• 제목/요약/키워드: deposition rate

검색결과 1,880건 처리시간 0.037초

Characterization of SiC nanowire synthesize by Thermal CVD

  • 정민욱;김민국;송우석;정대성;최원철;박종윤
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.74-74
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    • 2010
  • One-dimensional nanosturctures such as nanowires and nanotube have been mainly proposed as important components of nano-electronic devices and are expected to play an integral part in design and construction of these devices. Silicon carbide(SiC) is one of a promising wide bandgap semiconductor that exhibits extraordinary properties, such as higher thermal conductivity, mechanical and chemical stability than silicon. Therefore, the synthesis of SiC-based nanowires(NWs) open a possibility for developing a potential application in nano-electronic devices which have to work under harsh environment. In this study, one-dimensional nanowires(NWs) of cubic phase silicon carbide($\beta$-SiC) were efficiently produced by thermal chemical vapor deposition(T-CVD) synthesis of mixtures containing Si powders and hydrocarbon in a alumina boat about $T\;=\;1400^{\circ}C$ SEM images are shown that the temperature below $1300^{\circ}C$ is not enough to synthesis the SiC NWs due to insufficient thermal energy for melting of Si Powder and decomposition of methane gas. However, the SiC NWs are produced over $1300^{\circ}C$ and the most efficient temperature for growth of SiC NWs is about $1400^{\circ}C$ with an average diameter range between 50 ~ 150 nm. Raman spectra revealed the crystal form of the synthesized SiC NWs is a cubic phase. Two distinct peaks at 795 and $970\;cm^{-1}$ over $1400^{\circ}C$ represent the TO and LO mode of the bulk $\beta$-SiC, respectively. In XRD spectra, this result was also verified with the strongest (111) peaks at $2{\theta}=35.7^{\circ}$, which is very close to (111) plane peak position of 3C-SiC over $1400 ^{\circ}C$ TEM images are represented to two typical $\beta$-SiC NWs structures. One is shown the defect-free $\beta$-SiC nanowire with a (111) interplane distance with 0.25 nm, and the other is the stacking-faulted $\beta$-SiC nanowire. Two SiC nanowires are covered with $SiO_2$ layer with a thickness of less 2 nm. Moreover, by changing the flow rate of methane gas, the 300 sccm is the optimal condition for synthesis of a large amount of $\beta$-SiC NWs.

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금속 침출연구를 위한 전기화학적 미소수정진동자저울 기술 소개 (Introduction to Electrochemical Quartz Crystal Microbalance Technique for Leaching Study of Metals)

  • 김민석;정경우;이재천
    • 자원리싸이클링
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    • 제29권1호
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    • pp.25-34
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    • 2020
  • 전기화학적 미소수정진동자저울은 전극표면에서 발생하는 나노그램 수준의 질량변화를 실시간 측정할 수 있는 장비이다. 역압전효과를 가진 수정진동자 양면에 형성된 금속전극에 교대로 전계를 가하면 진동자의 두께에 따라 특정 공진주파수를 나타낸다. 공진주파수는 전극표면에서 발생하는 질량변화에 반응하며, 전극표면의 금속이 용해될 때는 증가하고 석출될 때는 반대로 감소한다. 공진주파수와 질량변화의 상관관계는 Sauerbrey 식으로 나타내고 이를 이용하여 금속의 침출반응때 발생하는 질량변화를 실시간으로 측정할 수 있다. 특히 용해 후 침출액에서 침전, 휘발, 기타 화합물 형성 등 부반응으로 실험 후 발광분광분석이나 원자흡광분석 등이 용이하지 않은 금속의 침출 반응기구 및 속도 연구에 매우 효과적이다. 그러나 수정진동자의 공진주파수는 질량변화 외에도 용액의 점도, 수압, 온도, 스트레스, 그리고 표면거칠기 등에도 영향을 받으므로 실험 시 이들 영향에 대한 고려가 필요하다. 전기화학적 미소수정진동자저울의 응용 예로서 염소를 이용한 백금의 침출 시 용해속도를 실시간 측정하고 이로부터 활성화에너지를 구하는 일련의 과정을 소개하였다. 침출에 사용된 백금시료는 수정진동자 양면에 형성된 1000 Å두께의 백금전극 중 침출액에 노출된 한쪽 면을 활용하였으며, 전해생성된 염소를 염산 침출액에 주입하여 침출 시 용존 염소농도를 조절하였다. 실험결과로부터 염소에 의한 백금의 용해반응은 활성화에너지가 83.5 kJ/mol로 화학반응율속임을 확인하였다.

Numerical analysis on erosion process of replenished sediment on rock bed

  • Takebayashi, Hiroshi;Yoshiiku, Musashi;Shiuchi, Makoto;Yamashita, Masahiro;Nakata, Yasusuke
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2011년도 학술발표회
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    • pp.17-17
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    • 2011
  • As a method of countermeasure to bed degradation and armoring phenomena of bed material in the downstream area of dam reservoirs, sediment augmentation (replenished sediment) has been carried out in many Japanese rivers. In general, bed of the replenished sediment site is composed of rocks, because the site is located in the downstream area of the dams and sediment supply is very small. Bed deformation process has been researched by many researchers. As a method of countermeasure to bed degradation and armoring phenomena of bed material in the downstream area of dam reservoirs, sediment augmentation (replenished sediment) has been carried out in many Japanese rivers. In general, bed of the replenished sediment site is composed of rocks, because the site is located in the downstream area of the dams and sediment supply is very small. Bed deformation process has been researched by many researchers. However, most of them can treat movable bed only and cannot be applied to the bed deformation process of sediment on rocks. If the friction angle between the sediment and the bed surface is assumed to be the same as the friction angle between the sediment and the sediment, sediment transport rate must be smaller without sediment deposition layer on the rocks. As a result, the reproduced bed geometry is affected very well. In this study, non-equilibrium transport process of non-cohesive sediment on rigid bed is introduced into the horizontal two dimensional bed deformation model and the model is applied to the erosion process of replenished sediment on rock in the Nakagawa, Japan. Here, the Japanese largest scale sediment augmentation has been performed in the Nakagawa. The results show that the amounts of the eroded sediment and the remained sediment reproduced by the developed numerical model are $56300m^3$ and $26800m^3$, respectively. On the other hand, the amounts of the eroded sediment and the remained sediment measured in the field after the floods are $56600m^3$ and $26500m^3$, respectively. The difference between the model and field data is very small. Furthermore, the bed geometry of the replenished sediment after the floods reproduced by the developed model has a good agreement with the measured bed geometry after the floods. These results indicate that the developed model is able to simulate the erosion process of replenished sediment on rocks very well. Furthermore, the erosion speed of the replenished sediment during the decreasing process of the water discharge is faster than that during the increasing process of the water discharge. The replenished sediment is eroded well, when the top of the replenished sediment is covered by the water. In general, water surface level is kept to be high during the decreasing process of the discharge during floods, because water surface level at the downstream end is high. Hence, it is considered that the high water surface level during the decreasing process of the water discharge affects on the fast erosion of the replenished sediment.

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Evaluations of Si based ternary anode materials by using RF/DC magnetron sputtering for lithium ion batteries

  • 황창묵;박종완
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2010년도 제39회 하계학술대회 초록집
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    • pp.302-303
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    • 2010
  • Generally, the high energy lithium ion batteries depend intimately on the high capacity of electrode materials. For anode materials, the capacity of commercial graphite is unlike to increase much further due to its lower theoretical capacity of 372 mAhg-1. To improve upon graphite-based negative electrode materials for Li-ion rechargeable batteries, alternative anode materials with higher capacity are needed. Therefore, some metal anodes with high theoretic capacity, such as Si, Sn, Ge, Al, and Sb have been studied extensively. This work focuses on ternary Si-M1-M2 composite system, where M1 is Ge that alloys with Li, which has good cyclability and high specific capacity and M2 is Mo that does not alloy with Li. The Si shows the highest gravimetric capacity (up to 4000mAhg-1 for Li21Si5). Although Si is the most promising of the next generation anodes, it undergoes a large volume change during lithium insertion and extraction. It results in pulverization of the Si and loss of electrical contact between the Si and the current collector during the lithiation and delithiation. Thus, its capacity fades rapidly during cycling. Si thin film is more resistant to fracture than bulk Si because the film is firmly attached to the substrate. Thus, Si film could achieve good cycleability as well as high capacity. To improve the cycle performance of Si, Suzuki et al. prepared two components active (Si)-active(Sn, like Ge) elements film by vacuum deposition, where Sn particles dispersed homogeneously in the Si matrix. This film showed excellent rate capability than pure Si thin film. In this work, second element, Ge shows also high capacity (about 2500mAhg-1 for Li21Ge5) and has good cyclability although it undergoes a large volume change likewise Si. But only Ge does not use the anode due to its costs. Therefore, the electrode should be consisted of moderately Ge contents. Third element, Mo is an element that does not alloys with Li such as Co, Cr, Fe, Mn, Ni, V, Zr. In our previous research work, we have fabricated Si-Mo (active-inactive elements) composite negative electrodes by using RF/DC magnetron sputtering method. The electrodes showed excellent cycle characteristics. The Mo-silicide (inert matrix) dispersed homogeneously in the Si matrix and prevents the active material from aggregating. However, the thicker film than $3\;{\mu}m$ with high Mo contents showed poor cycling performance, which was attributed to the internal stress related to thickness. In order to deal with the large volume expansion of Si anode, great efforts were paid on material design. One of the effective ways is to find suitably three-elements (Si-Ge-Mo) contents. In this study, the Si based composites of 45~65 Si at.% and 23~43 Ge at.%, and 12~32 Mo at.% are evaluated the electrochemical characteristics and cycle performances as an anode. Results from six different compositions of Si-Ge-Mo are presented compared to only the Si and Ge negative electrodes.

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A REVIEW ON THE ODSCC OF STEAM GENERATOR TUBES IN KOREAN NPPS

  • Chung, Hansub;Kim, Hong-Deok;Oh, Seungjin;Boo, Myung Hwan;Na, Kyung-Hwan;Yun, Eunsup;Kang, Yong-Seok;Kim, Wang-Bae;Lee, Jae Gon;Kim, Dong-Jin;Kim, Hong Pyo
    • Nuclear Engineering and Technology
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    • 제45권4호
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    • pp.513-522
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    • 2013
  • The ODSCC detected in the TSP position of Ulchin 3&4 SGs are typical ODSCC of Alloy 600MA tubes. The causative chemical environment is formed by concentration of impurities inside the occluded region formed by the tube surface, egg crate strips, and sludge deposit there. Most cracks are detected at or near the line contacts between the tube surface and the egg crate strips. The region of dense crack population, as defined as between $4^{th}$ and $9^{th}$ TSPs, and near the center of hot leg hemisphere plane, coincided well with the region of preferential sludge deposition as defined by thermal hydraulics calculation using SGAP computer code. The cracks developed homogeneously in a wide range of SGs, so that the number of cracks detected each outage increased very rapidly since the first detection in the $8^{th}$ refueling outage. The root cause assessment focused on investigation of the difference in microstructure and manufacturing residual stress in order to reveal the cause of different susceptibilities to ODSCC among identical six units. The manufacturing residual stress as measured by XRD on OD surface and by split tube method indicated that the high residual stress of Alloy 600MA tube played a critical role in developing ODSCC. The level of residual stress showed substantial variations among the six units depending on details of straightening and OD grinding processes. Youngwang 3&4 tubes are less susceptible to ODSCC than U3 and U4 tubes because semi-continuous coarse chromium carbides are formed along the grain boundary of Y3&4 tubes, while there are finer less continuous chromium carbides in U3 and U4. The different carbide morphology is caused by the difference in cooling rate after mill anneal. There is a possibility that high chromium content in the Y3&4 tubes, still within the allowable range of Alloy 600, has made some contribution to the improved resistance to ODSCC. It is anticipated that ODSCC in Y5&6 SGs will be retarded more considerably than U3 SGs since the manufacturing residual stress in Y5&6 tubes is substantially lower than in U3 tubes, while the microstructure is similar with each other.

황화수소 상온 산화를 위한 바나듐계 촉매의 제조 조건 최적화 연구 (Optimization of Preparation Conditions of Vanadium-Based Catalyst for Room Temperature Oxidation of Hydrogen Sulfide)

  • 강혜린;이예환;김성철;장순웅;김성수
    • 공업화학
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    • 제32권3호
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    • pp.326-331
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    • 2021
  • 본 연구에서는 황화수소를 상온에서 산화시키기 위한 TiO2 기반 바나듐계 촉매의 제조 조건을 최적화하였다. 촉매의 지지체로써 4종의 상용 TiO2를 선정하였으며, 함침법을 이용하여 제조된 다양한 바나듐 함량별 V/TiO2의 황화수소 상온 산화 성능 평가를 수행하였다. 선정된 TiO2 중 TiO2(A)를 기반으로 하며 바나듐(V) 함량이 5%인 촉매의 황화수소 전환율이 58%로 가장 우수한 것을 확인하였으며, 촉매의 물리·화학적 특성을 비교함으로써 지지체의 비표면적과 우점하는 바나듐의 종이 촉매 성능의 주요인자임을 도출하였다. 활성이 저하된 촉매의 재생 특성을 확인하기 위해 400 ℃에서 2 h 동안 열처리하였으며, 재생된 촉매에 황이 일부 침적되어 황화수소 산화량이 10% 감소하였으나 초기 성능은 유사하게 나타나는 것을 확인하였다.

Maternal nutrition altered embryonic MYOD1, MYF5, and MYF6 gene expression in genetically fat and lean lines of chickens

  • Li, Feng;Yang, Chunxu;Xie, Yingjie;Gao, Xiang;Zhang, Yuanyuan;Ning, Hangyi;Liu, Guangtao;Chen, Zhihui;Shan, Anshan
    • Animal Bioscience
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    • 제35권8호
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    • pp.1223-1234
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    • 2022
  • Objective: The objectives of this study were to evaluate the effects of daily feed intake during the laying period on embryonic myogenic differentiation 1 (MYOD1), myogenic factor 5 (MYF5), and myogenic factor 6 (MYF6) gene expression in genetically fat and lean lines of chickens. Methods: An experiment in a 2×2 factorial design was conducted with two dietary intake levels (100% and 75% of nutrition recommendation) and two broiler chicken lines (fat and lean). Two lines of hens (n = 384 for each line) at 23th week of age were randomly divided into 4 treatments with 12 replicates of 16 birds. The experiment started at 27th week of age (5% egg rate) and ended at 54th week of age. Hatched eggs from the medium laying period were collected. Real time polymerase chain reaction analysis was used to analyse the MYOD1, MYF5, and MYF6 mRNA levels of E7, E9, E11, E13, and E15 body tissues and E17, E19, and E21 chest and thigh muscle samples. Results: The results indicated that there were significant effects of line, dietary intake, and interactions between them on MYOD1, MYF5, and MYF6 gene mRNA expression levels in embryonic tissues. Low daily feed intake did not change the expression trend of MYOD1 mRNA in either line, but changed the peak values, especially in lean line. Low daily feed intake altered the trend in MYF5 mRNA expression level in both lines and apparently delayed its onset. There was no apparent effect of low daily feed intake on the trends of MYF6 mRNA expression levels in either line, but it significantly changed the values on many embryonic days. Conclusion: Maternal nutrient restriction affects myogenesis and is manifested in the expression of embryonic MYOD1, MYF5, and MYF6 genes. Long term selection for fat deposition in broiler chickens changes the pattern and intensity of myogenesis.

점도 변화와 폐색 현상을 고려한 그라우트재의 침투 특성 (Effect of Viscosity and Clogging on Grout Penetration Characteristics)

  • 김종선;최용기;박종호;우상백;이인모
    • 한국지반공학회논문집
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    • 제23권4호
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    • pp.5-13
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    • 2007
  • 1925년 이후 지반개량공법은 많은 발전을 거듭해 왔으며, 많은 건설현장에서 차수의 목적 또는 지반강도 증진의 목적 등으로 그라우팅이 적용되어왔다. 지반개량공법의 발전과 더불어 그라우트재의 종류 또한 그 수가 증가되었으며, 그라우트재의 침투특성과 관련된 이론적인 연구의 필요성이 요구되었다. 전수두차에 의해 그라우트재의 흐름이 발생되며, 그라우트재의 이동은 지반의 투수계수의 영향을 받는다. 그라우트재가 지반의 간극을 지날 때, 그라우트재의 화학반응에 의해 점도가 변화되며, 따라서 점도 증가로 인하여 투수계수는 감소하게 된다. 또한 현탁액형의 그라우트재의 경우 그라우트재 입자에 의한 지반 간극의 폐색으로 투수계수가 감소하게 된다. 본 논문에서는 새로 개발된 그라우트재의 물리적-화학적 특성을 연구하고, 입경이 다른 두 종류의 모형지반에서 실시된 신개발 그라우트재의 주입실험 결과와 비교하여 점도변화와 폐색현상을 고려한 그라우트재의 침투 가능성을 이론적으로 제시하고자 한다. 측정된 신개발 그라우트재의 점도는 시간의 지수함수 형태를 보였으며, 실험결과와 비교하여 폐색현상과 관련된 계수 $\delta$를 추정하였다. 그라우트재의 점도 변화는 시간에 따른 주입량에 많은 영향을 주는 것으로 나타났으며, 간극의 크기가 작은 지반에서 주입실험을 실시한 결과 폐색현상의 영향으로 주입량이 현저하게 감소되는 것으로 나타났다.

베인 형태에 따른 하상세굴 저감 효과에 관한 연구 (The Study for Reduction Effect of Riverbed Scour due to Shape of Vanes)

  • 노해민;이호진;김성덕
    • 한국방재안전학회논문집
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    • 제16권2호
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    • pp.57-63
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    • 2023
  • 기후변화로 인하여 발생하는 집중호우와 슈퍼태풍은 우리나라에서 많은 피해를 야기한다. 이러한 피해를 저감하기 위해서 다양한 형태의 하천정비사업이 추진되고 있으나, 홍수기와 갈수기가 뚜렷한 우리나라에서는 하천 균형을 유지하기가 어렵다. 특히, 하천정비 사업으로 설치된 하천구조물은 홍수기에 구조물 및 그 기초의 세굴이 발생되고 하상 변화 등 다양한 문제를 일으키고 있다. 이러한 하상세굴을 저감하기 위하여 하천의 만곡부에 다양한 베인이 많이 설치되며, 베인의 배치와 크기, 모양에 따라서 다양한 하상세굴 저감 효과가 나타난다. 베인은 원심력에 의해 발생하는 2차 흐름과 반대 방향으로 2차 흐름을 다시 생성함으로써 외측 하상 주변의 세굴이 감소하고 퇴적이 촉진된다. 본 연구의 이론은 질량보존법칙을 만족하는 연속방정식과 운동량 보존을 만족하는 운동량방정식을 적용한 지배방정식을 이용하고, 다양한 조건 하에서 베인의 영향을 조사하기 위해 설계 요인에 따라 전체 평균 유속 변화율을 측정한다. 사다리꼴 베인과 사각형 베인 모두에서 평균유속과 횡단면 유속이 모두 감소하였고, 이는 베인 설치로 인해서 원심력을 갖고 유하하는 하천유속이 방해를 받아 유속이 저감되기 때문이다. 또한, 하천흐름 방향에 수직으로 또는 경사적으로 설치된 베인은 원심력에 의해 발생하는 2차흐름의 역방향으로 2차흐름을 발생시켜 원심력 2차흐름의 상쇄를 나타내기 때문에 베인의 효과가 나타난다.

g-C3N4 도입에 따른 다공성 Au 전극의 전기화학적 이산화탄소 환원 특성 (Enhanced Electrochemical CO2 Reduction on Porous Au Electrodes with g-C3N4 Integration)

  • 허지원;성채원;하준석
    • 마이크로전자및패키징학회지
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    • 제31권2호
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    • pp.78-84
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    • 2024
  • 이산화탄소 (CO2)의 전기화학적 환원은 CO2를 고부가가치 탄소화합물로 변환하는 효과적인 방법으로 주목받고 있다. 본 논문에서는 e-beam 증착법과 양극 산화법을 이용하여 전기화학적 CO2 환원용 g-C3N4가 도입된 다공성 Au(pAu) 전극을 합성하는 손쉬운 방법과 그 특성에 대해 보고한다. 제작된 pAu@g-C3N4 전극 (@ -0.9 VRHE)은 pAu 전극대비 더 우수한 전기화학적 성능을 보였다. CO2 환원 성능을 확인해 보았을 때, 두 전극 모두 CO 생성물에 대해 100%의 패러데이 효율 (FE)을 기록하였으며, pAu@g-C3N4 전극은 최대 9.94 mg/s의 CO 생산량을 나타내어 pAu 전극에 비해 최대 2.2배 많은 CO를 생산하였다. 본 연구는 CO2 배출로 인한 기후 변화에 대응하는 경제적이며 지속 가능한 방법을 제공할 뿐만 아니라, 전기화학적 CO2 환원용 전극 개발에 크게 기여할 것으로 예상된다.