• 제목/요약/키워드: UV absorbing materials

검색결과 19건 처리시간 0.025초

Functional Designs of Metal oxide for Transparent Electronics

  • Kim, Joondong;Patel, Malkeshkumar;Kim, Hong-Sik;Kim, Hyunki;Yadav, Pankaj;Park, Wanghee;Ban, Dongkyun
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.387.1-387.1
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    • 2016
  • Transparent materials are necessary for most photoelectric devices, which allow the light generation from electric energy or vice versa. Metal oxides are usual materials for transparent conductors to have high optical transmittance with good electrical properties. Functional designs may apply in various applications, including solar cells, photodetectors, and transparent heaters. Nanoscale structures are effective to drive the incident light into light-absorbing semiconductor layer to improve solar cell performances. Recently, the new metal oxide materials have inaugurated functional device applications. Nickel oxide (NiO) is the strong p-type metal oxide and has been applied for all transparent metal oxide photodetector by combining with n-type ZnO. The abrupt p-NiO/n-ZnO heterojunction device has a high transmittance of 90% for visible light but absorbs almost entire UV wavelength light to show the record fastest photoresponse time of 24 ms. For other applications, NiO has been applied for solar cells and transparent heaters to induce the enhanced performances due to its optical and electrical benefits. We discuss the high possibility of metal oxides for current and future transparent electronic applications.

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SiNx 박막에 의한 OLED 소자의 보호막 특성 (Passivation Properties of SiNx Thin Film for OLEO Device)

  • 주성후
    • 한국전기전자재료학회논문지
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    • 제19권8호
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    • pp.758-763
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    • 2006
  • We has been studied the thin film encapsulation effect for organic light-emitting diodes (OLED). To evaluate the passivation properties of the passivation layer materials, we have carried out the fabrication of green light emitting diodes with ultra violet(UV) light absorbing polymer resin, $SiO_2,\;and\;SiN_x$, respectively. From the measurement results of shrinkage properties according to the exposure time to the atmosphere, we found that $SiN_x$ thin film is the best material for passivation layer. We have investigated the emission efficiency and life time of OLED device using the package structure of $OLED/SiN_x/polymer$ resin/Al/polymer resin. The emission efficiency of this OLED device was 13 lm/W and life time was about 2,000 hours, which reach 95 % of the performance for the OLED encapsulated with metal.

Simultaneous regulation of photoabsorption and ferromagnetism of NaTaO3 by Fe doping

  • Yang, Huan;Zhang, Liguo;Yu, Lifang;Wang, Fang;Ma, Zhenzhen;Zhou, Jie;Xu, Xiaohong
    • Current Applied Physics
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    • 제18권11호
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    • pp.1422-1425
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    • 2018
  • $NaTa_{1-x}Fe_xO_3$ ($0{\leq}x{\leq}0.40$) nanocubes were synthesized by a relatively low temperature hydrothermal method, using $Ta_2O_5$, $FeCl_3$ and NaOH as the precursors. The UV-vis diffuse reflectance spectra showed that $NaTa_{1-x}Fe_xO_3$ had significant visible-light-absorbing capability, and the absorption edge of $NaTaO_3$ shifted to longer wavelength with the increase of Fe dopants. Moreover, $NaTa_{1-x}Fe_xO_3$ exhibited room-temperature ferromagnetism when $Fe^{3+}$ occupied $Ta^{5+}$ sites in $NaTaO_3$ crystal lattice. The ferromagnetism is mainly attributed to the superexchange interactions between doped $Fe^{3+}$, rather than the contribution of oxygen vacancies caused by Fe doping. Therefore, Fe doping can simultaneously regulate the optical and magnetic properties of $NaTaO_3$ semiconductor, which will enable its potential applications in multifunctional optical-electronics and opticalspintronics devices.

${\alpha},{\beta}$-tetra(phenoxy, 2-naphthoxy, 4-tritylphenoxy) Oxovanadium 프탈로시아닌 유도체의 합성 및 특성에 관한 연구 (The Study for Synthesis and Characteristic of ${\alpha},{\beta}$-tetra(phenoxy, 2-naphthoxy, 4-tritylphenoxy) Oxovanadium Phthalocyanine Derivatives)

  • 손대희;허진;김송혁;이승호;이근대;홍성수;박성수
    • 공업화학
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    • 제21권6호
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    • pp.638-642
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    • 2010
  • 본 연구에서는 벤젠고리의 ${\alpha}$${\beta}$-위치에 phenoxy, 2-naphthoxy 또는 4-trityl phenoxy 치환기가 도입된 프탈로니트릴 유도체들을 합성하였고, 이들 중간체들을 이용하여 전자 주게 특성을 가지는 치환기가 도입된 oxovanadium phthalocyanine (VOPc) 유도체들을 성공적으로 합성하였다. 시료들의 구조 특성 및 분자량은 $^1H$-NMR, FT-IR 및 MALDI-TOF형 질량분석기를 이용하여 측정 분석하였고, 광학적 및 화학적 특성은 UV-Vis 분광기, X-ray 회절기 및 열분석기를 이용하여 측정 분석하였다. 합성된 VOPc 유도체들의 최대흡수파장 값은 약 684~726 nm이었으며, 치환기의 도입으로 말미암아 용해도가 향상되거나 Q 밴드가 이동하였다.

Rhizopus nigricans의 포자형성에 관한 생물학적 연구 (A physiological study on Sporulation of Rhizopus nigricans)

  • 윤경하;이영록
    • 미생물학회지
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    • 제17권2호
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    • pp.81-93
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    • 1979
  • The mycelium of Rhizopus nigricans was harvested at intervals during the sporulation periods, fractioned into various cell components and analyzed the con!eiits of various cell materials in order to clarify the optimum conditions of sporulation and some characteristics of the metabolism during tke sporulation periods. The changes in enzyme activities, such as amylase and protease, were also measured during the sporulation period,. 1. Mycelium in distilled water culture, as control, did not sporulate but mycelial mat cultured in Petridish without mutrient spourulated. Optimum temperature range for sporulation was $20{\sim}25^{\circ}C$. 2. During the sporulation and maturation periods, proteins, especially alkali-labile protein were decreased remarkably but free amino acid and ninhydrin reactive substances in acid soluble fraction were increased, compared with control. 3. Acid solable polyphosphate was decreased but acid insoluble polyphosphate was increased, during the sporulation. 4. Carbohydrate and hexosamine in acid soluble fraction were increased, while carbohydrate in alkali insoluble residual fraction was decreased during the sporulation periods. 5. Amounts of UV-absorbing material in deoxyribonucleic acid fraction was increased a little but those in ribonucleic acid fraction was decreased, compared with control. 6. Intracellular amylases and proteases activities insporulating mycelial mat were increased continuously during the sporulation and maturation periods.

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Sclerotiorin: a Novel Azaphilone with Demonstrated Membrane Targeting and DNA Binding Activity against Methicillin-Resistant Staphylococcus aureus

  • Dasagrandhi, Chakradhar;Pandith, Anup;Imran, Khalid
    • 한국미생물·생명공학회지
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    • 제48권4호
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    • pp.429-438
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    • 2020
  • The emergence of multi-drug resistant, pathogenic methicillin-resistant Staphylococcus aureus (MRSA) is a threat to global health and has created a need for novel functional therapeutic agents. In this study, we evaluated the underlying mechanisms of the anti-MRSA effect of an azaphilone pigment, sclerotiorin (SCL) from Penicillium sclerotiorum. The antimicrobial activity of SCL was evaluated using agar disc diffusion, broth microdilution, time-kill assays and biophysical studies. SCL exhibits selective activity against Gram positive bacteria including MRSA (range, MIC = 128-1028 ㎍/ml) and exhibited rapid bactericidal action against MRSA with a > 4 log reduction in colony forming units within three hours of administration. Biophysical studies, using fluorescent probes and laser or electron microscopy, demonstrated a SCL dose-dependent alternation in membrane potential (62.6 ± 5.0.4% inhibition) and integrity (> 95 ± 2.3%), and the release of UV260 absorbing materials within 60 min (up to 3.2 fold increase, p < 0.01) of exposure. Further, SCL localized to the cytoplasm and hydrolyzed plasmid DNA. While in vitro checkerboard studies revealed that SCL potentiated the antimicrobial activity of topical antimicrobials such as polymixin, neomycin, and bacitracin (Fractional Inhibitory Concentration Index range, 0.26-0.37). Taken together these results suggest that SCL targets the membrane and DNA of MRSA to facilitate its anti-MRSA antimicrobial effect.

고전압 펄스 전기장에 의한 Saccharomyces cerevisiae의 세포내·외적 사멸 기작 연구 (Intra- and Extra-cellular Mechanisms of Saccharomyces cerevisiae Inactivation by High Voltage Pulsed Electric Fields Treatment)

  • 이상재;신정규
    • 한국식품과학회지
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    • 제47권1호
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    • pp.87-94
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    • 2015
  • 비가열 살균 기술 중 본격적인 상업적 실용화를 눈앞에 두고 있는 고전압 펄스 전기장에 의한 미생물의 사멸 기작에 대해 살펴보았다. 세포 현탁액을 고전압 펄스 전기장 처리하였을 경우 처리 시간이나 전기장의 세기가 증가할수록 세포 외액으로 세포내 물질의 유출이 증가하였으며, 세포막 투과성의 변화로 인하여 $K^+$, $Na^+$등이 이온 성분의 유출도 나타났다. 염색시약에 의한 세포의 염색에서 처리시간이 증가함에 따라 염색되는 세포의 수가 증가하였으며, 전자현미경에 의한 세포의 관찰 결과 고전압 펄스 전기장 처리를 받은 세포의 경우 처리 받지 않은 것에 비해 표면이 거칠고 굴곡이 있었으며, 세포막이 터져 세포내 물질이 외부로 유출되고 형태가 일그러진 것이 관찰되었다. 항생물질 첨가에 따른 회복 실험에서 고전압 펄스 전기장 처리에 의해 세포의 단백질 합성 체계에 손상을 입었으며, chromosomal DNA의 분리를 통한 DNA의 손상여부 관찰 결과 약 27.3%의 DNA의 손상이 발생했음을 알 수 있었다. 따라서 고전압 펄스 전기장 처리가 세포벽이나 세포막의 손상뿐만 아니라 대사 체계와 DNA에도 손상을 주는 것을 확인할 수 있었다.

양자점 입도제어를 통한 양자점 감응형 태양전지 단락전류 향상 (Improvement of Short-Circuit Current of Quantum Dot Sensitive Solar Cell Through Various Size of Quantum Dots)

  • 지승환;윤혜원;이진호;김범성;김우병
    • 한국재료학회지
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    • 제31권1호
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    • pp.16-22
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    • 2021
  • In this study, quantum dot-sensitized solar cells (QDSSC) using CdSe/ZnS quantum dots (QD) of various sizes with green, yellow, and red colors are developed. Quantum dots, depending their different sizes, have advantages of absorbing light of various wavelengths. This absorption of light of various wavelengths increases the photocurrent production of solar cells. The absorption and emission peaks and excellent photochemical properties of the synthesized quantum dots are confirmed through UV-visible and photoluminescence (PL) analysis. In TEM analysis, the average sizes of individual green, yellow, and red quantum dots are shown to be 5 nm, 6 nm, and 8 nm. The J-V curves of QDSSC for one type of QD show a current density of 1.7 mA/㎠ and an open-circuit voltage of 0.49 V, while QDSSC using three type of QDs shows improved electrical characteristics of 5.52 mA/㎠ and 0.52 V. As a result, the photoelectric conversion efficiency of QDSSC using one type of QD is as low as 0.53 %, but QDSSC using three type of QDs has a measured efficiency of 1.4 %.

Fabrication of Schottky Device Using Lead Sulfide Colloidal Quantum Dot

  • Kim, Jun-Kwan;Song, Jung-Hoon;An, Hye-Jin;Choi, Hye-Kyoung;Jeong, So-Hee
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.189-189
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    • 2012
  • Lead sulfide (PbS) nanocrystal quantum dots (NQDs) are promising materials for various optoelectronic devices, especially solar cells, because of their tunability of the optical band-gap controlled by adjusting the diameter of NQDs. PbS is a IV-VI semiconductor enabling infrared-absorption and it can be synthesized using solution process methods. A wide choice of the diameter of PbS NQDs is also a benefit to achieve the quantum confinement regime due to its large Bohr exciton radius (20 nm). To exploit these desirable properties, many research groups have intensively studied to apply for the photovoltaic devices. There are several essential requirements to fabricate the efficient NQDs-based solar cell. First of all, highly confined PbS QDs should be synthesized resulting in a narrow peak with a small full width-half maximum value at the first exciton transition observed in UV-Vis absorbance and photoluminescence spectra. In other words, the size-uniformity of NQDs ought to secure under 5%. Second, PbS NQDs should be assembled carefully in order to enhance the electronic coupling between adjacent NQDs by controlling the inter-QDs distance. Finally, appropriate structure for the photovoltaic device is the key issue to extract the photo-generated carriers from light-absorbing layer in solar cell. In this step, workfunction and Fermi energy difference could be precisely considered for Schottky and hetero junction device, respectively. In this presentation, we introduce the strategy to obtain high performance solar cell fabricated using PbS NQDs below the size of the Bohr radius. The PbS NQDs with various diameters were synthesized using methods established by Hines with a few modifications. PbS NQDs solids were assembled using layer-by-layer spin-coating method. Subsequent ligand-exchange was carried out using 1,2-ethanedithiol (EDT) to reduce inter-NQDs distance. Finally, Schottky junction solar cells were fabricated on ITO-coated glass and 150 nm-thick Al was deposited on the top of PbS NQDs solids as a top electrode using thermal evaporation technique. To evaluate the solar cell performance, current-voltage (I-V) measurement were performed under AM 1.5G solar spectrum at 1 sun intensity. As a result, we could achieve the power conversion efficiency of 3.33% at Schottky junction solar cell. This result indicates that high performance solar cell is successfully fabricated by optimizing the all steps as mentioned above in this work.

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