• Title/Summary/Keyword: 염료감응태양전지

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Electrochemical properties of metal salts polymer electrolyte for DSSC (금속염을 이용한 염료감응 태양전지의 고체전해질의 전기화학적 특성)

  • Zhao, Xing Guan;Jin, En Mei;Gu, Hal-Bon
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.55.1-55.1
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    • 2011
  • Dye-sensitized solar cell(DSSC) have been considered one of the promising alternatives to conventional solar cells, because of their low cost, easy fabrication and relatively high energy conversion efficiency. However, although the cell offers reasonable efficiency at least 11%, the use of a liquid electrolyte placed technological challenges for achieving the desired durability and operational stability of the cell. In order to prevent or reduce electrolyte leakage considerable efforts have been made, such as p-type semiconductor or organic hole-transport material that better mechanical properties and simple fabrication processes. In this work, we synthesized solid-state electrolyte containing LiI and KI metal salt with starting materials of poly ethylene oxide to substitute liquid electrolyte enhance the ionic conductivity and solar conversion efficiency. Li+ leads to faster diffusion and higher efficiency and K+ leading to higher ionic conductivity. The efficiency of poly ethylene oxide/LiI system electrolyte is 1.47% and poly ethylene oxide/potassium electrolyte is 1.21%. An efficiency of 3.24% is achieved using solid-state electrolyte containing LiI and KI concentrations. The increased solar conversion efficiency is attributed to decreased crystallinity in the polymer that leads to enhanced charge transfer.

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A study of the light scattering effect depending on $TiO_2$ particle size to a dye-sensitized solar cell (염료감응형 태양전지의 $TiO_2$ 입자 크기에 따른 광분산 효과 연구)

  • Son, Min-Kyu;Seo, Hyun-Woong;Lee, Kyoung-Jun;Jang, Jin-Ju;Hong, Ji-Tae;Kim, Hee-Je
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.10a
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    • pp.128-130
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    • 2008
  • One of methods to increase the efficiency of a dye-sensitized solar cell(DSC) is the effective usage of the incident light. It can be controlled by using a light scattering layer. The light scattering effect makes that the optical path length of incident light to DSC increases. And then, the photocurrent and the efficiency is increased because of the increase of dye adsorption and the abundant amount of the light. In this study, we apply the light scattering layer to DSC by using two $TiO_2$ pastes that have different particle sizes. As a result, the photocurrent increases and the total efficiency is also increases in the case of using large-sized $TiO_2$ particle as the light scattering layer.

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Sol-gel 법을 이용한 ZnO-$TiO_2$ Core-shell 나노입자의 합성

  • Yang, Hui-Su;Nam, Sang-Hun;Jo, Sang-Jin;Jeong, Won-Seok;Bu, Jin-Hyo
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.366-366
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    • 2011
  • 이성분 산화물인 ZnO/$TiO_2$ core-shell 나노입자는 core-shell 구조의 특성과 이성분 산화물의 상호작용에 의해서 염료감응형 태양전지의 효율향상을 기대할 수 있다. Znic acetate($Zn_2(CH_3COO)$)와 Titanium(IV) butoxide($Ti(OBu)_4$)를 이용하여 ZnO 나노입자를 수열합성하고 그 주의에 $TiO_2$을 가수분해 반응을 이용하여 둘러싸는 core-shell형태의 물질을 합성하였다. 그 이후 결정성 및 유기물 제거를 위해서 4시간 동안 고온에서 소성하였다. SEM 결과에 따르면 소성 온도를 600도까지 증가시키면 ZnO의 경우 나노입자의 크기가 증가하는 경향을 확인하였다. 하지만 core-shell의 경우는 ZnO의 뭉침현상을 $TiO_2$이 방해하여 초기합성된 크기와 동일한 크기를 유지하는 것을 확인하였다. 또한 XRD 결과에 따르면 주변에 형성된 $TiO_2$ 이외에 $Zn_2TiO_4$의 spinel 구조를 가지는 물질이 합성되는 것을 확인할 수 있었다. 합성된 core-shell 구조의 나노입자는 약 40~50 nm의 크기를 가지고 600도에서 소성된 입자의 경우 산소 정공이 거의 없는 약 3 eV의 밴드갭을 가지는 물질로 합성이 되었다. Core-shell 나노입자의 경우 염료 감응형 태양전지의 반도체 물질로 응용 가능할 것으로 판단된다.

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A study on the large scaling of Dye-Sensitized Solar Cell for commercialization (염료 감응형 태양전지의 상용화를 위한 실용적 대면적화에 대한 연구)

  • Kim, Mi-Jeong;Seo, Hyun-Woong;Hong, Ji-Tae;Kim, Hee-Je
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1297-1298
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    • 2007
  • 염료 감응형 태양전지(DSSC)의 개발 이후 많은 연구와 실험이 상용화를 위한 대면적화에 중점을 두고 진행되고 있다. 대면적화에 대한 대부분의 연구에서 그리드 전극을 넣고 내부적으로 직, 병렬 구조를 조합해 확장 시키는 방법을 채택하고 있지만, 그리드 전극을 넣음으로써 발생하는 손실, 즉 실링 공정의 어려움으로 발생하는 전자의 손실과 제작 공정상에 있어서의 복잡한 절차 및 그에 따라 소요되는 시간 등을 감안할 때 이는 그리 효과적이지 못하다고 할 수 있다. 면적이 작은 여러 셀을 외부에서 연결시켜 대면적화 시켰을 때 그 효과에 대해서 알아보고, 동일한 면적의 대면적화 된 단일 셀과 비교, 그 결과를 분석해 보았다. 그 결과, 우리는 동일한 면적을 가지고 있는 대면적의 단일 셀보다 여러 셀의 병렬 조합으로 이루어진 것이 더 좋은 결과를 나타냄을 알 수 있었다. 이를 바탕으로 유효면적 $8cm^2$을 가지는 셀을 외부적으로 연결시켜 대면적화 시켰을 때 그 효과에 대해서 알아보고 실험하였다. 하나의 모듈을 만들기 위해 직 병렬의 다양한 조합을 시도하여 직렬 연결이 많이 된 모듈일수록 이를 다시 병렬로 연결했을 때 전류의 손실을 많이 줄일 수 있다는 결론을 얻었다.

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Characterization of substrates using Fluor-doped Tin Oxide and Gallium-doped Zinc Oxide for Dye Sensitized Solar cells

  • Gong, Jae-Seok;Choe, Yun-Su;Kim, Jong-Yeol;Im, Gi-Hong;Jeon, Min-Hyeon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.08a
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    • pp.318.2-318.2
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    • 2013
  • 기존의 염료감응형 태양전지(Dye Sensitized Solar Cells; DSSCs)는 최대 효율 11~12%의 광전변환효율을 가지고 있다. 이러한 한계를 극복하기 위해서 광흡수 층 최적화, 상대전극의 촉매성 증대, 전해질의 산화 환원 반응 최적화 등의 많은 연구가 이루어지고 있다. 본 연구에서는 DSSCs의 광전변환효율을 증가시키고자 기존의 투명전극 및 기판으로 사용되는 FTO(Fluor-doped Tin Oxide)를 GZO(Gallium-doped Zinc Oxide)를 사용하여 투명전극기판에 따른 계면 저항, 전류손실 등 DSSCs에 미치는 영향을 분석하였다. 본 연구에 사용된 FTO는 ${\sim}7{\Omega}/{\square}$의 면저항과 80%이상의 투과도를 갖고 있으나 Ion-Sputtering 법으로 증착된 GZO는 열처리 과정을 통하여 $3{\sim}4{\Omega}/{\square}$의 면 저항을 나타내고 80%이상의 우수한 투과도를 가지고 있다. 이러한 두 기판의 특성 비교를 위해, UV-Visble Spectrophotometer를 사용하여 광학적 특성을 분석하고, SEM(Scanning Electron Microscope), AFM(Atomic Force Microscope)를 사용하여 표면 특성을 평가하였다. 또한 전기적 특성을 분석하기 위하여 4-Point-probe를 이용하여 면 저항을 측정하였고, DSSCs의 효율 및 Fill Factor를 분석하기 위하여 Solar Simulator의 I-V measurement를 이용하였다.

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The New Design of Dye-Sensitized Solar Cell Adopted by Sputter Deposition of Counter Electrode (상대전극을 스퍼터링 증착한 염료 감응형 태양전지의 새로운 디자인)

  • Kim, Hee-Je;Song, Keun-Ju;Jeon, Jin-An;Lee, Dong-Yun;Kim, Whi-Young;Choi, Jin-Young
    • 한국신재생에너지학회:학술대회논문집
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    • 2006.06a
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    • pp.154-157
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    • 2006
  • The counter electrode widely used in DSCs (Dye-sensitized Solar Cells) is constructed of conducting glass substrates coated with Pt films, where the platium acts as a catalyst. Pt counter electrodes in DSCs are one important component. It is expected that characteristics of Pt electrodes strongly depend on fabrication process and its surface condition. In this study, Pt counter electrode surface of DSC is deposited by reactive RF magnetron sputtering under the conditions of Ar 5mtorr, RF power of 120w and substrate temperature of $100^{\circ}C$. Surface morphology of Pt electrodes was investigated by FE-SEM and AFM. And this paper shows our recent results and technology to fabricate the new designed cell with Pt electrodes deposited by sputtering method. We have achieved fill factor 65% and photoelectric conversion efficiency around 2.6% as the best results of new designed DSCs structure.

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A Study on the Characteristics of Dye-sensitized Solar Cell Module Using Titanium Thin Film (티타늄 박막을 이용한 염료감응형 태양전지 모듈 특성에 관한 연구)

  • Oh, Byeong-Yun;Kim, Phil-Jung
    • Journal of IKEEE
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    • v.25 no.1
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    • pp.69-75
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    • 2021
  • In this work, we consider the fabrication method and electrical characteristics of dye-sensitized solar cells (DSSCs), which use titanium (Ti) metal thin films to replace expensive fluorine tin oxide (FTO) electrodes. The thickness of the Ti thin film was changed by adjusting the deposition time of the Ti, and the surface resistance decreased as the thickness of the Ti thin film became thicker. The thickness of the Ti thin film was shown to be similar to the surface resistance of the FTO thin film at approximately 190nm and the DSSC with a thickness of approximately 250nm showed the highest energy conversion efficiency of 4.24%. Furthermore, the possibility of commercialization was confirmed by fabricating and evaluating the DSSC module.

Flexible Dye-sensitized Solar Cells by a Low-temperature Sintering Method (저온소결법에 의한 플렉시블 염료감응 태양전지)

  • Baek, Ji-Hye;Kim, Joo-yong;Kang, Wee-Kyung
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.06a
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    • pp.320-322
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    • 2007
  • A new binder-free $TiO_{2}$ paste was prepared by common ion applying effect, enabling low temperature fabrication required for flexible solar cells. The binder-free and high viscosity $TiO_{2}$ coating solution was produced by adding 7.5% aniline in $TiO_{2}$ colloid solution obtained from the high pressure water-heat response method. The resulting pastes had high level of viscosities proper for optimal coating and thus revealed excellent performances in terms of thickness uniformity and I-V characteristics.

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Degradation of a nano-thick Au/Pt bilayered catalytic layer with an electrolyte in dye sensitized solar cells (염료감응태양전지의 Au/Pt 이중 촉매층의 전해질과의 반응에 따른 열화)

  • Noh, Yunyoung;Song, Ohsung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.6
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    • pp.4013-4018
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    • 2014
  • A 0.45 $cm^2$ DSSC device with a glass/FTO/blocking layer/$TiO_2$/N719(dye)/electrolyte/50 nm-Pt/50 nm-Au/FTO/glass was prepared to examine the stability of the Au/Pt bilayered counter electrode (CE) with electrolyte and the energy conversion efficiency (ECE) of dye-sensitized solar cells (DSSCs). For comparison, a 100 nm-thick Pt only CE DSSC was also prepared using the same method. The photovoltaic properties, such as the short circuit current density ($J_{sc}$), open circuit voltage ($V_{oc}$), fill factor (FF), and ECE, were checked using a solar simulator and potentiostat with time after assembling the DSSC. The microstructure of the Au/Pt bilayer was examined by optical microscopy after 0~25 minutes. The ECE of the Pt only CE-employed DSSC was 4.60 %, which did not show time dependence. On the other hand, for the Au/Pt CE DSSC, the ECEs after 0, 5 and 15 minutes were 5.28 %, 3.64 % and 2.09 %, respectively. The corrosion areas of the Au/Pt CE determined by optical microscopy after 0, 5, and 25 minutes were 0, 21.92 and 34.06 %. These results confirmed that the ECE and catalytic activity of Au/Pt CE decreased drastically with time. Therefore, a Au/Pt CE-employed DSSC may be superior to the Pt only CE-employed one immediately after integration of the device, but it would degrade drastically with time.

Fabrication of ZnO Rod by Electrodeposition and Its Application to Dye Sensitized Solar Cell (전기증착법을 이용한 ZnO 막대구조의 형성 및 염료감응형 태양전지에의 응용)

  • Kim, Hyeyoung;Jo, Yunkyoung;Lee, Kiyoung;Lee, Inhae;Tak, Yongsug
    • Korean Chemical Engineering Research
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    • v.50 no.1
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    • pp.162-166
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    • 2012
  • High density of ZnO nanorods were fabricated by electrochemical deposition and subsequent heat treatment. Formation of $Zn(OH)_2$ and ZnO during electrodeposition indicated that the electrodeposition efficiency of ZnO was below 33%. ZnO rod has a preferential (200) growth plane after heat treatment at $500^{\circ}C$ and the growth rate of ZnO rod was measured to be 0.986 ${\mu}m/hr$. Dye sensitized solar cell(DSC) showed the efficiency of 0.21% when electrochemically prepared ZnO rod was used as an electrode. It suggests the possible application of ZnO rod structure in the DSC.