• 제목/요약/키워드: Short circuit (SC)

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Conventional and Inverted Photovoltaic Cells Fabricated Using New Conjugated Polymer Comprising Fluorinated Benzotriazole and Benzodithiophene Derivative

  • Kim, Ji-Hoon;Song, Chang Eun;Kang, In-Nam;Shin, Won Suk;Zhang, Zhi-Guo;Li, Yongfang;Hwang, Do-Hoon
    • Bulletin of the Korean Chemical Society
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    • 제35권5호
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    • pp.1356-1364
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    • 2014
  • A new conjugated copolymer, poly{4,8-bis(triisopropylsilylethynyl)benzo[1,2-b:4,5-b']dithiophene-alt-4,7- bis(5-thiophen-2-yl)-5,6-difluoro-2-(heptadecan-9-yl)-2H-benzo[d][1,2,3]triazole} (PTIPSBDT-DFDTBTz), is synthesized by Stille coupling polycondensation. The synthesized polymer has a band gap energy of 1.9 eV, and it absorbs light in the range 300-610 nm. The hole mobility of a solution-processed organic thin-film transistor fabricated using PTIPSBDT-DFDTBTz is $3.8{\times}10^{-3}cm^2V^{-1}s^{-1}$. Bulk heterojunction photovoltaic cells are fabricated, with a conventional device structure of ITO/PEDOT:PSS/polymer:$PC_{71}BM$/Ca/Al ($PC_{71}BM$ = [6,6]-phenyl-$C_{71}$-butyric acid methyl ester); the device shows a power conversion efficiency (PCE) of 2.86% with an open-circuit voltage ($V_{oc}$) of 0.85 V, a short-circuit current density ($J_{sc}$) of 7.60 mA $cm^{-2}$, and a fill factor (FF) of 0.44. Inverted photovoltaic cells with the structure ITO/ethoxylated polyethlyenimine/ polymer:$PC_{71}BM/MoO_3$/Ag are also fabricated; the device exhibits a maximum PCE of 2.92%, with a $V_{oc}$ of 0.89 V, a $J_{sc}$ of 6.81 mA $cm^{-2}$, and an FF of 0.48.

Co-sensitization of N719 with an Organic Dye for Dye-sensitized Solar Cells Application

  • Wu, Zhisheng;Wei, Yinni;An, Zhongwei;Chen, Xinbing;Chen, Pei
    • Bulletin of the Korean Chemical Society
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    • 제35권5호
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    • pp.1449-1454
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    • 2014
  • The co-sensitization of N719 with a cyclic thiourea functionalized organic dye, coded AZ5, for dye-sensitized solar cells (DSSCs) was demonstrated. Due to its intensive absorption in ultraviolet region, AZ5 could compensate the loss of light harvest induced by triiodide, thereby the short-circuit photocurrent density ($J_{sc}$) was increased for co-sensitized (N719+AZ5) DSSC. Moreover, the electron recombination and dye aggregation were retarded upon N719 cocktail co-sensitized with AZ5, thus the open-circuit voltage ($V_{oc}$) of co-sensitized device was enhanced as well. The increased $J_{sc}$ (17.9 $mA{\cdot}cm^{-2}$) combined with the enhanced $V_{oc}$ (698 mV) ultimately resulted in an improved power conversion efficiency (PCE) of 7.91% for co-sensitized DSSC, which was raised by 8.6% in comparison with that of N719 (PCE = 7.28%) sensitized alone. In addition, co-sensitized DSSC exhibited a better stability than that of N719 sensitized device probably due to the depression of dye desorption.

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.

플라스틱 기판에 제작된 유기박막태양전지의 출력특성 경시변화 (Time-Variant Characteristics of Organic Thin Film Solar Cell Devices on Plastic Substrates)

  • 노임준;이선우;신백균
    • 한국진공학회지
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    • 제22권4호
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    • pp.211-217
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    • 2013
  • $PCDTBT:PC_{71}BM$$PTB7:PC_{71}BM$을 유기고분자 활성층 재료로 이용한 Bulk Hetero-Junction (BHJ) 구조의 유기박막태양전지를 플라스틱 기판 위에 각각 제작하여, 시간변화에 따른 단락전류밀도($J_{SC}$), 개방전압($V_{OC}$), 곡선인자(FF) 및 전력변환효율(PCE) 등 출력특성의 변화에 대해 고찰하였다. 유기박막태양전지의 출력특성 파라메터는 시간 경과에 따라 모두 감소하는 경향을 나타내었으며, 특히 개방전압의 감소폭이 컸다. 이러한 개방전압 감소의 원인은 빛에 대한 장시간의 노출과 산소를 포함하는 수분과의 접촉에 의한 LUMO 준위와 HOMO 준위 차의 감소가 그 원인이라 생각되며, 그 메커니즘에 대해 고찰하였다. 또한 유기박막태양전지 소자의 직렬 및 병렬 저항 값은 감소하다가 다시 증가하는 경향을 보였다. 이는 LUMO 준위와 HOMO 준위 차가 감소함에 의한 것과 공액 고분자 활성층 내부에서의 열적과정 손실에 기인하여 전극과 고분자의 계면에서의 접촉저항의 증가 때문이라고 생각된다. 유기박막태양전지의 전력변환효율은 초기에 급격한 감소를 보이다가 시간이 지날수록 감소폭이 차츰 둔화되어 한계치에 도달한 후, 포화되는 경향을 보였다. 이것이 유기박막태양전지가 실제 구동에서 발생시킬 수 있는 최소 출력특성값인 것으로 판단된다.

Evaluation of a betavoltaic energy converter supporting scalable modular structure

  • Kang, Taewook;Kim, Jinjoo;Park, Seongmo;Son, Kwangjae;Park, Kyunghwan;Lee, Jaejin;Kang, Sungweon;Choi, Byoung-Gun
    • ETRI Journal
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    • 제41권2호
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    • pp.254-261
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    • 2019
  • Distinct from conventional energy-harvesting (EH) technologies, such as the use of photovoltaic, piezoelectric, and thermoelectric effects, betavoltaic energy conversion can consistently generate uniform electric power, independent of environmental variations, and provide a constant output of high DC voltage, even under conditions of ultra-low-power EH. It can also dramatically reduce the energy loss incurred in the processes of voltage boosting and regulation. This study realized betavoltaic cells comprised of p-i-n junctions based on silicon carbide, fabricated through a customized semiconductor recipe, and a Ni foil plated with a Ni-63 radioisotope. The betavoltaic energy converter (BEC) includes an array of 16 parallel-connected betavoltaic cells. Experimental results demonstrate that the series and parallel connections of two BECs result in an open-circuit voltage $V_{oc}$ of 3.06 V with a short-circuit current $I_{sc}$ of 48.5 nA, and a $V_{oc}$ of 1.50 V with an $I_{sc}$ of 92.6 nA, respectively. The capacitor charging efficiency in terms of the current generated from the two series-connected BECs was measured to be approximately 90.7%.

집광 조건에서의 GaInP/AlGaInP 이종접합 구조 태양전지 특성 연구 (Study on the Characteristics of GaInP/AlGaInP Heterojunction Photovoltaic Cells under Concentrated Illumination)

  • 김정환
    • 공업화학
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    • 제30권4호
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    • pp.504-508
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    • 2019
  • GaInP/AlGaInP 이종접합 구조를 제안하고 집광 조건에서 가장 높은 효율을 달성한 III-V 화합물 반도체 다중접합 태양전지의 맨 위 subcell에 주로 사용되는 GaInP 동종접합 구조를 대체해 이종접합 구조가 응용될 가능성에 대하여 조사하였다. $2^{\circ}$ off 된 웨이퍼와 $10^{\circ}$ off 된 서로 다른 off-cut 방향을 갖는 두 종류의 GaAs 기판 위에 성장된 태양전지의 특성을 집광 조건에서 측정하고 비교하였다. $10^{\circ}$ off 된 태양전지에서 더 높은 단락전류와 변환효율을 얻었다. 1 sun 조건에서 $10^{\circ}$ off 된 기판 위에 제작된 $2{\times}2mm^2$ 면적의 태양전지에서 $9.21mA/cm^2$의 단락전류밀도와 1.38 V의 개방 전압이 측정되었다. $10^{\circ}$ off 기판 위에 제작된 $5{\times}5mm^2$ 태양전지에서 집광도 증가에 따라 곡선인자(fiill factor)가 감소하여 변환효율은 6.03% (1 sun)에서 5.28% (20 sun)로 측정되었다.

Wavelength Conversion Lanthanide(III)-cored Complex for Highly Efficient Dye-sensitized Solar Cells

  • Oh, Jung-Hwan;Song, Hae-Min;Eom, Yu-Kyung;Ryu, Jung-Ho;Ju, Myung-Jong;Kim, Hwan-Kyu
    • Bulletin of the Korean Chemical Society
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    • 제32권8호
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    • pp.2743-2750
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    • 2011
  • Lanthanide(III)-cored complex as a wavelength conversion material has been successfully designed and synthesized for highly efficient dye-sensitized solar cells, for the first time, since light with a short wavelength has not been effectively used for generating electric power owing to the limited absorption of these DSSCs in the UV region. A black dye (BD) was chosen and used as a sensitizer, because BD has a relatively weak light absorption at shorter wavelengths. The overall conversion efficiency of the BD/WCM device was remarkably increased, even with the relatively small amount of WCM added to the device. The enhancement in $V_{oc}$ by WCM, like DCA, could be correlated with the suppression of electron recombination between the injected electrons and $I_3{^-}$ ions. Furthermore, the short-circuit current density was significantly increased by WCM with a strong UV light-harvesting effect. The energy transfer from the Eu(III)-cored complex to the $TiO_2$ film occurred via the dye, so the number of electrons injected into the $TiO_2$ surface increased, i.e., the short-circuit current density was increased. As a result, BD/WCM-sensitized solar cells exhibit superior device performance with the enhanced conversion efficiency by a factor of 1.22 under AM 1.5 sunlight: The photovoltaic performance of the BD/WCM-based DSSC exhibited remarkably high values, $J_{sc}$ of 17.72 mA/$cm^2$, $V_{oc}$ of 720 mV, and a conversion efficiency of 9.28% at 100 mW $cm^{-2}$, compared to a standard DSSC with $J_{sc}$ of 15.53 mA/$cm^2$, $V_{oc}$ of 689 mV, and a conversion efficiency of 7.58% at 100 mW $cm^{-2}$. Therefore, the Eu(III)-cored complex is a promising candidate as a new wavelength conversion coadsorbent for highly efficient dye-sensitized solar cells to improve UV light harvesting through energy transfer processes. The abstract should be a single paragraph which summaries the content of the article.

TiO2를 이용한 염료감응형 태양전지의 제조 및 특성 (The Preparation and Property of Dye Sensitized Solar Cells using TiO2)

  • 김길성;김영순;김형일;서형기;양오봉;신형식
    • Korean Chemical Engineering Research
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    • 제44권2호
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    • pp.179-186
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    • 2006
  • $TiO_2$를 나노튜브(nanotube)와 나노입자(nanoparticle)의 두 가지 형태로 제조하여 닥터 브레이드 방법과 $450^{\circ}C$에서의 소결 공정을 통하여 다공성막으로 제조하였다. 이 다공성막을 작용물질로 사용하여 염료감응형 태양전지를 제조하고 그 특성을 조사하였다. $TiO_2$ 나노입자는 수소화 티탄염 나노튜브를 $180^{\circ}C$에서 24시간 동안 가수열분해 처리함으로써 합성하였다. 이 $TiO_2$ 나노입자를 다공성막으로 사용하여 제작한 염료감응형 태양전지의 에너지 효율(${\eta}$)은 8.07%이며, 개방전압(open-circuit potential, $V_{OC}$), 단락전류(short-circuit current, $I_{SC}$)와 fill factor(FF) 값은 각각 0.81 V, $18.29mV/cm^2$와 66.95%이었다. 나노튜브 $TiO_2$를 제조할 경우에는 NaOH 용액의 농도를 3M과 5M로 변화시켰다. 그 결과 3M NaOH 용액에서 합성된 나노튜브 $TiO_2$를 다공성막으로 사용하여 제작된 염료감응형 태양전지의 에너지 효율(${\eta}$)은 6.19%이었으며, $V_{OC}$, $IV_{SC}$와 FF 값은 각각 0.77 V, $12.41mV/cm^2$와 64.49%이었다. 반면에 5 M NaOH에서는 전자이동성이 좋지 않아 효율이 4.09%로 감소하였다. 본 연구 결과 가수열분해법에 의해 제조한 $TiO_2$ 나노입자로 제조한 염료감응형 태양전지의 효율이 가장 높았다.

Efficiency Improvement of Organic Solar Cells Using Two-step Annealing Technique

  • Masood, Bilal;Haider, Arsalan;Nawaz, Tehsin
    • Transactions on Electrical and Electronic Materials
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    • 제17권3호
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    • pp.134-138
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    • 2016
  • The fullerene solar cells are becoming a feasible choice due to the advanced developments in donor materials and improved fabrication techniques of devices. Recently, sufficient optimization and improvements in the processing techniques like incorporation of solvent vapor annealing (SVA) with additives in solvents has become a major cause of prominent improvements in the performance of organic solar cell-based devices . On the other hand, the challenge of reduced open circuit voltage (Voc) remains. This study presents an approach for significant performance improvement of overall device based on organic small molecular solar cells (SMSCs) by following a two step technique that comprises thermal annealing (TA) and SVA (abbreviated as SVA+TA). In case of exclusive use of SVA, reduction in Voc can be eliminated in an effective way. The characteristics of charge carriers can be determined by the measurement of transient photo-voltage (TPV) and transient photo-current (TPC) that determines the scope for improvement in the performance of device by two step annealing. The recovery of reduced Voc is linked with the necessary change in the dynamics of charge that lead to increased overall performance of device. Moreover, SVA and TA complement each other; therefore, two step annealing technique is an appropriate way to simultaneously improve the parameters such as Voc, fill factor (FF), short circuit current density (Jsc) and PCE of small molecular solar cells.

Light Scattering Amplification on Dye Sensitized Solar Cells Assembled by Hollyhock-shaped CdS-TiO2 Composites

  • Lee, Ga-Young;Lee, Hu-Ryul;Um, Myeong-Heon;Kang, Mi-Sook
    • Bulletin of the Korean Chemical Society
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    • 제33권9호
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    • pp.3043-3047
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    • 2012
  • To investigate the scattering layer effect of a $TiO_2$ multilayer in dye-sensitized solar cells (DSSCs), we designed a new DSSC system, assembled with a CdS-$TiO_2$ scattering layer electrode. A high-magnification SEM image exhibited hollyhock-like particles with a width of 1.5-2.0 ${\mu}m$ that were aggregated into 10-nm clumps in a hexagonal petal shape. The efficiency was higher in the DSSC assembled with a CdS-$TiO_2$ scattering layer than in the DSSC assembled with $TiO_2$-only layers, due to the decreased resistance in electrochemical impedance spectroscopy (EIS). The short-circuit current density ($J_{sc}$) was increased by approximately 7.26% and the open-circuit voltage ($V_{oc}$) by 2.44% over the 1.0 wt % CdS-$TiO_2$ composite scattering layer and the incident photon-to-current conversion efficiency (IPCE) in the maximum peak was also enhanced by about 5.0%, compared to the DSSC assembled without the CdS-$TiO_2$scattering layer.