• 제목/요약/키워드: dissolution properties

검색결과 385건 처리시간 0.027초

Improved Uniformity in Resistive Switching Characteristics of GeSe Thin Film by Ag Nanocrystals

  • Park, Ye-Na;Shin, Tae-Jun;Lee, Hyun-Jin;Lee, Ji-Soo;Jeong, Yong-Ki;Ahn, So-Hyun;Lee, On-You;Kim, Jang-Han;Nam, Ki-Hyun;Chung, Hong-Bay
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.237.2-237.2
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    • 2013
  • ReRAM cell, also known as conductive bridging RAM (CBRAM), is a resistive switching memory based on non-volatile formation and dissolution of conductive filament in a solid electrolyte [1,2]. Especially, Chalcogenide-based ReRAM have become a promising candidate due to the simple structure, high density and low power operation than other types of ReRAM but the uniformity of switching parameter is undesirable. It is because diffusion of ions from anode to cathode in solid electrolyte layer is random [3]. That is to say, the formation of conductive filament is not go through the same paths in each switching cycle which is one of the major obstacles for performance improvement of ReRAM devices. Therefore, to control of nonuniform conductive filament formation is a key point to achieve a high performance ReRAM. In this paper, we demonstrated the enhanced repeatable bipolar resistive switching memory characteristics by spreading the Ag nanocrystals (Ag NCs) on amorphous GeSe layer compared to the conventional Ag/GeSe/Pt structure without Ag NCs. The Ag NCs and Ag top electrode act as a metal supply source of our devices. Excellent resistive switching memory characteristics were obtained and improvement of voltage distribution was achieved from the Al/Ag NCs/GeSe/Pt structure. At the same time, a stable DC endurance (>100 cycles) and an excellent data retention (>104 sec) properties was found from the Al/Ag NCs/GeSe/ Pt structured ReRAMs.

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고상법을 이용한 Y3Al5O12:Ce3+의 제조에서 BaF2가 미치는 영향 (Effect of BaF2 as a Flux in Solid State Synthesis of Y3Al5O12:Ce3+)

  • 원형석;;원창환;원형일
    • 한국재료학회지
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    • 제21권11호
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    • pp.604-610
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    • 2011
  • The effect of $BaF_2$ flux in $Y_3Al_5O_{12}:Ce^{3+}$(YAG:Ce) formation was investigated. Phase transformation of $Y_3Al_5O_{12}$(YAG) was characterized by using XRD, SEM, and TEM-EDS, and it was revealed that the sequential formation of the $Y_4Al_2O_9$(YAM), $YAlO_3$(YAP) and $Y_3Al_5O_{12}$(YAG) in the temperature range of 1000-1500$^{\circ}C$. Single phase of YAG was revealed from 1300$^{\circ}C$. In order to find out the effect of $BaF_2$ flux, three modeling experiments between starting materials (1.5$Al_2O_3$-2.5$Y_2O_3$, $Y_2O_3$-$BaF_2$, and $Al_2O_3$-$BaF_2$) were done. These modeling experiments showed that the nucleation process occurs via the dissolution-precipitation mechanism, whereas the grain growth process is controlled via the liquid-phase diffusion route. YAG:Ce phosphor particles prepared using a proposed technique exhibit a spherical shape, high crystallinity, and an emission intensity. According to the experimental results conducted in this investigation, 5% of $BaF_2$ was the best concentration for physical, chemical and optical properties of $Y_3Al_5O_{12}:Ce^{3+}$(YAG:Ce) that is approximately 10-15% greater than that of commercial phosphor powder.

Electrical resistivity and capillarity of self-compacting concrete with incorporation of fly ash and limestone filler

  • Silva, Pedro;de Brito, Jorge
    • Advances in concrete construction
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    • 제1권1호
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    • pp.65-84
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    • 2013
  • Electrical resistivity is a property associated with both the physical and chemical characteristics of concrete. It allows the evaluation of the greater or lesser difficulty with which aggressive substances penetrate the concrete's core before the dissolution of the passive film process and the consequent reinforcement's corrosion begin. This work addresses the capillary absorption of self-compacting concrete (SCC) with various types and contents of additions, correlating it with its electrical resistivity. To that effect, binary and ternary mixes of SCC were produced using fly ashes (FA) and limestone filler (LF). A total of 11 self-compactable mixes were produced: one with cement (C) only; three with C + FA in 30%, 60% and 70% substitution ratios; three with C + LF in 30%, 60% and 70% substitution ratios; four with C + FA + LF in combinations of 10-20%, 20-10%, 20-40% and 40-20% substitution ratios, respectively; and four reference mixes according to the LNEC E 464 specification, which refers to the NP EN 206-1 norm. The evaluation of the capillarity of the mixes produced was made through the determination of the water absorption by capillarity coefficient according to the LNEC E 393 specification. The electrical resistivity was evaluated using the European norm proposal presented by the EU-Project CHLORTEST (EU funded research Project under 5FP GROWTH programme) and based on the RILEM TC-154 EMC technical recommendation. The results indicate that SCC's capillarity is strongly conditioned by the type and quantity of the additions used. It was found that FA addition significantly improves some of the properties studied especially at older ages.

실크피브로인 용해조건에 따른 생체막의 물성 변화 (A study of changes on the physical properties of silk fibroin biological membrane according to the dissolving conditions)

  • 조유영;권해용;이광길;이희삼
    • 한국잠사곤충학회지
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    • 제50권2호
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    • pp.71-75
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    • 2012
  • 실크는 생체적합성이 우수하며, 기계적 강도가 좋고, 낮은 면역 거부반응과 다양한 형태로의 성형이 가능한 장점을 갖는 천연고분자이다. 그러나 실크는 물이나 일반적인 용매에 쉽게 용해되지 않는다. 본 연구에서는 실크 피브로인의 용해조건에 따른 실크 생체막의 특성 변화를 관찰하기위하여, 실크 함유량과 실크 용해시간을 달리하여 실크 피브로인 수용액을 만들고 이를 이용하여 실크 생체막을 제작하였다. 제작된 실크 생체막의 형태, 구조, 기계적강도 등과 같은 특징을 관찰 하였다. 비록 각 실크 생체막에 함유된 피브로인의 함량이 같을 지라도 생체막의 두께와 투명도에는 커다란 차이를 보였다. 하지만 실크 피브로인 용액의 분자량과 생체막의 형태에 있어서의 변화는 거의 없었다. 본 연구는 실크 피브로인의 용해조건에 따라 실크 생체막의 유연성, 강도, 투명도 등의 다양한 특성을 조절할 수 있다는 것을 보여주었으며, 최적의 실크생체막 제작 조건을 확립하였으므로, 향후 실크를 이용한 의료용품 개발에 많은 도움이 될 것으로 생각된다.

Experimental Study on Poultices Applying to Remove Fixative (Paraloid B72) on Earthen Mural Painting

  • Lee, Kyeong Min;Moon, Hye Young;Yu, Yeong Gyeong;Kim, Soon Kwan
    • 보존과학회지
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    • 제34권6호
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    • pp.569-580
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    • 2018
  • The possibility of applying poulticing was studied for removing Paraloid B72, a resin used for fixing an earthen mural painting. Five types of poultices were selected from clay and gel types, and acetone, ethanol, and methyl ethyl ketone(MEK) were used as mixed solvents. The possibility of mixing between the poultice and solvent was investigated, and then the spreadability, fluidity, acidity, drying properties, and solubility of the poultices were examined to confirm the characteristics. A poultice agent, which is suitable for applying to a mural painting, was selected and applied to a painting layer sample coated with Paraloid B72. As a result, all painting layers were good condition at under 50% of the solvent. The removal efficiency of Paraloid B72 was more effective when most of the solvents were used at 50%, rather than at 25%. However, it is difficult to mix 50% of MEK and ethanol with the gel-type poultices. When used at 25%, the removal performance was poorer than that at 50%, but the mixing with all the poultices was successful. In addition, the adsorption and removal power of the gel-type poultice were better than those of the clay-type, but the latter was expected to be more suitable in short-time cases due to its high drying speed. The results of this study show that the dissolution performance varies depending on the poultices and solvents. Hence, the poultice and solvent should be selectively applied, considering the fixative of the mural to be removed.

Solidification of high level waste using magnesium potassium phosphate compound

  • Vinokurov, Sergey E.;Kulikova, Svetlana A.;Myasoedov, Boris F.
    • Nuclear Engineering and Technology
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    • 제51권3호
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    • pp.755-760
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    • 2019
  • Compound samples based on the mineral-like magnesium potassium phosphate matrix $MgKPO_4{\times}6H_2O$ were synthesized by solidification of high level waste surrogate. Phase composition and structure of synthesized samples were studied by XRD and SEM methods. Compressive strength of the compounds is $12{\pm}3MPa$. Coefficient of thermal expansion of the samples in the range $250-550^{\circ}C$ is $(11.6{\pm}0.3){\times}10^{-6}1/^{\circ}C$, and coefficient of thermal conductivity in the range $20-500^{\circ}C$ is $0.5W/(m{\times}K)$. Differential leaching rate of elements from the compound, $g/(cm^2{\times}day)$: $Mg-6.7{\times}10^{-6}$, $K-3.0{\times}10^{-4}$, $P-1.2{\times}10^{-4}$, $^{137}Cs-4.6{\times}10^{-7}$; $^{90}Sr-9.6{\times}10^{-7}$; $^{239}Pu-3.7{\times}10^{-9}$, $^{241}Am-9.6{\times}10^{-10}$. Leaching mechanism of radionuclides from the samples at the first 1-2 weeks of the leaching test is determined by dissolution ($^{137}Cs$), wash off ($^{90}Sr$) or diffusion ($^{239}Pu$ and $^{241}Am$) from the compound surface, and when the tests continue to 90-91 days - by surface layer depletion of compound. Since the composition and physico-chemical properties of the compound after irradiation with an electron beam (absorbed dose of 1 MGy) are constant the radiation resistance of compound was established.

Phase analysis of simulated nuclear fuel debris synthesized using UO2, Zr, and stainless steel and leaching behavior of the fission products and matrix elements

  • Ryutaro Tonna;Takayuki Sasaki;Yuji Kodama;Taishi Kobayashi;Daisuke Akiyama;Akira Kirishima;Nobuaki Sato;Yuta Kumagai;Ryoji Kusaka;Masayuki Watanabe
    • Nuclear Engineering and Technology
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    • 제55권4호
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    • pp.1300-1309
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    • 2023
  • Simulated debris was synthesized using UO2, Zr, and stainless steel and a heat treatment method under inert or oxidizing conditions. The primary U solid phase of the debris synthesized at 1473 K under inert conditions was UO2, whereas a (U, Zr)O2 solid solution formed at 1873 K. Under oxidizing conditions, a mixture of U3O8 and (Fe, Cr)UO4 phases formed at 1473 K, whereas a (U, Zr)O2+x solid solution formed at 1873 K. The leaching behavior of the fission products from the simulated debris was evaluated using two methods: the irradiation method, for which fission products were produced via neutron irradiation, and the doping method, for which trace amounts of non-radioactive elements were doped into the debris. The dissolution behavior of U depended on the properties of the debris and aqueous solution for immersion. Cs, Sr, and Ba leached out regardless of the primary solid phases. The leaching of high-valence Eu and Ru ions was suppressed, possibly owing to their solid-solution reaction with or incorporation into the uranium compounds of the simulated debris.

Selective Laser Melting 방식으로 적층제조된 Inconel 718 합금의 조사 경화 특성 (Irradiation Hardening Property of Inconel 718 Alloy produced by Selective Laser Melting)

  • 서주원;임상엽;진형하;천영범;강석훈;한흥남
    • 한국분말재료학회지
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    • 제30권5호
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    • pp.431-435
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    • 2023
  • An irradiation hardening of Inconel 718 produced by selective laser melting (SLM) was studied based on the microstructural observation and mechanical behavior. Ion irradiation for emulating neutron irradiation has been proposed owing to advantages such as low radiation emission and short experimental periods. To prevent softening caused by the dissolution of γ' and γ" precipitates due to irradiation, only solution annealing (SA) was performed. SLM SA Inconel 718 specimen was ion irradiated to demonstrate the difference in microstructure and mechanical properties between the irradiated and non-irradiated specimens. After exposing specimens to Fe3+ ions irradiation up to 100 dpa (displacement per atom) at an ambient temperature, the hardness of irradiated specimens was measured by nano-indentation as a function of depth. The depth distribution profile of Fe3+ and dpa were calculated by the Monte Carlo SRIM (Stopping and Range of Ions in Matter)-2013 code under the assumption of the displacement threshold energy of 40 eV. A transmission electron microscope was utilized to observe the formation of irradiation defects such as dislocation loops. This study reveals that the Frank partial dislocation loops induce irradiation hardening of SLM SA Inconel 718 specimens.

지중 내 TPH, Phenol의 확산방지를 위한 선택적 차수재 제조에 관한 연구 (A Study on the Selectively Block Barrier for Prevent the Spread of TPH and Phenol in the Ground)

  • 임호진;조우리;오승진;김수희;이재영
    • 한국지반신소재학회논문집
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    • 제23권1호
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    • pp.1-7
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    • 2024
  • 본 연구에서는 지중 내 오염물질(TPH, Phenol)의 확산 방지를 위해 오염 발생시에만 선택적으로 차수성능을 발현하는 차수재를 제조하고자 하였다. 선택적차수재의 구성물질로는 주문진규사, 벤토나이트, 폴리올레핀 엘라스토머, 스필하운드 마린을 사용하였으며, 본 연구에서는 구성물질들의 활용가능성을 평가하기 위해 기초 특성 및 환경유해성을 확인하였으며 오염물질과의 접촉 24시간 후 변화되는 투수특성을 비교하여 차수재로서 사용가능성을 확인하였다. 각 구성물질의 pH는 일반 지하수 pH 범위와 유사하였으며 독성특성 및 유해물질 용출가능성 분석결과 기준치 이하의 함량을 보여 환경유해성은 없다고 판단되었다. 또한 오염물질 접촉 전‧후 투수계수를 비교하였을 때, 접촉 전 α × 10-3cm/sec 내외의 투수계수가 오염물질과 접촉 이후 α × 10-6cm/sec로 감소된 결과를 보여 차수재의 비오염 상황에서는 투수성과 오염발생시 차수성능 발현을 확인할 수 있었다.

냉각유도젤화에 의한 엽산 함유 분리유청단백 나노담체의 제조 (Preparation of Folic Acid-loaded WPI (Whey Protein Isolate) Nanoparticles by Cold-induced Gelation)

  • 김범근;이원재;오세종;김진만;박동준
    • 한국축산식품학회지
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    • 제30권1호
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    • pp.95-101
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    • 2010
  • 냉각유도젤화(cold-induced gelation) 기술을 이용하여 제조한 엽산 함유 유청단백질 나노담체에 대하여 실험적 변수, 즉, 고분자의 종류, 분리유청단백 용액의 농도 및 pH, 수용액층(aqueous phase)과 유기용매층(organic phase)의 비율, 분리유청단백 용액의 열처리 온도 등에 따른 입도 및 용출 양상의 변화를 고찰하였다. 고분자의 경우 알긴산을 이용하였을 때 가장 작은 입도를 나타내었으며, kcarrageenan의 경우 가장 큰 입도를 나타내었다. 수용액층과 유기용매층의 비율의 경우 그 값이 감소할수록 낮은 평균입도를 나타내었다. 분리유청단백 용액의 농도는 1%, pH는 8.0, 열처리 온도는 $80^{\circ}C$일 때 가장 작은 입자경 (<330 nm)을 나타내었다. 용출시험 결과, pH 7.4에서 2시간 이내에 대부분의 포집된 엽산이 용출된 반면, pH 1.2에서는 6시간 이상 용출이 지연되는 것을 확인하였다. 이와 같은 결과는 냉각유도젤화에 의해 나노담체를 제조하는 경우 실험적 변수들이 나노담체의 특성에 큰 영향을 미치는 것을 의미한다.