• 제목/요약/키워드: ZnS(Zinc sulfide)

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CFR 법에 의한 산화아연 박막의 제조 및 황 화합물 검출을 위한 전기적 특성 (Preparation of Zinc Oxide Thin Film by CFR Method and its Electrical Property for Detection of Sulfur Compounds)

  • 이선이;박노국;윤석훈;이태진
    • Korean Chemical Engineering Research
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    • 제48권2호
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    • pp.218-223
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    • 2010
  • 본 연구에서는 반도체식 가스센서 재료로서 활용 가능한 ZnO 박막을 Continuous Flow Reaction(CFR) 방법으로 실리콘 기판 위에 성장시켰다. 또한 전구물질로 사용한 zinc acetate의 농도에 따른 산화아연 박막의 성장특성과 이들의 전기적 특성이 조사되었다. 산화아연 박막 제조는 0.005~0.02 M의 zinc acetate 농도에서 수행되었다. 산화아연 박막을 구성하고 있는 ZnO의 입자크기는 농도가 증가할수록 증가되었으며, 박막의 두께도 함께 증가되었다. CFR 법에 의한 산화아연 박막의 성장속도는 전구물질의 농도에 비례적으로 의존되는 것을 확인하였으며, 균일한 박막을 제조하기 위한 전구물질의 최적 농도는 0.01 M이였다. 한편, 전구물질의 농도를 달리하여 제조된 산화아연 박막의 전압에 대한 전류를 I-V 측정기로 측정한 결과, 박막의 두께가 증가될수록 높은 전류가 흘렀다. 그러므로 산화아연 박막의 전류를 전구물질의 농도변화로 조절할 수 있다. 또한 산화아연 박막을 $300^{\circ}C$에서 5 min 동안 $500ppmv\;H_2S$에 노출시킨 결과, 전압에 대한 전류값이 낮아졌다. 이와 같이 산화아연의 전기적 특성은 가스센서로 응용할 수 있는 가능성을 확인시켜 주는 결과라 할 수 있다.

Growth and characterization of $Cu_2ZnSnSe_4$ (CZTSe) thin films by sputtering of binary selenides and selenization

  • Munir, Rahim;Jung, Gwang-Sun;Ahn, Byung-Tae
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2012년도 춘계학술발표대회
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    • pp.98.2-98.2
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    • 2012
  • Thin film solar cells are growing up in the market due to their high efficiency and low cost. Especially CdTe and $CuInGaSe_2$ based solar cells are leading the other cells, but due to the limited percentage of the elements present in our earth's crust like Tellurium, Indium and Gallium, the price of the solar cells will increase rapidly. Copper Zinc Tin Sulfide (CZTS) and Copper Zinc Tin Selenide (CZTSe) semiconductor (having a kesterite crystal structure) are getting attention for its solar cell application as the absorber layer. CZTS and CZTSe have almost the same crystal structure with more environmentally friendly elements. Various authors have reported growth and characterization of CZTSe films and solar cells with efficiencies about 3.2% to 8.9%. In this study, a novel method to prepare CZTSe has been proposed based on selenization of stacked Copper Selenide ($Cu_2Se$), Tin Selenide ($SnSe_2$) and Zinc Selenide (Zinc Selenide) in six possible stacking combinations. Depositions were carried out through RF magnetron sputtering. Selenization of all the samples was performed in Close Space Sublimation (CSS) in vacuum at different temperatures for three minutes. Characterization of each sample has been performed in Field Emission SEM, XRD, Raman spectroscopy, EDS and Auger. In this study, the properties and results of $Cu_2ZnSnSe_4$ thin films grown by selenization will be presented.

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Highly Luminescent (Zn0.6Sr0.3Mg0.1)2Ga2S5:Eu2+ Green Phosphors for a White Light-Emitting Diode

  • Jeong, Yong-Kwang;Cho, Dong-Hee;Kim, Kwang-Bok;Kang, Jun-Gill
    • Bulletin of the Korean Chemical Society
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    • 제33권8호
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    • pp.2523-2528
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    • 2012
  • Green phosphors $(Zn_{1-a-b}M_aM^{\prime}_b)_xGa_yS_{x+3y/2}:Eu^{2+}$ (M, M' = alkali earth ions) with x = 2 and y = 2-5 were prepared, starting from ZnO, MgO, $SrCO_3$, $Ga_2O_3$, $Eu_2O_3$, and S with a flux $NH_4F$ using a conventional solidstate reaction. A phosphor with the composition of $(Zn_{0.6}Sr_{0.3}Mg_{0.1})_2Ga_2S_5:Eu^{2+}$ produced the strongest luminescence at a 460-nm excitation. The observed XRD patterns indicated that the optimized phosphor consisted of two components: zinc thiogallate and zinc sulfide. The characteristic green luminescence of the $ZnS:Eu^{2+}$ component on excitation at 460 nm was attributed to the donor-acceptor ($D_{ZnGa_2S_4}-A_{ZnS}$) recombination in the hybrid boundary. The optimized green phosphor converted 17.9% of the absorbed blue light into luminescence. For the fabrication of light-emitting diode (LED), the optimized phosphor was coated with MgO using magnesium nitrate to overcome their weakness against moisture. The MgO-coated green phosphor was fabricated with a blue GaN LED, and the chromaticity index of the phosphor-cast LED (pc-LED) was investigated as a function of the wt % of the optimized phosphor. White LEDs were fabricated by pasting the optimized green (G) and the red (R) phosphors, and the commercial yellow (Y) phosphor on the blue chips. The three-band pc-WLED resulted in improved color rendering index (CRI) and corrected color temperature (CCT), compared with those of the two-band pc-WLED.

Synthesis and luminescence characterization of ZnS:Cu,Al phosphor by combustion method

  • Jeong, Young-Ho;Myung, Kwang-Shik;Park, Jin-Won;Hua, Yang;Han, Sang-Do
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2003년도 International Meeting on Information Display
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    • pp.1009-1012
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    • 2003
  • A novel powder processing technique for the preparation of copper activated zinc sulfide (ZnS:Cu,Al) phosphor by combustion process has been proposed. Exothermic reaction between dissolved copper nitrate and carbohydrazide give small-sized particles in presence of alkali metal halides at lower temperature than the traditional method of preparation. This new route takes less than five minutes and requires much less energy. The optical and luminescence characteristics of ZnS:Cu,Al phosphor thus prepared were found to be enhanced significantly. Carbohydrazide acted as fuel at $500^{\circ}C$ with rapid heating and then the phosphors obtained were heated at $900^{\circ}C$ in an inert atmosphere for 3hrs to get better luminescent properties.

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가시광선하에서 Cd0.5Zn0.5S/ZnO 광촉매를 이용한 로다민 B의 광분해 반응 (Photocatalytic Degradation of Rhodamine B Using Cd0.5Zn0.5S/ZnO Photocatalysts under Visible Light Irradiation)

  • 이현정;진영읍;박성수;홍성수;이근대
    • 공업화학
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    • 제26권3호
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    • pp.356-361
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    • 2015
  • $Cd_{0.5}Zn_{0.5}S/ZnO$ 형태의 복합체 광촉매를 침전법으로 제조하였고, 이들 화합물의 특성을 XRD, UV-vis DRS, PL 및 FE-SEM 등을 이용하여 조사하였다. 그리고 가시광선 조사 하에서의 로다민 B 분해반응에 대한 광촉매로서의 활성을 조사하였다. ZnO와는 달리 $Cd_{0.5}Zn_{0.5}S/ZnO$는 자외선 뿐만 아니라 가시광선 영역의 빛도 효율적으로 흡수하며 특히 $Cd_{0.5}Zn_{0.5}S$의 함량 증가에 따라 가시광선 영역의 빛에 대한 흡광도도 증가하였다. 또한 $Cd_{0.5}Zn_{0.5}S/ZnO$에 있어서 $Cd_{0.5}Zn_{0.5}S$의 함량이 증가할수록 최종 입자들의 크기가 작아지고 그 결과 비 표면적이 증가하였다. 로다민 B의 광분해 반응에 있어서는 $Cd_{0.5}Zn_{0.5}S$ 함량이 높은 $Cd_{0.5}Zn_{0.5}S/ZnO$ 촉매일수록 상대적으로 높은 광촉매 활성을 보여주었다. 그러므로 $Cd_{0.5}Zn_{0.5}S/ZnO$ 광촉매의 활성에 있어서는 촉매의 흡착능력 뿐만 아니라 $Cd_{0.5}Zn_{0.5}S$와 ZnO 사이의 heterojunction 효과도 중요하게 작용하는 것으로 보인다.

Reaction Path of Cu2ZnSnS4 Nanoparticles by a Solvothermal Method Using Copper Acetate, Zinc Acetate, Tin Chloride and Sulfur in Diethylenetriamine Solvent

  • Chalapathy, R.B.V.;Jung, Gwang Sun;Ko, Young Min;Ahn, Byung Tae;Kown, HyukSang
    • Current Photovoltaic Research
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    • 제1권2호
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    • pp.109-114
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    • 2013
  • $Cu_2ZnSnS_4$ (CZTS) nanoparticles were synthesized by a solvothermal method using copper (II) acetate, zinc acetate, tin chloride, and sulfur in diethylenetriamine solvent. Binary sulfide particles such as CuS, ZnS, SnS, and $SnS_2$ were obtained at $180^{\circ}C$; single-phase CZTS nanoparticles were obtained at $280^{\circ}C$. CZTS nanoparticles with spherical shape and grain size of 40 to 60 nm were obtained at $280^{\circ}C$. In the middle of 180 and $280^{\circ}C$, CZTS and ZnS phases were found. The time variation of reaction at $280^{\circ}C$ revealed that an amorphous state formed first instead of binary phases and then the amorphous phase was converted to crystalline CZTS state; it is different reaction path way from conventional solid-state reaction path of which binary phases react to form CZTS. CZTS films deposited and annealed from single-phase nanoparticles showed porous microstructure and poor adhesion. This indicates that a combination of CZTS and other flux phase is necessary to have a dense film for device fabrication.

양자점 감응 태양전지의 광전 특성 향상을 위한 ZnS/SiO2 이중 오버레이어 개발 (Development of ZnS/SiO2 Double Overlayers for the Enhanced Photovoltaic Properties of Quantum Dot-Sensitized Solar Cells)

  • 송인철;정성목;서주원;김재엽
    • 한국수소및신에너지학회논문집
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    • 제32권6호
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    • pp.656-662
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    • 2021
  • For the high efficiencies of quantum dot-sensitized solar cells (QDSCs), it is important to control the severe electron recombination at the interface of photoanode/electrolyte. In this work, we optimize the surface passivation process of ZnS/SiO2 double overlayers for the enhanced photovoltaic performances of QDSCs. The overlayers of zinc sulfide (ZnS) and SiO2 are coated on the surface of QD-sensitized photoanode by successive ionic layer adsorption and reaction (SILAR) method, and sol-gel reaction, respectively. In particular, for the sol-gel reaction of SiO2, the influences of temperature of precursor solution are investigated. By application of SiO2 overlayers on the ZnS-coated photoanode, the conversion efficiency of QDSCs is increased from 5.04% to 7.35%. The impedance analysis reveals that the electron recombination at the interface of photoanode/electrolyte is obviously reduced by the SiO2 overlayers.

Photovoltaic Properties of Tandem Structure Consisting of Quantum Dot Solar cell and Small Molecule Organic Solar cell

  • Jang, Jinwoong;Choi, Geunpyo;Yim, Sanggyu
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.249.2-249.2
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    • 2015
  • Connecting two or more sub-cells is a simple and effective way of improving power conversion efficiency (PCE) of solar cells, and the theoretical efficiency of this tandem cell is known to reach 85~88% of the sum of the sub-cell's efficiencies. There are two ways of connecting sub-cells in the tandem structure, i.e. parallel and series connection. The parallel connection can increase the short circuit current (Jsc) and the series connection can increase the open circuit voltage (Voc). Although various tandem structures have been studied, the full use of incident light and optimization of cell efficiency is still limited. In this work, we designed series tandem solar cells consisting of lead sulfide (PbS) quantum dots/zinc oxide-based QDSC and zinc phthalocyanine (ZnPc)/C60-based small molecule OSCs. It is expected that the loss of the incident light is minimized because the absorption range of the PbS quantum dots and ZnPc is significantly different, and the Voc increases according to the Kirchhoff's law.

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Protective Metal Oxide Coatings on Zinc-sulfide-based Phosphors and their Cathodoluminescence Properties

  • Oh, Sung-Il;Lee, Hyo-Sung;Kim, Kwang-Bok;Kang, Jun-Gill
    • Bulletin of the Korean Chemical Society
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    • 제31권12호
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    • pp.3723-3729
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    • 2010
  • We investigated the high-excitation voltage cathodoluminescence (CL) performance of blue light-emitting (ZnS:Ag,Al,Cl) and green light-emitting (ZnS:Cu,Al) phosphors coated with metal oxides ($SiO_2$, $Al_2O_3$, and MgO). Hydrolysis of the metal oxide precursors tetraethoxysilane, aluminum isopropoxide, and magnesium nitrate, with subsequent heat annealing at $400^{\circ}C$, produced $SiO_2$ nanoparticles, an $Al_2O_3$ thin film, and MgO scale-type film, respectively, on the surface of the phosphors. Effects of the phosphor surface coatings on CL intensities and aging behavior of the phosphors were assessed using an accelerating voltage of 12 kV. The MgO thick film coverage exhibited less reduction in initial CL intensity and was most effective in improving aging degradation. Phosphors treated with a low concentration of magnesium nitrate maintained their initial CL intensities without aging degradation for 2000 s. In contrast, the $SiO_2$ and the $Al_2O_3$ coverages were ineffective in improving aging degradation.

ZnS 형광체 분말제조를 위한 기계적합금화법의 응용 연구 (Application of Mechanical Alloying Method on the Fabrication of Zinc Sulfide Photo-luminescence Powders)

  • 안인섭;정우현;배승열;성택경;박동규
    • 한국분말재료학회지
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    • 제12권4호
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    • pp.279-283
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    • 2005
  • In this study, the ZnS composite powders for host material in phosphor was synthesized in situ by mechanical alloying. As the mechanical alloying time increases, particle size of ZnS decreases. ZnS powders of $1.85\;\mu{m}$ in a mean size was fabricated by mechanical alloying for 10h. The crystal structures of ZnS powders were investigated by X-ray diffraction and the photo-luminescence properties was evaluated with the optical spectra analyzer. The steady state condition of mechanically alloyed ZnS was obtained as a mean particle size of $2\;\mu{m}$ in 5h milling. The sphalerite and wurtize structures coexist in the ZnS mechanically alloyed for 5h. The ZnS powder mechanically alloyed for 10h grows to the sphalerite structure. And the strong emission peaks of ZnS are observed at 480 nm wave length at the powders of mechanically alloyed for 10h, but the sphalerite and wurtize structures in ZnS coexist and emission peaks are not appeared at the powders of mechanically alloyed for 10h.