeneously doped (conventional) emitter and another selectively doped (selective) emitter. Varying the operating temperature from 25 to 40, 60, and $80^{\circ}C$, LIV characteristics of the cells were measured and the properties of saturation current densities ($J_0$) were extracted from dark current-voltage (DIV) curve. From the DIV data, effect of temperature on the performance of the solar cells with different electrical structures for the emitter was analyzed. Increasing the temperature, both emitter structures showed a slight increase in $J_{SC}$ and a rapid degradation of $V_{OC}$. FF and power conversion efficiency also decreased with the increasing temperature. The degrees of $J_{SC}$ increase and $V_{OC}$ degradation for two groups were compared and explained. Also, FF change was explained by series and shunt resistances from the LIV data. It was concluded that the degradation of solar cells shows different values at different temperatures depending on the emitter type of solar cells.

RPCVD를 이용한 실리콘 게르마늄 이종 접합 바이폴라 트랜지스터 제작 및 특성 분석 (Fabrication and characterization of the SiGe HBTs using an RPCVD)

  • 한태현;서광열
    • 한국전기전자재료학회논문지
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    • 제17권8호
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    • pp.823-829
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    • 2004
  • In this paper, non-self-aligned SiGe HBTs with ${f}_\tau$ and${f}_max $above 50 GHz have been fabricated using an RPCVD(Reduced Pressure Chemical Vapor Deposition) system for wireless applications. In the proposed structure, in-situ boron doped selective epitaxial growth(BDSEG) and TiSi$_2$ were used for the base electrode to reduce base resistance and in-situ phosphorus doped polysilicon was used for the emitter electrode to reduce emitter resistance. SiGe base profiles and collector design methodology to increase ${f}_\tau$ and${f}_max $ are discussed in detail. Two SiGe HBTs with the collector-emitter breakdown voltages ${BV}_CEO$ of 3 V and 6 V were fabricated using SIC(selective ion-implanted collector) implantation. Fabricated SiGe HBTs have a current gain of 265 ∼ 285 and Early voltage of 102 ∼ 120 V, respectively. For the $1\times{8}_\mu{m}^2$ emitter, a SiGe HBT with ${BV}_CEO$= 6 V shows a cut-off frequency, ${f}_\tau$of 24.3 GHz and a maximum oscillation frequency, ${f}_max $of 47.6 GHz at $I_c$of 3.7 mA and$V_CE$ of 4 V. A SiGe HBT with ${BV}_CEO$ = 3 V shows ${f}_\tau$of 50.8 GHz and ${f}_max $ of 52.2 GHz at $I_c$ of 14.7 mA and $V_CE$ of 2 V.

Selective Emitter Solar Cell의 표면 Doping 농도에 따른 광학적, 전기적 특성에 관한 연구

  • 안시현;장경수;박형식;조재현;이준신
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2010년도 제39회 하계학술대회 초록집
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    • pp.308-308
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    • 2010
  • 산업의 기반이 되는 화석연료의 고갈과 화석연료의 사용으로 야기되는 환경오염 문제로 인하여 새로운 에너지원의 개발이 요구되고 있다. 이러한 시대적 요구에 부흥하고자 신재생 에너지원에 관한 많은 연구가 진행되고 있으며, 그중에 태양전지가 가장 주목받고 있다. 그러나 태양전지는 기존 전력 생산 방법에 비해 경제성이 낮아 이를 극복하기 위한 다양한 연구가 진행되고 있다. 특히 결정질 태양전지에 관한 연구가 가장 활발한데 경제성과 변환효율을 향상시키기 위해 태양전지의 전면에 선택적 doping 형성법이 사용되고 있는데, 선택적 doping 구조의 태양전지는 기존의 태양전지보다 변환효율이 높으면서 양산에서 사용 가능한 구조이기 때문에 경제적 측면에서 더 유리한 구조라 할 수 있다. 하지만 선택적 doping 형성을 위한 실험적인 분석 방법에는 많은 시간과 노력이 필요하며 많은 시행착오를 겪어야 한다. 따라서 이러한 시간과 노력을 줄이고 실험을 하기 이전에 결과를 예측하여 실험의 방향을 제시하고자 TCAD simulation을 이용하여 결정질 태양전지의 전면에 형성한 선택적 doping 농도에 따른 pn 접합 형성 구조와 doping profile에 따른 전기적, 광학적 특성을 예측하고 효과적인 특성을 가질 수 있는 구조를 제시하고자 한다. 선택적 doping의 효과를 확인하기 위해 SR로 각 파장별 양자효율의 변화와 전기적 특성을 분석하여 selective emitter 태양전지에 적합한 pn 접합 형성구조를 제시하고자 한다.

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결정질 실리콘 태양전지에서 도금을 이용한 전극 형성 시 발생되는 레이저 손상 제거 (Removal of Laser Damage in Electrode Formed by Plating in Crystalline Silicon Solar Cells)

  • 정명상;강민구;이정인;송희은
    • 한국전기전자재료학회논문지
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    • 제29권6호
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    • pp.370-375
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    • 2016
  • In this paper, we investigated the electrical properties of crystalline silicon solar cell fabricated with Ni/Cu/Ag plating. The laser process was used to ablate silicon nitride layer as well as to form the selective emitter. Phosphoric acid layer was spin-coated to prevent damage caused by laser and formed selective emitter during laser process. As a result, the contact resistance was decreased by lower sheet resistance in electrode region. Low sheet resistance was obtained by increasing laser current, but efficiency and open circuit voltage were decreased by damage on the wafer surface. KOH treatment was used to remove the laser damage on the silicon surface prior to metalization of the front electrode by Ni/Cu/Ag plating. Ni and Cu were plated for each 4 minutes and 16 minutes and very thin layer of Ag with $1{\mu}m$ thickness was plated onto Ni/Cu electrode for 30 seconds to prevent oxidation of the electrode. The silicon solar cells with KOH treatment showed the 0.2% improved efficiency compared to those without treatment.

에미터 랩쓰루 실리콘 태양전지 개발 (Current Status of Emitter Wrap-Through c-Si Solar Cell Development)

  • 조재억;양병기;이홍구;현덕환;정우원;이대종;홍근기;이성은;홍정의
    • Current Photovoltaic Research
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    • 제1권1호
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    • pp.17-26
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    • 2013
  • In contrast to conventional crystalline cells, back-contact solar cells feature high efficiencies, simpler module assembly, and better aesthetics. The highest commercialized cell and module efficiency was recorded by n-type back-contact solar cells. However, the mainstream PV industry uses a p-type substrate instead of n-type due to the high costs and complexity of the manufacturing processes in the case of the latter. P-type back-contact solar cells such as metal wrap-through and emitter wrap-through, which are inexpensive and compatible with the current PV industry, have consequently been developed. In this paper the characteristics of EWT (emitter wrap-through) solar cells and their status and prospects for development are discussed.

새로운 대기압 플라즈마 소스를 이용한 결정질 실리콘 태양전지 인(P) 페이스트 도핑에 관한 연구 (A Study on Feasibility of the Phosphoric Paste Doping for Solar Cell using Newly Atmospheric Pressure Plasma Source)

  • 조이현;윤명수;조태훈;노준형;전부일;김인태;최은하;조광섭;권기청
    • 신재생에너지
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    • 제9권2호
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    • pp.23-29
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    • 2013
  • Furnace and laser is currently the most important doping process. However furnace is typically difficult appling for selective emitters. Laser requires an expensive equipment and induces a structural damage due to high temperature using laser. This study has developed a new atmospheric pressure plasma source and research atmospheric pressure plasma doping. Atmospheric pressure plasma source injected Ar gas is applied a low frequency (a few 10 kHz) and discharged the plasma. We used P type silicon wafers of solar cell. We set the doping parameter that plasma treatment time was 6s and 30s, and the current of making the plasma is 70 mA and 120 mA. As result of experiment, prolonged plasma process time and highly plasma current occur deeper doping depth and improve sheet resistance. We investigated doping profile of phosphorus paste by SIMS (Secondary Ion Mass Spectroscopy) and obtained the sheet resistance using generally formula. Additionally, grasped the wafer surface image with SEM (Scanning Electron Microscopy) to investigate surface damage of doped wafer. Therefore we confirm the possibility making the selective emitter of solar cell applied atmospheric pressure plasma doping with phosphorus paste.