• 제목/요약/키워드: ZnCdO

검색결과 402건 처리시간 0.03초

Au-ZnO 나노복합체의 국부화된 플라즈몬 효과에 따른 유기발광소자의 효율 향상

  • Lee, Yong-Hun;Kim, Dae-Hun;Kim, Tae-Hwan
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
    • /
    • pp.219-219
    • /
    • 2016
  • 유기발광소자는 저전력, 빠른 응답속도, 고휘도 및 자체발광 등의 장점들 때문에 고체 광원과 플렉서블 디스플레이로 연구가 진행되고 있다. 유기발광소자는 유기 발광층을 인광물질로 사용 함으로서 100 % 내부양자 효율을 이루고 있지만 공기와 유리기판의 계면과 유리 기판과 ITO 계면에서 발생하는 내부 전반사 효과와 유기물과 ITO 기판 사이에서 발생하는 웨이브 가이드 효과 등으로 인해 발광량의 약 20 %만을 외부로 추출 할 수 있다. 따라서 유기발광소자의 광 추출 효과를 증가시키기 위해서 소자외부에 아웃커플링 필름 또는 마이크로렌즈 어레이 필름을 부착시키는 방법, 금속 나노 입자를 유기발광소자 내에 삽입하여 표면 플라즈몬 효과로 인한 광추출 효율을 높이는 방법 등이 제시되고 있다. 본 연구에서는 Au-ZnO 나노복합체를 간단한 졸겔법을 이용하여 양극 버퍼층으로 사용하여 그에 따른 계면, 전기적 및 광학적 특성을 분석하였다. Au-ZnO 나노복합체를 포함한 tris(8-hydroxyquinolinato) aluminium (Alq3) 발광층에서 ZnO를 포함한 Alq3 발광층보다 엑시톤 수명이 빠르게 감소하는 것을 시간 관련 단광자 계산(Time-Correlated Single Photon Counting) 측정을 통해서 알 수 있었다. 이러한 결과는 Au 금속 나노입자의 플라즈몬 흡수 파장과 Alq3 발광층에서 생성되는 발광 파장이 겹쳐서 효과적인 공명 에너지 전달효과로 인해 Alq3 발광층의 발광성질이 향상된 것을 의미한다. Au-ZnO 나노복합체와 ZnO 나노입자를 가지는 유기발광소자의 전류 효율은 50 mA/cm2 에서 각각 2.27와 1.83 cd/A 가지는 것으로 확인 되었다. 또한 Au-ZnO 나노복합체와 ZnO 나노입자를 사용한 유기발광소자의 전압-전류밀도가 유사한 것을 확인 할 수 있는데 이는 Au 금속 나노입자가 ZnO 나노입자의 정공 주입능력을 저하시키지 않는 것을 의미한다.

  • PDF

Vertical Distribution of Heavy Metals in Paddy Soil Adjacent to Lead and Zinc Mining Sites and Their Relation to Soil Characteristics (연.아연 금속광산 주변 농경지 토양중 중금속의 수직분포와 토양특성과의 관계)

  • 이민효;유홍일;서윤수
    • Journal of the Korean Society of Groundwater Environment
    • /
    • 제1권2호
    • /
    • pp.80-84
    • /
    • 1994
  • The objective of this study was to find out the relationships between the vertical distribution of heavy metals in paddy soils and some soil characteristics. One hundred eight soil samples were collected by soil depths from 27 points of paddy fields in the vicinity of lead-zinc mining sites, and heavy metal contents and the physico-chemical characteristics of the soils were analysed. The results obtained were summarized as follows; 1) Distribution of heavy metals (Cd, Cu, Pb, Zn and As) by soil depths were ranged 42-51% in 0- 15 cm, 21-29% in 15- 30 cm, 12- 17% in 30-60 cm and 11-14% in 6o-100 cm. 2) The distribution of As by soil depth showed clear difference between sandy loam and loam, while that of Cd, Cu, Pb and Zn did not show any difference between these textures. 3) Distribution of Cd, Cu, Pb, Zn and As by different soil depths showed significantly negative correlation with soil pH value but they showed significantly positive correlation with soil organic matter content. 4) Cadmium, copper, lead, and zinc in soil had tendency to be highly correlated in each soil depth. Especially, high correlation was shown at the depth of 0- 15 cm, 30-60 cm and 60-100 cm for Pb and Zn, and 0-15 cm for Cd and Zn. Arsenic in soil was not correlated with these heavy metals.

  • PDF

Effect of Complex Agent NH3 Concentration on the Chemically Deposited Zn Compound Thin Film on the $Cu(In,Ga)Se_2$

  • Shin, Dong-Hyeop;Larina, Liudmila;Yun, Jae-Ho;Ahn, Byung-Tae;Park, Hi-Sun
    • Proceedings of the Materials Research Society of Korea Conference
    • /
    • 한국재료학회 2010년도 춘계학술발표대회
    • /
    • pp.35.1-35.1
    • /
    • 2010
  • The Cu(In,Ga)Se2(CIGS) thin film solar cells have been achieved until almost 20% efficiency by NREL. These solar cells include chemically deposited CdS as buffer layer between CIGS absorber layer and ZnO window layer. Although CIGS solar cells with CdS buffer layer show excellent performance, many groups made hard efforts to overcome its disadvantages in terms of high absorption of short wavelength, Cd hazardous element. Among Cd-free candidate materials, the CIGS thin film solar cells with Zn compound buffer layer seem to be promising with 15.2%(module by showa shell K.K.), 18.6%(small area by NREL). However, few groups were successful to report high-efficiency CIGS solar cells with Zn compound buffer layer, compared to be known how to fabricate these solar cells. Each group's chemical bah deposition (CBD) condition is seriously different. It may mean that it is not fully understood to grow high quality Zn compound thin film on the CIGS using CBD. In this study, we focused to clarify growth mechanism of chemically deposited Zn compound thin film on the CIGS, especially. Additionally, we tried to characterize junction properties with unfavorable issues, that is, slow growth rate, imperfect film coverage and minimize these issues. Early works reported that film deposition rate increased with reagent concentration and film covered whole rough CIGS surface. But they did not mention well how film growth of zinc compound evolves homogeneously or heterogeneously and what kinds of defects exist within film that can cause low solar performance. We observed sufficient correlation between growth quality and concentration of NH3 as complex agent. When NH3 concentration increased, thickness of zinc compound increased with dominant heterogeneous growth for high quality film. But the large amounts of NH3 in the solution made many particles of zinc hydroxide due to hydroxide ions. The zinc hydroxides bonded weakly to the CIGS surface have been removed at rinsing after CBD.

  • PDF

Effects of Cadmium and Arsenic on Physiological Responses and Copper and Zinc Homeostasis of Rice

  • Jung, Ha-il;Chae, Mi-Jin;Kim, Sun-Joong;Kong, Myung-Suk;Kang, Seong-Soo;Lee, Deog-Bae;Ju, Ho-Jong;Kim, Yoo-Hak
    • Korean Journal of Soil Science and Fertilizer
    • /
    • 제48권5호
    • /
    • pp.397-403
    • /
    • 2015
  • Heavy metals reduce the photosynthetic efficiency and disrupt metabolic reactions in a concentration-dependent manner. Moreover, by replacing the metal ions in metalloproteins that use essential metal ions, such as Cu, Zn, Mn, and Fe, as co-factors, heavy metals ultimately lead to the formation of reactive oxygen species (ROS). These, in turn, cause destruction of the cell membrane through lipid peroxidation, and eventually cause the plant to necrosis. Given the aforementioned factors, this study was aimed to understand the physiological responses of rice to cadmium (Cd) and arsenic (As) toxicity and the effect of essential metal ions on homeostasis. In order to confirm the level of physiological inhibition caused by heavy metal toxicity, hydroponically grown rice (Oryza sativa L. cv. Dongjin) plants were exposed with $0-50{\mu}M$ cadmium (Cd, $CdCl_2$) and arsenic (As, $NaAsO_2$) at 3-leaf stage, and then investigated malondialdehyde (MDA) contents after 7 days of the treatment. With increasing concentrations of Cd and As, the MDA content in leaf blade and root increased with a consistent trend. At 14 days after treatment with $30{\mu}M$ Cd and As, plant height showed no significant difference between Cd and As, with an identical reduction. However, As caused a greater decline than Cd for shoot fresh weight, dry weight, and water content. The largest amounts of Cd and As were found in the roots and also observed a large amount of transport to the leaf sheath. Interestingly, in terms of Cd transfer to the shoot parts of the plant, it was only transported to upper leaf blades, and we did not detect any Cd in lower leaf blades. However, As was transferred to a greater level in lower leaf blades than in upper leaf blades. In the roots, Cd inhibited Zn absorption, while As inhibited Cu uptake. Furthermore, in the leaf sheath, while Cd and As treatments caused no change in Cu homeostasis, they had an antagonist effect on the absorption of Zn. Finally, in both upper and lower leaf blades, Cd and As toxicity was found to inhibit absorption of both Cu and Zn. Based on these results, it would be considered that heavy metal toxicity causes an increase in lipid peroxidation. This, in turn, leads to damage to the conductive tissue connecting the roots, leaf sheath, and leaf blades, which results in a reduction in water content and causes several physiological alterations. Furthermore, by disrupting homeostasis of the essential metal ions, Cu and Zn, this causes complete heavy metal toxicity.

A Study on the Separation and Recovery of Useful Metallic Elements(Zn, Pb) from the 2nd Dust in Refining of Crude-Zinc Oxide (조산화아연의 정제과정에서 발생된 2차분진으로부터 유용금속원소(Zn, Pb)의 분리회수에 관한 연구)

  • Yoon, Jae-hong;Yoon, Chi-hyun
    • Resources Recycling
    • /
    • 제30권1호
    • /
    • pp.66-76
    • /
    • 2021
  • Electric arc furnace dust (EAFD) contains compounds, such as oxides and chlorides, including large quantities of Zn, Pb and Fe. An efficient and stable method for the extraction of metal elements from EAFD is the Rotary Kiln Process. This method is used to recover Zn in the form of crude ZnO (approximately 60%) via the addition of a reducing agent (coke, anthracite) and limestone (for basicity control) to EAFD. This process is commonly used in industry as well as in research and development. Currently, this method is used in many Korean commercial plants, producing approximately 150,000 tons of Crude ZnO per year. The majority of Zn is found in crude ZnO (approximately 76%). In addition components such as Pb, Cd, Sn, In, Fe, Cl, and F are present as oxides, chlorides, and alkaline compounds. This elements have an adverse effect on the zinc smelting process. Therefore, a refining process that eliminates these impurities is essential. In this study, we developed a process technology that efficiently separates Zn and Pb from byproducts (mainly chlorides). A bag filter was used to collect Zn and Pb generated during the dry purification process of crude ZnO. Pure components were recovered as metals or metal carbonate.

Effect of Cadmium on Oxidative Stress and Activities of Antioxidant Enzymes in Tomato Seedlings

  • Cho, Un-Haing;Kim, In-Taek
    • The Korean Journal of Ecology
    • /
    • 제26권3호
    • /
    • pp.115-121
    • /
    • 2003
  • Leaves of two-week old seedlings of tomato (Lycopersicon esculentum) were treated with various concentrations (0∼100 M) of $CdCl_2$ for up to 9 days and subsequent growth of seedlings, symptoms of oxidative stress and isozyme activities of antioxidant enzymes including superoxide dismutase (SOD), catalase (CAT), ascorbate peroxidase (APX) and peroxidase (POX) were investigated. Compared with the non-treated control, Cd exposure decreased biomass but increased Cd accumulation, hydrogen peroxide production and lipid peroxidation as malondialdehyde (MDA) formation in leaves and roots. Further studies on the developmental changes of isozyme activities showed that Fe-SOD, Cu/Zn-SOD and one of three APX isozymes decreased and CAT and one of four POX isozymes increased in leaves, whereas Fe-SOD, one of three POX isozymes and two of four APX isozymes decreased and CAT increased in roots, showing different expression of isozymes in leaves and roots with Cd exposure level and time. Based on our results, we suggest that the reduction of seedling growth by Cd exposure is the oxidative stress resulting from the over production of $H_2O_2$ and the insufficient activities of antioxidant enzymes particularly involved in the scavenging of $H_2O_2$. Further, the decreased activities of SOD and APX isozymes of chloroplast origin, the increased activities of CAT and POX and high $H_2O_2$ contents with Cd exposure might indicate that Cd-induced oxidative stress starts outside chloroplast.

Fabrication and Characterization of Cu3SbS4 Solar Cell with Cd-free Buffer

  • Han, Gyuho;Lee, Ji Won;Kim, JunHo
    • Journal of the Korean Physical Society
    • /
    • 제73권11호
    • /
    • pp.1794-1798
    • /
    • 2018
  • We have grown famatinite $Cu_3SbS_4$ films by using sulfurization of Cu/Sb stack film. Sulfurization at $500^{\circ}C$ produced famatinite $Cu_3SbS_4$ phase, while $400^{\circ}C$ and $450^{\circ}C$ sulfurization exhibited unreacted and mixed phases. The fabricated $Cu_3SbS_4$ film showed S-deficiency, and secondary phase of $Cu_{12}Sb_4S_{13}$. The secondary phase was confirmed by X-ray diffraction, Raman spectroscopy, photoluminescence and external quantum efficiency measurements. We have also fabricated solar cell in substrate type structure, ITO/ZnO/(Zn,Sn)O/$Cu_3SbS_4$/Mo/glass, where $Cu_3SbS_4$ was used as a absorber layer and (Zn,Sn)O was employed as a Cd-free buffer. Our best cell showed power conversion efficiency of 0.198%. Characterization results of $Cu_3SbS_4$ absorber indicates deep defect (due to S-deficiency) and low shunt resistance (due to $Cu_{12}Sb_4S_{13}$ phase). Thus in order to improve the cell efficiency, it is required to grow high quality $Cu_3SbS_4$ film with no S-deficiency and no secondary phase.

A Study on Powder Electroluminescent Device through Structure and Thickness Variation (구조 및 두께 변화에 따른 후막 전계발광 소자에 관한 연구)

  • Han, Sang-Mu;Lee, Jong-Chan;Park, Dae-Hee
    • Proceedings of the KIEE Conference
    • /
    • 대한전기학회 1998년도 하계학술대회 논문집 D
    • /
    • pp.1379-1381
    • /
    • 1998
  • Powder electroluminescent device (PELD) structured conventionally dielectric and phosphor layer, between electrode and their layer fabricated by screen printing splaying or spin coating method. To promote performance of PELDs, we approached the experiments for different structure and thickness variation of PELD. Thickness variation($30{\mu}m{\sim}130{\mu}m$) was taken. To investigate electrical and optical properties of PELDs, EL spectrum, transferred charge density using Sawyer-Tower's circuit brightness was measured. Variation of structure in PELDs was as follows: WK-1 (ITO/BaTiO3/ZnS:Cu/Silver paste), WK-2 (ITO/BaTiO3/ZnS:Cu/BaTiO3/ZnS:Silver paste), WK-3 (ITO/BaTiO3/ZnS:Cu/BaTiO3/Silver paste), WK-4(ITO/BaTiO3+ZnS:Cu/Silver paste) As a result, structure of the highest brightness appeared WK-4 possessed 60 ${\mu}m$ thickness. The brightness was 2719 cd/$m^2$ at 100V, 400Hz.

  • PDF

Studies on the Macrocycle-mediated Transport of Divalent Metal Ions in a Supported Liquid Membrane System

  • 조문환;신상철
    • Bulletin of the Korean Chemical Society
    • /
    • 제16권1호
    • /
    • pp.33-36
    • /
    • 1995
  • Macrocyclic ligands have been studied as cation carriers in a supported liquid membrane system. Cd2+ has been transported using nitrogen substituted macrocycles as carriers and several divalent metal ions (M2+=Zn, Co, Ni, Cu, Pb, Mg, Ca, and Sr) have been transported using DBN3O2, DBN2O2and PolyNtnoen as carriers in a supported liquid membrane system. Competitive Cd2+-M2+ transport studies have also been carried out with the same system. Ligand structure, stability constant, membrane solvent and carrier concentration are also important parameters in the transport of metal ions.

Stabilization of Residual Heavy Metals after Soil Washing of Mine Tailings Contaminated with Arsenic and Heavy Metals (비소와 중금속으로 오염된 광미의 토양세척 후 잔류 중금속의 안정화 처리)

  • Lim, Mihee;Kim, Myoung-Jin
    • Journal of Korean Society of Environmental Engineers
    • /
    • 제36권1호
    • /
    • pp.67-73
    • /
    • 2014
  • In this study, the residual heavy metals in the mine tailings, primarily treated by soil washing, were stabilized using phosphate salts. The concentrations of residual contaminants in the washed mine tailings were As (1,861 mg/kg), Cd (20 mg/kg), Cu (56 mg/kg), Pb (2,149 mg/kg), and Zn (633 mg/kg). They were stabilized with $CaHPO_4$, $Ca(H_2PO_4)_2{\cdot}H_2O$, and hydroxyapatite at 0.1 wt%, 1 wt%, and 10 wt% for 1, 3, 5, 7, and 14 days. It was found that 1 wt% $Ca(H_2PO_4)_2{\cdot}H_2O$ was optimum in our experiments, but the stabilization duration did not affect the efficiency. After stabilization with 1 wt% $Ca(H_2PO_4)_2{\cdot}H_2O$ for 1 day, the concentrations of arsenic and heavy metals, As (0.328 mg/L), Cd (0.250 mg/L), Cu (0.143 mg/L), Pb (0.359 mg/L), and Zn (2.622 mg/L), in TCLP leachate were below the RCRA-TCLP limits, which meant the contaminants in the treated mine tailings were stably immobilized.