• Title/Summary/Keyword: Electron Transport Rate

검색결과 129건 처리시간 0.027초

이산화주석 나노구조물의 성장에서 산소가스 유량이 미치는 영향 (The Influence of Oxygen Gas Flow Rate on Growth of Tin Dioxide Nanostructures)

  • 김종일;김기출
    • 한국산학기술학회논문지
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    • 제19권10호
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    • pp.1-7
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    • 2018
  • 이산화주석은 리튬 이온 전지의 Anode 전극물질, 또는 $H_2$, NO, $NO_2$ 등의 가스 분자가 표면에 흡착되면 전기저항이 변하는 특성을 이용하여 가스센서로 활용되고 있으며, 나노구조를 갖는 이산화주석의 합성과 관련하여 많은 연구가 활발하게 이루어지고 있다. 나노구조물의 경우 Bulk 상태보다 체적 대비 표면적비가 높기 때문에 기체분자의 흡착확률을 높일 수 있으므로 고감도 가스 센서의 구현이 가능하고, Li-ion 이차전지의 경우에도 비정전용량을 향상시킬 수 있다. 본 연구에서는 열화학기상증착 장비를 이용하여 기상수송방법으로 $SnO_2$ 나노구조물을 Si 기판 위에 직접 성장시켰다. 이때 이송가스로 이용되는 고순도 Ar 가스에 고순도 산소가스를 혼합하였고, 산소가스의 혼합량에 따라 다른 형태의 산화주석 나노구조물이 성장되는 것을 확인하였다. 기상수송방법으로 성장된 산화주석 나노구조물의 결정학적 특성은 Raman 분광학 및 XRD 분석을 통하여 확인하였고, 표면형상을 주사전자현미경을 통하여 확인하였다. 분석결과 산화주석 나노구조물은 산소가스 혼합량에 민감하게 영향을 받았으며, 이송가스로 이용되는 고순도 Ar 1000 SCCM에 고순도 산소가스 10 SCCM을 혼합하였을 때, 적당한 두께를 가지면서 Nanodots 형태의 표면형상을 갖는 $SnO_2$ 결정상의 나노구조물이 성장되는 것을 확인하였다.

고추의 엽록소 형광 이미지 분석법에 의한 한발스트레스 지표화 가능성 (Possibility of Drought stress Indexing by Chlorophyll Fluorescence Imaging Technique in Red Pepper (Capsicum annuum L.))

  • 유성녕;엄기철;박소현;김태완
    • 한국토양비료학회지
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    • 제45권5호
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    • pp.676-682
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    • 2012
  • 본 연구에서는 생육초기 고추의 한발 스트레스 조건에서 작물 생육에 미치는 영향을 구명하기 위해 엽록소 이미지형 광분석을 이용하여 엽록소 형광 매개변수를 비교분석 하였다. 비록 통계적 유의성이 인정되지는 않았지만 전체 잎의 이미지에 나타나는 형광매개변수들의 평균값은 감소하는 경향이었다. 가변형광값에대한 최대형광값의 비는 변동이 없는 반면, 광계II의 정류상태에서의 양자수득율 및 형광감쇄율은 다소 감소하였다. 이러한 현상은 퀴논 A 단백질로부터 퀴논 B 단백질로의 전자전달의 감소를 의미하였다. 잎의 중앙부위와 엽병부근에서의 비광학적 소광 및 가변형광의 비광학적 소광 상수는 한발스트레스 4일 후 유의성있게 증가하였다. 즉 생리적 스트레스 매개변수로 활용이 가능하였다. 광계II에서의 정류상태 양자수득율의 감소는 고추잎의 모든 부위에서 공통적으로 유의성있게 측정되었다. 결론적으로 ${\Phi}PSII$ ($QY_{_-LSS}$), $NPQ_{_-LSS}$, qN 등의 엽록소형광 매개변수들은 고추의 한발스트레스를 판단할 수 있는 생리적 지표로 활용 가능한 것으로 유의성이 인정되었다.

The effecal of irradiance during leaf development on photoinhibition in Panag ginseng C. A. Meyer

  • Parmenter, Graeme;Littlejohn, Roger
    • Journal of Ginseng Research
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    • 제22권2호
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    • pp.102-113
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    • 1998
  • This experiment used chlorophyll fluorescence techniques to assess the effect of irradiant during leaf development on photoinhibition of photosynthesis in Panax ginseng. Seedlings of p. ginseng were grown in the 91asshouse at four shade levels. The maximum mid-day irradiant in each treatment between emergence (January 4) and completion of the experiment (February 25) was 1220, 485, 235, 125 $\mu$mol/$\textrm{m}^2$/s. To assess the rapidity of photosynthetic readaptation to changes in light levels, fluorescence parameters (Fo, F, Fm, Fm', AF/Fm;, Fv/Fm) were measured for three days before and after transfer of plants (on February 21) from each light treatment into each of the other light treatments. Before transfer, dark adapted values of Fv/Fm in the 1220 (0.699) and 485 (0.739) treatments were different from each other and lower than values in the 235 (0.764) and 125 (0.768) treatments, indicating mild photoinhibition. Patterns of change in F during the day also differed between treatments, with low light treatments tracking irradiant levels, but F in the high light treatment (1220) declined in the morning, presumably due to fluorescence quenching. Although plants grown at high irradiant had relatively low photosynthetic efficiency, relative electron transport rate was greater than in lower irradiant treatments. After transfer, plants adopted the daily pattern of change in F of the treatment to which they were moved with little change in absolute levels of F, except in plants transferred from the highest (1220) to the lowest light level (125), where F increased over the course of the three days following transfer. After plants were transferred, Fm' converged on values similar to those in plants raised in the treatments to which they were moved. Values of Fv/Fm in plants moved from low to high light declined dramatically, but there was no decline in plants from 485 moved to 1220. Values of Pv/Fm in plants that were moved from high light to lower light increased to values above those recorded in plants raised in the lower light treatments. Reductions in quantum efficiency caused by photoinhibition at high irradiant may be more than compensated for by higher electron transport rates, although evidence suggests that under high irradiant this tends to be balanced by reduced leaf area and earlier senescence. Chlorophyll fluorescence techniques appear capable of indicating effects of irradiant induced stress in ginseng, yielding results comparable to those obtained with gas exchange techniques but in less time and with greater replication.

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Enhanced Light Harvesting by Fast Charge Collection Using the ITO Nanowire Arrays in Solid State Dye-sensitized Solar Cells

  • Han, Gill Sang;Yu, Jin Sun;Jung, Hyun Suk
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.463-463
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    • 2014
  • Dye-sensitized solar cells (DSSCs) have generated a strong interest in the development of solid-state devices owing to their low cost and simple preparation procedures. Effort has been devoted to the study of electrolytes that allow light-to-electrical power conversion for DSSC applications. Several attempts have been made to substitute the liquid electrolyte in the original solar cells by using (2,2',7,7'-tetrakis (N,N-di-p-methoxyphenylamine)-9-9'-spirobi-fluorene (spiro-OMeTAD) that act as hole conductor [1]. Although efficiencies above 3% have been reached by several groups, here the major challenging is limited photoelectrode thickness ($2{\mu}m$), which is very low due to electron diffusion length (Ln) for spiro-OMeTAD ($4.4{\mu}m$) [2]. In principle, the $TiO_2$ layer can be thicker than had been thought previously. This has important implications for the design of high-efficiency solid-state DSSCs. In the present study, we have fabricated 3-D Transparent Conducting Oxide (TCO) by growing tin-doped indium oxide (ITO) nanowire (NWs) arrays via a vapor transport method [3] and mesoporous $TiO_2$ nanoparticle (NP)-based photoelectrodes were prepared using doctor blade method. Finally optimized light-harvesting solid-state DSSCs is made using 3-D TCO where electron life time is controlled the recombination rate through fast charge collection and also ITO NWs length can be controlled in the range of over $2{\mu}m$ and has been characterized using field emission scanning electron microscopy (FE-SEM). Structural analyses by high-resolution transmission electron microscopy (HRTEM) and X-Ray diffraction (XRD) results reveal that the ITO NWs formed single crystal oriented [100] direction. Also to compare the charge collection properties of conventional NPs based solid-state DSSCs with ITO NWs based solid-state DSSCs, we have studied intensity modulated photovoltage spectroscopy (IMVS), intensity modulated photocurrent spectroscopy (IMPS) and transient open circuit voltages. As a result, above $4{\mu}m$ thick ITO NWs based photoelectrodes with Z907 dye shown the best performing device, exhibiting a short-circuit current density of 7.21 mA cm-2 under simulated solar emission of 100 mW cm-2 associated with an overall power conversion efficiency of 2.80 %. Finally, we achieved the efficiency of 7.5% by applying a CH3NH3PbI3 perovskite sensitizer.

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Azotobacter vinelandii Shethna Flavoprotein 의 Free Radical 생성(生成)을 위(爲)한 전자전달물질(電子傳達物質)- (Electron Transport Carrier for the Free Radical Shethna Flavoprotein in Azotobacter vinelandii)

  • 전재근;골드 토-린
    • Applied Biological Chemistry
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    • 제16권1호
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    • pp.31-40
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    • 1973
  • Azotobacter vinelandi의 세포추출물(細胞抽出物)들이 Shethna flavoprotein의 free radical 형(型)으로의 전자전달기구(電子傳達機構)에 관하여 연구(硏究)하였다. 전자전달(電子傳達)에 관여도(關與度)가 높은 단백질(蛋白質)로 황색형광성단백질(黃色榮光性蛋白質)(protein I)과 갈색단백질(褐色蛋白質)(protein II)을 정제(精製)하였고 이들은 $N_2$ 기압하(氣壓下) 또는 aceton-dry ice 동결(凍結)저장하에서도 쉽게 실활(失活)되었고 반응속도(反應速度) 역시 너무 완만하여 생체내반응(生體內反應)이기에는 의문점을 보였다. 한편 세포추출물중(細胞抽出物中)의 FMN은 NADH에 의(依)하여 환원이 쉽게 이루어졌으며, 환원형 $FMNH_2$는 비효소적(非酵素的)으로 Shethna flavoprotein 의 free radical 을 형성(形成)시켰으며 , 효소적반응속도(酵素的反應速度)보다 15배(倍)의 높은 반응속도(反應速度)를 보였다. 비록 FMN이 생체내(生體內)에서 타(他)단백질과 비결합형(非結合型)으로 존재(存在)하지 않는다해도 FMN의 전자전달체(電子電達體)의 가능성(可能性)을 제시(提示)하였다.

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의왕시내 BTEX 오염 부지에서의 자연 정화법 이용 적합성 고찰 (Assessment of Monitored Natural Attenuation as Remediation Approach for a BTEX Contaminated Site in Uiwang City)

  • 이민효;윤정기;박종환;이문순;강진규;이석영
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 1999년도 정기총회 및 춘계 공동 학술발표회
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    • pp.149-156
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    • 1999
  • In the United States (U.S.), the monitored natural attenuation (MNA) approach has been used as an alternative remedial option for organic and inorganic compounds retained in soil and dissolved in groundwater. The U.S. Environmental Protection Agency (EPA) defines the MNA as“in-situ naturally-occurring processes include biodegradation, diffusion, dilution, sorption, volatilization, and/or chemical and biochemical stabilization of contaminants and reduce contaminant toxicity, mobility or volume to the levels that are protective of human health and the environment”. The Department of Soil Environment. National Institute Environmental Research (NIER) is in the process for demonstrating the MNA approach as a potential remedial option for the BTEX contaminated site in Uiwang City. The project is charactering the research site in terms of the nature and extend of contamination, biological degradation rate, and geochemical and hydrological properties. The microbial-degradation rate and effectiveness of nutrient and redox supplements will be determined through laboratory batch and column tests. The geochemical process will be monitored for determining the concentration changes of chemical species involved in the electron transfer processes that include methanogenesis, sulfate and iron reduction, denitrification, and aerobic respiration. Through field works, critical soil and hydrogeologic parameters will be acquired to simulate the effects of dispersion, advection, sorption, and biodegradation on the fate and transport of the dissolved-phase BTEX plume using Bioplume III model. The objectives of this multi-years research project are (1) to evaluate the MNA approach using the BTEX contaminated site in Uiwang City, (2) to establish a standard protocol for future application of the approach, (3) to investigate applicability of the passive approach as a secondary treatment remedy after active treatments. In this presentation, the overall picture and philosophy behind the MNA approach will be reviewed. Detailed discussions of the site characterization/monitoring plans and risk-based decision-making processes for the demonstration site will be included.

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Depositon of Transparent Conductive Films by a DC arc Plasmatron

  • Penkov, O.V.;Plaksin, V. Yu.;Joa, S.B.;Kim, J.H.;LEE, H.J.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.480-480
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    • 2010
  • In the present work, we studied effect of the deposition parameters on the structure and properties of ZnO films deposited by DC arc plasmatron. The varied parameters were gas flow rates, precursor composition, substrate temperature and post-deposition annealing temperature. Vapor of Zinc acetylacetone was used as source materials, oxygen was used as working gas and argon was used as the cathode protective gas and a transport gas for the vapor. The plasmatron power was varied in the range of 700-1,500 watts. Flow rate of the gases and substrate temperature rate were varied in the wide range to optimize the properties of the deposited coatings. After deposition films were annealed in the hydrogen atmosphere in the wide range of temperatures. Structure of coatings was investigated using XRD and SEM. Chemical composition was analyzed using x-ray photo-electron spectroscopy. Sheet conductivity was measured by 4-point probe method. Optical properties of the transparent ZnO-based coatings were studied by the spectroscopy. It was shown that deposition by a DC Arc plasmatron can be used for low-cost production of zinc oxide films with good optical and electrical properties. Sheet resistance of 4 Ohms cm was achieved after the deposition and 30 min annealing in the hydrogen at $350^{\circ}C$. Elevation of the substrate temperature during the deposition process up to $350^{\circ}C$ leads to decreasing of the film's resistance due to rearrangement of the crystalline structure.

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Prophylactic role of Korean Red Ginseng in astrocytic mitochondrial biogenesis through HIF-1α

  • Park, Jinhong;Lee, Minjae;Kim, Minsu;Moon, Sunhong;Kim, Seunghee;Kim, Sueun;Koh, Seong-Ho;Kim, Young-Myeong;Choi, Yoon Kyung
    • Journal of Ginseng Research
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    • 제46권3호
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    • pp.408-417
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    • 2022
  • Background: Korean Red Ginseng extract (KRGE) has been used as a health supplement and herbal medicine. Astrocytes are one of the key cells in the central nervous system (CNS) and have bioenergetic potential as they stimulate mitochondrial biogenesis. They play a critical role in connecting the brain vasculature and nerves in the CNS. Methods: Brain samples from KRGE-administered mice were tested using immunohistochemistry. Treatment of human brain astrocytes with KRGE was subjected to assays such as proliferation, cytotoxicity, Mitotracker, ATP production, and O2 consumption rate as well as western blotting to demonstrate the expression of proteins related to mitochondria functions. The expression of hypoxia-inducible factor-1α (HIF-1α) was diminished utilizing siRNA transfection. Results: Brain samples from KRGE-administered mice harbored an increased number of GFAP-expressing astrocytes. KRGE triggered the proliferation of astrocytes in vitro. Enhanced mitochondrial biogenesis induced by KRGE was detected using Mitotracker staining, ATP production, and O2 consumption rate assays. The expression of proteins related to mitochondrial electron transport was increased in KRGE-treated astrocytes. These effects were blocked by HIF-1α knockdown. The factors secreted from KRGE-treated astrocytes were determined, revealing the expression of various cytokines and growth factors, especially those related to angiogenesis and neurogenesis. KRGE-treated astrocyte conditioned media enhanced the differentiation of adult neural stem cells into mature neurons, increasing the migration of endothelial cells, and these effects were reduced in the background of HIF-1α knockdown. Conclusion: Our findings suggest that KRGE exhibits prophylactic potential by stimulating astrocyte mitochondrial biogenesis through HIF-1α, resulting in improved neurovascular function.

리튬이차전지용 고용량 음극을 위한 구리@코발트산화물 코어-쉘 수지상 기반 3차원 다공성 박막 (Three-dimensional porous films consisting of copper@cobalt oxide core-shell dendrites for high-capacity lithium secondary batteries)

  • 주소영;최윤주;최우성;신헌철
    • 한국표면공학회지
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    • 제56권1호
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    • pp.104-114
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    • 2023
  • Three dimensional (3D) porous structures consisting of Cu@CoO core-shell-type nano-dendrites were synthesized and tested as the anode materials in lithium secondary batteries. For this purpose, first, the 3D porous films comprising Cu@Co core-shell-type nano-dendrites with various thicknesses were fabricated through the electrochemical co-deposition of Cu and Co. Then the Co shells were selectively anodized to form Co hydroxides, which was finally dehydrated to get Cu@CoO nanodendrites. The resulting electrodes exhibited very high reversible specific capacity almost 1.4~2.4 times the theoretical capacity of commercial graphite, and excellent capacity retention (~90%@50th cycle) as compared with those of the existing transition metal oxides. From the analysis of the cumulative irreversible capacity and morphology change during charge/discharge cycling, it proved that the excellent capacity retention was attributed to the unique structural feature of our core-shell structure where only the thin CoO shell participates in the lithium storage. In addition, our electrodes showed a superb rate performance (70.5%@10.8 C-rate), most likely due to the open porous structure of 3D films, large surface area thanks to the dendritic structure, and fast electron transport through Cu core network.

상부 개방형 온실을 이용한 대기 중 이산화탄소 농도 증가가 우리나라 자생 수종에 미치는 형태적, 생리적 영향 (Responses of Native Trees Species in Korea under Elevated Carbon Dioxide Condition - Open Top Chamber Experiment)

  • 류다운;배진호;박주한;조성식;문민규;오창영;김현석
    • 한국농림기상학회지
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    • 제16권3호
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    • pp.199-212
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    • 2014
  • 상부 개방형 온실을 이용하여 현재 대기의 이산화탄소 농도(ambient), 현재 농도의 1.4배(~550 ppm) 및 1.8배(~700 ppm)로 증가된 미래 대기 환경에서 약 4년간 생장한 소나무, 물푸레나무, 팥배나무를 대상으로 하여 대기 중 이산화탄소 농도 증가에 대한 수목의 반응을 알아보고자 하였다. 이를 위해 2013년 4월~9월의 연구기간 동안 각 수종의 기공 크기 밀도 면적, 최대 광합성 속도, 최대 카르복실화 속도, 최대 전자전달 속도 및 직경생장을 측정하였다. 이산화탄소 농도가 증가함에 따라 물푸레나무의 기공 크기가 유의하게 증가하였고 팥배나무의 기공 밀도가 증가하였다. 기공 면적의 경우 소나무는 감소한 반면 팥배나무는 증가하는 등 수종에 따라 다양한 반응을 보였다. 하지만 최대 광합성 속도는 모든 수종에서 대기 중 이산화탄소 농도에 따라 대체로 증가하는 경향을 나타냈는데 팥배나무에서는 계절이 지남에 따라 그 차이가 더 커져 최대 43.5%까지 증가하였다. 그러나 4년에 걸친 비교적 장기간의 폭로에도 불구하고 이산화탄소 시비에 의한 최대 카르복실화 속도와 최대 전자전달 속도의 저감효과는 모든 수종에서 나타나지 않았다. 특히 팥배나무의 경우 잎의 질소 농도가 높아지는 개엽 시기에는 높은 이산화탄소 농도하에서 일시적으로 최대 카르복실화 속도와 최대 전자전달 속도가 향상되어 저감과는 반대의 양상을 나타냈다. 모든 수종에서 개체목간의 변이로 인해 연구 기간 중 이산화탄소 농도에 따른 직경 생장량은 유의한 차이를 보이지 않았으나 약 4년간 누적된 직경의 크기와 생체량에서는 모든 수종에서 유의한 차이를 보였으며 팥배나무 직경의 경우 대조구에 비해 1.8배에서 최대 59.0%까지 높게 나타났다.