• 제목/요약/키워드: DSSC efficiency

검색결과 179건 처리시간 0.019초

고효율 염료감응 태양전지를 위한 $TiO_2$의 합성 및 최적화 (optimization and synthesis of $TiO_2$ for for the high efficiency DSSC)

  • 박아름;기현철;;구할본
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 추계학술대회 초록집
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    • pp.56.2-56.2
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    • 2011
  • 고효율 염료감응 태양전지를 제작하기 위해 Sol-gel법을 사용하여 $TiO_2$ 분말을 제조하였다. 제조 과정 중 다양한 양의 nitric acid를 첨가하여 pH를 조절하였다. Sol-gel법을 위한 출발 물질로 titanium (IV) isopropoxide(TTIP)와 DI water를 사용하였으며 nitric acid은 0, 0.05, 0.1, 0.15의 몰비(nitric acid/TTIP)로 첨가하였다. 첨가한 결과 pH는 $22^{\circ}C$에서 각각 5.52, 2.26, 1.68, 1.38이었다. 얻어진 $TiO_2$ 콜로이드 용액은 결정성 있는 분말로 제조 후 $5{\times}5[mm^2]$ 크기의 염료감응 태양전지를 제작하는데 사용 되였다. $TiO_2$의 결정구조 및 형태는 cell의 XRD와 FE-SEM으로 분석되었고 전기화학적 특성을 분석하기 위해 irradiation of AM 1.5 ($100mW/cm^2$) simulatedsunlight에서 I-V 곡선을 측정하였다. 측정 결과 몰비(nitric acid/TTIP) 0.05, pH가 2.26일 때 가장 우수한 효율 특성을 보였다.

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Nanocrystalline Antimony Oxide Films for Dye-Sensitized Solar Cell Applications

  • Kim, Ji-Hye;Jang, Ji-Yeon;Kim, Sung-Chul;Han, Chi-Hwan;Kim, Seung-Joo
    • Bulletin of the Korean Chemical Society
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    • 제33권4호
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    • pp.1204-1208
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    • 2012
  • A new photoelectrode composed of $Sb_6O_{13}$ nanoparticles with the size of 20-30 nm has been prepared via thermolysis of a colloidal antimony pentoxide tetrahydrate ($Sb_2O_5{\cdot}4H_2O$) suspension. The $Sb_6O_{13}$ electrode showed good semiconducting properties applicable to dye-sensitized solar cells (DSSCs); the energy band gap was estimated to be $3.05{\pm}0.5$ eV and the position of conduction band edge was close to those of $TiO_2$ and ZnO. The DSSC assembled with the $Sb_6O_{13}$ photoelectrode and a conventional ruthenium-dye (N719) exhibited the overall photo-current conversion efficiency of 0.74% ($V_{oc}$ = 0.76 V, $J_{sc}=1.99\;mAcm{-2}$, fill factor = 0.49) under AM 1.5, $100\;mWcm^{-2}$ illumination.

플루오란 로이코 염료를 이용한 염료감응형 태양전지 (Dye-sensitized Solar Cells Based on Fluoran Leuco Sensitizers)

  • 정혜인;안병관
    • 한국전기전자재료학회논문지
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    • 제26권3호
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    • pp.240-245
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    • 2013
  • The utilization of a fluoran leuco sensitizer, 2-anilino-6-dibutyl amino-3-methylfluoran (ODB-2), for dye-sensitized solar cells (DSSCs) was investigated through the examination of the adsorption of ODB-2 molecules onto the surfaces of porous titanium dioxide (titania, $TiO_2$) films and the photovoltaic properties of ODB-2-based DSSCs. Despite of the absence of the specific anchoring groups with titania, ODB-2 dye molecules were spontaneously adsorbed onto the titania surfaces because the lactone ring in ODB-2 was opened and changed into the carboxylic acid (-COOH) by releasing protons from the surfaces ($TiOH_2{^+}$) of titania, which consequently leads to the chemisorption reaction of ODB-2 molecules to the active sites of titania. DSSCs based on ODB-2 exhibited typical photovoltaic properties with an open-circuit voltage ($V_{OC}$) of 0.19 V, a short-circuit current ($J_{SC}$) of $0.30\;mA{\cdot}cm^{-2}$, a fill factor (FF) of 37%, and a conversion efficiency (PCE) of 0.02%.

Synthesis of CoSe2/RGO Composites and Its Application as a Counter Electrode for Dye-Sensitized Solar Cells

  • Ko, Yohan;Choi, Wooyeol;Kim, Youbin;Lee, Chanyong;Jun, Yongseok;Kim, Junhee
    • Journal of Electrochemical Science and Technology
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    • 제10권3호
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    • pp.313-320
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    • 2019
  • In this study, cobalt diselenide ($CoSe_2$) and the composites ($CoSe_2@RGO$) of $CoSe_2$ and reduced graphene oxide (RGO) were synthesized by a facile hydrothermal reaction using cobalt ions and selenide source with or without graphene oxide (GO). The formation of $CoSe_2@RGO$ composites was identified by analysis with X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Raman spectroscopy and scanning electron microscopy (SEM). Electrochemical analyses demonstrated that the $CoSe_2@RGO$ composites have excellent catalytic activity for the reduction of $I_3{^-}$, possibly indicating a synergetic effect of $CoSe_2$ and RGO. As a consequence, the $CoSe_2@RGO$ composites were applied as a counter electrode in DSSC for the reduction of redox couple electrolyte, and exhibiting the comparable power conversion efficiency (7.01%) to the rare metal platinum (Pt) based photovoltaic device (6.77%).

PVC-g-PSSA 가지형 공중합체를 이용한 다공성 $TiO_2$ 박막의 합성 및 염료감응 태양전지 응용 (Synthesis of Porous $TiO_2$ Thin Films Using PVC-g-PSSA Graft Copolymer and Their Use in Dye-sensitized Solar Cells)

  • 변수진;서진아;지원석;설용건;김종학
    • 멤브레인
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    • 제21권2호
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    • pp.193-200
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    • 2011
  • 원자전달 라디칼 중합(ATRP)에 의해 poly(vinyl chloride) (PVC) 주사슬과 poly(styrene sulfonic acid) (PSSA) 곁사슬로 되어있는 양쪽성 PVC-g-PSSA 가지형 공중합체를 합성하였다. PVC-g-PSSA 가지형 공중합체 고분자를 템플레이트로 사용하고 졸겔법을 적용하여, 결정성 아타네제상의 미세기공 이산화티타튬 필름을 제조하였다. $TiO_2$ 전구체인 TTIP를 친수성인 PSSA 영역과 선택적으로 작용시켜 $TiO_2$ 메조기공 필름을 성장하였으며, 이를 주사전자 현미경 (SEM)과 엑스레이회절 (XRD)분석을 통해 분석하였다. 스핀코팅 횟수와 P25 도입에 따른 염료감응 태양전지 성능을 체계적으로 분석하였다. 그 결과 준고체 고분자 전해질을 이용하였을 때, 100 mW/$cm^2$ 조건에서 에너지 변환 효율이 2.7%에 이르렀다.

TiO2와 Graphene 혼합물을 전극으로 사용한 염료감응형 태양전지특성 연구 (Dye-Sensitized Solar Cell Based on TiO2-Graphene Composite Electrodes)

  • 바트무르;양우승;암바데;이수형
    • Korean Chemical Engineering Research
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    • 제50권1호
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    • pp.177-181
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    • 2012
  • 본 연구에서는 $TiO_2$ 필름에 그라핀나노시트(graphenenanosheet, GNS)의 양을 다르게 함으로써 형성한 전극을 이용하여 염료감응형 태양전지를 제작하였고 그 특성을 연구하였다. $TiO_2$-GNS 혼합물 전극은 단순한 혼합방식에 의하여 제작되었으며, N3를 염료로 사용하여 태양전지의 효율을 평가하였다. $TiO_2$-GNS 혼합물 전극을 사용한 염료감응형 태양전지의 전환효율은 GNS의 양에 의해 영향을 받았으며, $TiO_2$에 GNS를 0.01 wt% 혼합한 전극을 사용하여 제작한 염료감응형 태양전지가 가장 높은 효율인 5.73%를 나타내었다. 이는 GNS를 혼합하지 않은 전극을 사용한 태양전지보다 26% 높은 효율이었다. 이와 같은 효율 증가의 원인으로는 GNS 첨가에 의한 N3의 흡착량 증가, 전자 재결합(electron recombination)과 back transport reaction의 감소, 전자 수송의 증가로부터 기인한 것으로 생각된다. 본 연구에서 $TiO_2$(anatase)와 GNS의 존재는 Field-Emission Scanning Electron Microscopy를 통하여 확인하였으며, 흡착된 염료의 양은 자외선분광기(UV-vis Spectroscopy), 전자 재결합의 감소 및 전자 수송에 대한 분석은 전기화학적 임피던스분광법(Electrochemical Impedance Spectroscopy)을 이용하였다.

ZnO로 후처리된 TiO2 광전극을 이용한 고효율의 염료감응형 태양전지의 개발 (Development of Highly Efficient Dye-Sensitized Solar Cells Using ZnO Post-Treated TiO2 Photoelectrodes)

  • 박준용;윤병로;김태오
    • 한국수소및신에너지학회논문집
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    • 제28권4호
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    • pp.419-425
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    • 2017
  • In this study, an efficient dye-sensitive solar cells (DSSC) was developed after post-treatment of ZnO on $TiO_2$ photoelectrode. The $TiO_2$ electrode with ZnO post treatment was prepared with Titanium isoporopoxide in Zinc Nitrate Hexahydrate aqueous solution by incineration for 30 min at $450^{\circ}C$. The ZnO-post treated $TiO_2$ electrode showed strong dispersion force between particles in relation to the control $TiO_2$, referring high specific surface area and dye-adsorption rate. Proper addition of ZnO enhanced electron mobility and reduced internal resistance and electron recombination. Light conversion efficiency of DSSCs containing the ZnO-posttreated $TiO_2$ electrode increased 35.4% when compared to the DSSCs using $TiO_2$ electrode. It is similar to the DSSCs with $TiCl_4$ post treatment $TiO_2$ electrode. Increasing of light conversion efficiency was due to high specific surface area and dispersion force, and low dye-adsorption rate and electron recombination. Taken together, ZnO may be used as posttreatment of photoelectrode and replaced $TiCl_4$ that has high toxicity and causticity.

Effect of TiO2 Coating Thickness on Photovoltaic Performance of Dye-sensitized Solar Cells Prepared by Screen-printing Using TiO2 Powders

  • Lee, Deuk Yong;Cho, Hun;Kang, Daejun;Kang, Jong-Ho;Lee, Myung-Hyun;Kim, Bae-Yeon;Cho, Nam-Ihn
    • 한국세라믹학회지
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    • 제51권4호
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    • pp.362-366
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    • 2014
  • Dye-sensitized solar cells (DSSCs) were synthesized using a $0.25cm^2$ area of a $TiO_2$ nanoparticle layer as the electrode and platinum (Pt) as the counter electrode. The $TiO_2$ nanoparticle layers (12 to 22 ${\mu}m$) were screen-printed on fluorine-doped tin oxide glass. Glancing angle X-ray diffraction results indicated that the $TiO_2$ layer is composed of pure anatase with no traces of rutile $TiO_2$. The Pt counter electrode and the ruthenium dye anchored $TiO_2$ electrode were then assembled. The best photovoltaic performance of DSSC, which consists of a $18{\mu}m$ thick $TiO_2$ nanoparticle layer, was observed at a short circuit current density ($J_{sc}$) of $14.68mA{\cdot}cm^{-2}$, an open circuit voltage ($V_{oc}$) of 0.72V, a fill factor (FF) of 63.0%, and an energy conversion efficiency (${\eta}$) of 6.65%. It can be concluded that the electrode thickness is attributed to the energy conversion efficiency of DSSCs.

A Zinc Porphyrin Sensitizer Modified with Donor and Acceptor Groups for Dye-Sensitized Solar Cells

  • Lee, Seewoo;Sarker, Ashis K.;Hong, Jong-Dal
    • Bulletin of the Korean Chemical Society
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    • 제35권10호
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    • pp.3052-3058
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    • 2014
  • In this article, we have designed and synthesized a novel donor-${\pi}$-acceptor (D-${\pi}$-A) type porphyrin-based sensitizer (denoted UI-5), in which a carboxyl anchoring group and a 9,9-dimethyl fluorene were introduced at the meso-positions of porphyrin ring via phenylethynyl and ethynyl bridging units, respectively. Long alkoxy chains in ortho-positions of the phenyls were supposed to reduce the degree of dye aggregation, which tends to affect electron injection yield in a photovoltaic cell. The cyclic voltammetry was employed to determine the band gap of UI-5 to be 1.41 eV based on the HOMO and LUMO energy levels, which were estimated by the onset oxidation and reduction potentials. The incident monochromatic photon-to-current conversion efficiency of the UI-5 DSSC assembled with double-layer (20 nm-sized $TiO_2$/400 nm-sized $TiO_2$) film electrodes appeared lower upon overall ranges of the excitation wavelengths, but exhibited a higher value over the NIR ranges (${\lambda}$ = 650-700 nm) compared to the common reference sensitizer N719. The UI-5-sensitized cell yielded a relatively poor device performance with an overall conversion efficiency of 0.74% with a short circuit photocurrent density of $3.05mA/cm^2$, an open circuit voltage of 0.54 mV and a fill factor of 0.44 under the standard global air mass (AM 1.5) solar conditions. However, our report about the synthesis and the photovoltaic characteristics of a porphyrin-based sensitizer in a D-${\pi}$-A structure demonstrated a significant complex relationship between the sensitizer structure and the cell performance.

Dynamic Rapid Synthesis of Bis(2,2'-bipyridine)nitrato Zinc (II) Nitrate Using a Microwave Method and its Application to Dye-Sensitized Solar Cells (DSSC)

  • Kim, Young-Mi;Kim, Su-Jung;Nahm, Kee-Pyung;Kang, Mi-Sook
    • Bulletin of the Korean Chemical Society
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    • 제31권10호
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    • pp.2923-2928
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    • 2010
  • This study examined the synthesis of the crystal structure of bis(2,2'-bipyridine)nitrato zinc (II) nitrate, $[Zn(bipy)_2(NO_3)]^+NO_3^-$ using a microwave treatment at 300 W and 60 Hz for the application to dye-sensitized solar cells. The simulated complex structure of the complex was optimized with the density functional theory calculations for the UV-vis spectrum of the ground state using Gaussian 03 at the B3LYP/LANL2DZ level. The structure of the acquired complex was expected a penta-coordination with four nitrogen atoms of bipyridine and the oxygen bond of the $NO_3^-$ ion. The reflectance UV-vis absorption spectra exhibited two absorptions (L-L transfers) that were assigned to the transfers from the ligand ($\sigma$, $\pi$) of $NO_3$ to the ligand ($\sigma^*$, $\pi^*$) of pyridine at around 200 - 350 nm, and from the non-bonding orbital (n) of O in $NO_3$ to the p-orbital of pyridine at around 450 - 550 nm, respectively. The photoelectric efficiency was approximately 0.397% in the dye-sensitized solar cells with the nanometer-sized $TiO_2$ at an open-circuit voltage (Voc) of 0.39 V, a short-circuit current density (Jsc) of $1.79\;mA/cm^2$, and an incident light intensity of $100\;mW/cm^2$.