• Title/Summary/Keyword: redox dye

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Performance Evaluation of Aqueous Organic Redox Flow Battery Using Methylene Blue and Vanadium Redox Couple (메틸렌블루와 바나듐을 활물질로 활용한 수계 유기 레독스 흐름 전지의 성능 평가)

  • Lee, Wonmi;Kwon, Yongchai
    • Korean Chemical Engineering Research
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    • v.56 no.6
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    • pp.890-894
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    • 2018
  • In this study, methylene blue which is one of dye materials was introduced as active material for aqueous redox flow battery. The redox potential of methylene blue was shifted to negative direction as pH increased. The full-cell performance was evaluated by using methylene blue as the negative active material and vanadium as the positive active material with acid supporting electrolytes. The cell voltage of methylene $blue/V^{4+}$ is very low (0.45 V). In addition, the maximum solubility of methylene blue in water is only 0.12 M. Therefore, the cell test was performed with very low concentration (0.0015 M methylene blue, $0.15M\;V^{4+}$) at first time. Cut-off voltage range was 0 to 0.8 V and $1mA{\cdot}cm^{-2}$ current density was adopted during cycling. As a result, current efficiency (CE) was 99.67%, voltage efficiency (VE), 88.83% and energy efficiency (EE) was 85.87% and discharge capacity was ($0.0500Ah{\cdot}L^{-1}$) at 4 cycle. In addition, the cell test was performed with increased concentration (0.1 M methylene blue, $0.15M\;V^{4+}$) with $10mA{\cdot}cm^{-2}$ current density, leading to higher discharge capacity ($3.8122Ah{\cdot}L^{-1}$) with similar efficiency (CE=99%, VE=85%, EE=85% at 4 cycle).

Reduction of Nitrosoarene by Purified NAD(P)H-Quinone Oxidoreductase

  • Kim, Kyung-Soon;Suk, Hee-Won
    • BMB Reports
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    • v.32 no.4
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    • pp.321-325
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    • 1999
  • NAD(P)H-quinone oxidoreductase (EC 1. 6. 99. 2) was purified form S. cerevisiae. The enzyme readily reduced 2,6-dichlorophenolindophenol, a quinonoid redox dye, as well as substituted benzo- and naphthoquinones, and could accept electrons from either NADH or NADPH. The purified NAD(P)H-quinone oxidoreductase turned out to be capable of reducing nitrosoarenes as well as a variety of quinones. A chemical-trapping technique using 4-chloro-1-naphthol was used to show that the N,N-dimethyl-p-benzoquinonediiminium cation was produced in the reduction of 4-nitroso-N,N-dimethylaniline catalyzed by NAD(P)H-quinone oxidoreductase.

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Studies on the Electrochemical Properties of Indigo Dye (인디고 염료의 전기화학적 특성 연구)

  • Lee Song Ju;Jang Hong Gi;Heo Buk Gu;Park Dong Won
    • Textile Coloration and Finishing
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    • v.17 no.4 s.83
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    • pp.1-6
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    • 2005
  • We studied the degree of variety of indigo for the electrochemical redox reaction in addition of reducing agent and the electrokinetic parameters. The electrokinetic parameters such asthe number of electron and the exchange rate constant were obtained by cyclic voltammetry. With increasing scan rate, the reduction currents of indigo were increased and the reduction potentials were shifted to the negative direction. As the results, the reduction processes of the indigo were proceeding to totally irreversible and diffusion controlled reaction. Also, exchange rate constant ($k^0$) and diffusion coefficient ($D_0$) of indigo were decreased by increasing concentration of reducing agent. We found that the less concentration, the more easily diffused and electron transferred and the product was more stable.

Comparative properties for a serial-parallel connection of DSSC with CNT and Pt counter electrodes (CNT 및 Pt을 상대전극으로 하는 DSSC의 직병렬연결에 관한 비교특성)

  • Kim, Hee-Je;Kim, Jeong-Hoon;Park, Sung-Jun;Choi, Jin-Young;Hong, Ji-Tae;Lee, Dong-Yoon
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.1236-1237
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    • 2008
  • Carbon nanotube(CNT) materials are expected a stable current collector without the phenomena such as oxidizing and melting of grid by redox electrolyte and with low cost. In this paper, two types of dye-sensitized solar cells(DSSCs) with Pt abd CNT as a counter electrode were fabricated, then the energy conversion efficiency characteristics were investigated. The main purpose of this study is to find out the possibility of CNT material as cheap current collector of a large scale DSSC module. In addition, the Hall coefficient were measured by using FCM analysis.

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Effect of Thioura on Photovoltaic Performance in Dye-Sensitized Solar Cell

  • Kim, Mi-Jeong;Lee, Chang-Ryul;Park, Nam-Gyu
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.300-300
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    • 2010
  • Thiourea가 염료감응 태양전지의 I-/I3- redox 전해질 내에서 additive로 사용될 때의 효과를 알아보았다. I-/I3- 가 존재하는 전해질에 thiourea를 첨가하게 되면, 전류는 40% 증가하고 전압은 9% 내려간다. 전류 증가로 인해 전체 효율은 23%의 증가분을 보인다. thiourea가 녹아있는 acetonitrile 용액은 pH가 10로 Bronsted base인데, I-/I3- 가 존재하는 전해질 용액에 thiourea를 넣으면, pH=3의 변화를 보인다. 이것은 thiourea와 iodine 사이의 반응에 의해 수소이온 농도가 증가했기 때문이다. 또한 UV-Vis 분광분석 결과 I3- 농도가 감소한 것을 확인하였으며, 이는 iodine이 thiourea 와 반응에 참여하여 소모되었기 때문에 상대적으로 I3- 농도가 감소한 것으로 해석할 수 있다. I3- 농도 감소로 인해 recombination 이 감소하여 voltage가 증가할 것으로 기대되었으나, I2와 thiourea의 반응으로 인해 생성된 proton 농도로 인해 TiO2 의 전도띠 에너지가 변화가 더 우세하게 일어나 결과적으로는 voltage가 감소한 것이다. 증가된 photocurrent 의 경우 역시, proton 농도 증가 및, iodide 농도 증가로 설명할 수 있었다.

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Electrochemical properties of Pt electrodes fabricated by other methode as counter electrode of DSC (염료감응형 태양전지의 상대전극용 Pt의 제조방법에 따른 전기화학적 특성)

  • Kim, Hyun-Ju;Lee, Dong-Yun;Koo, Bo-Kun;Lee, Won-Jae;Song, Jae-Sung
    • Proceedings of the KIEE Conference
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    • 2005.07c
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    • pp.2016-2018
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    • 2005
  • Dye-sensitized solar cell (DSC) consist of oxidation semiconduction electrode, electrolyte and counter electrode. Among these, Pt as counter electrode of DSC plays a role in helping redox reaction of iodine ions in electrolyte, also, transferring electrons into electrolyte. In this case, it is expected that characteristics of Pt electrodes strongly depend on fabrication process and its surface condition. In this study, electrochemical behavior of the electro-plated Pt electrode was compared with that of the sputtered Pt electrode, using cyclic-voltammetry and impedance spectroscopy (PARSTATE 2273, by AMETEK). Surface morphology of Pt electrode was investigated by AFM (XE-100, by PSIA). As a result, it was considered that electrochemical properties of sputtered Pt electrode is superior to that of electro-plated Pt electrode.

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Photocurrent and Its Stability Enhancement of Dye-sensitized Nanoparticle $TiO_2$ Solar Cells (염료감응 나노입자 $TiO_2$ 태양전지의 광전류와 그 안정성 향상)

  • Chae Won-Weok;Kang Tae-Sik;Kim Kang-Jin
    • Journal of the Korean Electrochemical Society
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    • v.2 no.4
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    • pp.232-236
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    • 1999
  • A solar cell based on dye-sensitized photoelectric conversion was studied by electrochemical and spec-trofluorometric methods for the purposes of enhancing its efficiency and stability of $TiO_2$ solar cells. Nanocrystalline $TiO_2$ was used to prepare photoelectrodes, and photosensitizing dyes such as malachite green oxalate, basic blue3, rhodamine B, and bromocresol purple were chosen as sensitizers. Electrochemical oxidation potentials and absorption and emission wavelengths of dyes were used to determine energy levels of the dyes. By comparing excited energy levels of the dyes with the conduction band edge potential $(E_{c,s})\;of\;TiO_2$ calculated by using the flat-band potential $(E_{fb})\;of\;TiO_2$, properties of a dye required to fabricate a high efficient photosensitizing solar cell with high short-circuit current $(J_{sc})$ were suggested. Enhanced stability of photocurrent was obtained by coating a $TiO_2|ITO$ electrode with Polypyrrole that Possibly Prevented the recombination between the conduction band electrons and oxidized dyes and suppressed the direct electrode redox reactions of dyes on ITO.

Multiple Tolerances and Dye Decolorization Ability of a Novel Laccase Identified from Staphylococcus Haemolyticus

  • Li, Xingxing;Liu, Dongliang;Wu, Zhaowei;Li, Dan;Cai, Yifei;Lu, Yao;Zhao, Xin;Xue, Huping
    • Journal of Microbiology and Biotechnology
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    • v.30 no.4
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    • pp.615-621
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    • 2020
  • Laccases are multicopper oxidases with important industrial value. In the study, a novel laccase gene (mco) in a Staphylococcus haemolyticus isolate is identified and heterologously expressed in Escherichia coli. Mco shares less than 40% of amino acid sequence identities with the other characterized laccases, exhibiting the maximal activity at pH 4.0 and 60℃ with 2,2'-azino-bis (3-ethylbenzothiazoline-6-sulphonic acid) diammonium salt (ABTS) as a substrate. Additionally, the Mco is tolerant to a wide range of pH, heavy metal ions and many organic solvents, and it has a high decolorization capability toward textile dyes in the absence of redox mediators. The characteristics of the Mco make this laccase potentially useful for industrial applications such as textile finishing. Based on BLASTN results, mco is found to be widely distributed in both the bacterial genome and bacterial plasmids. Its potential role in oxidative defense ability of staphylococci may contribute to the bacterial colonization and survival.

Effect of SiO2 Layer of Si Substrate on the Growth of Multiwall-Carbon Nanotubes (실리콘 기판의 산화층이 다중벽 탄소나노튜브 성장에 미치는 영향)

  • Kim, Geum-Chae;Lee, Soo-Kyoung;Kim, Sang-Hyo;Hwang, Sook-Hyun;Choi, Hyon-Kwang;Jeon, Min-Hyon
    • Korean Journal of Materials Research
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    • v.19 no.1
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    • pp.50-53
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    • 2009
  • Multi-walled carbon nanotubes (MWNTs) were synthesized on different substrates (bare Si and $SiO_2$/Si substrate) to investigate dye-sensitized solar cell (DSSC) applications as counter electrode materials. The synthesis of MWNTs samples used identical conditions of a Fe catalyst created by thermal chemical vapor deposition at $900^{\circ}C$. It was found that the diameter of the MWNTs on the Si substrate sample is approximately $5{\sim}10nm$ larger than that of a $SiO_2$/Si substrate sample. Moreover, MWNTs on a Si substrate sample were well-crystallized in terms of their Raman spectrum. In addition, the MWNTs on Si substrate sample show an enhanced redox reaction, as observed through a smaller interface resistance and faster reaction rates in the EIS spectrum. The results show that DSSCs with a MWNT counter electrode on a bare Si substrate sample demonstrate energy conversion efficiency in excess of 1.4 %.

Experimental Investigation on High Efficient Electrolytes of Electrochemical Photovoltaic Cells (전기화학형 광전변환 셀의 고효율 전해질 제작에 관한 실험적 고찰)

  • Kim, Doo-Hwan;Han, Chi-Hwan;Sung, Youl-Moon
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.60 no.1
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    • pp.100-104
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    • 2011
  • In this work, an optimum condition of electrolytes preparation for photovoltaic cells application was investigated experimentally in terms of impedance and conversion efficiency of the cells. 3-methoxyppropionitrie and redox pairs with LiI and $I_2$ were used as stable solvents for fabrication of electrolyte. Efficiency comparison of the prepared cells carried out for various additives and ionic liquids. From the results, there was an optimum concentration (about 0.3 M) of ionic liquids for efficient cell fabrication. For case of electrolyte using single DMAp additive, the maximum conversion efficiency of the cell was 6.4%($V_{oc}$: 0.78V, $J_{sc}$: 14.4 mA/$cm^2$, ff: 0.57). For case of electrolyte using both DMAp and CEMim additives, the maximum conversion efficiency of the cell was 7.2%($V_{oc}$: 0.79V, $J_{sc}$: 16 mA/$cm^2$, ff: 0.57). From the result of electrochemical impedance measurement, both Z1 and Z3 values of binary additives-based cell decreased compared to those of single additive-based. This is due to the decreased in internal and charge transfer resistivities of the cells.