• Title/Summary/Keyword: Molecular diffusion

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The Interaction of Hydrogen Atom with ZnO: A Comparative Study of Two Polar Surfaces

  • Doh, Won-Hui;Roy, Probir Chandra;Kim, Chang-Min
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.249-249
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    • 2012
  • The interaction of hydrogen with ZnO single crystal surfaces, ZnO(0001) and ZnO(000-1), has been investigated using a temperature programmed desorption (TPD) technique. Both surfaces do not interact with molecular hydrogen. When the ZnO(0001) is exposed to atomic hydrogen at 370 K, hydrogen is adsorbed in the surface and desorption takes place at around 460 K and 700 K. In ZnO(000-1), the desorption peaks are observed at around 440 K and 540 K. In both surfaces, as the atomic hydrogen exposure is further increased, the intensity of the low-temperature peak reaches maximum but the intensity of the high-temperature peak keeps increasing. In ZnO(000-1), the existence of hydrogen bonding to the surface O atoms and the bulk hydrogen has been confirmed by using X-ray photoelectron spectroscopy (XPS). When the Zn(0001) surface is exposed to atomic hydrogen at around 200 K, a new $H_2$ desorption peak has been observed at around 250 K. The intensity of the desorption feature at 250 K is much greater than that of the desorption feature at 460 K. This low-temperature desorption feature indicates hydrogen is bonded to surface Zn atoms. We will report the effect of the ZnO structure on the adsorption and bulk diffusion of hydrogen.

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A Study on the Determination of Ionic and Molecular Weight of Dissolved Substance by Dialysis Method (Ⅳ). Effects of Specific Surface Area and Pore Size of Dialysis Membrane on Dialysis (透析法에 依한 이온量 및 分子量의 決定에 關한 硏究 (第4報). 比表面積 및 透析膜孔이 透析에 미치는 影響)

  • Yun Kyoung Shin;Jhun Rhee;Taechun Kim
    • Journal of the Korean Chemical Society
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    • v.21 no.1
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    • pp.44-52
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    • 1977
  • The effects of specific surface area and pore size of dialysis membrane on the dialysis were studied. It was confirmed that the intermittent sampling method(in which any volume of dialyzing solution is sampled intermittently at every moment after any duration of the dialysis experiment) is suitable for the determination of a dialysis coefficient. It was also confirmed that the diffusion coefficient of a electrolyte through membrane is smaller than the free diffusion coefficient though the pore size of dialysis membrane is extremely large.

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Synthesis and $CO_2$ Separation Characteristics of ZSM-5 Zeolite Composite Membranes (ZSM-5 제올라이트 복합분리막의 제조 및 $CO_2$ 분리 특성)

  • 현상훈;송재권;김준학
    • Proceedings of the Membrane Society of Korea Conference
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    • 1997.04b
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    • pp.29-29
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    • 1997
  • ZSM-5계 제올라이트는 직경이 약 6${\AA}$인 균일한 3차원 채널 형태의 기공을 형성하므로 이를 이용한 기체 분리막은 분자체가름(molecular sieving)이나 미세기공확산(micropore diffusion) 및 표면확산(surface diffusion) 메커니즘에 의해 최근 지구 온난화의 주범으로 지목되고 있는 CO$_2$ 기체에 대해 높은 분리 효율을 기대할 수 있으므로 ZSM-5 복합분리막의 제조 및 기체 투과 특성과 CO$_2$ 분리 특성에 대해 연구하였으며 다음과 같은 결과를 얻을 수 있었다. 콜로이달 실리카 졸에 질산 알루미늄, 수산화 나트륨 및 TPABr을 첨가한 혼합졸과 물유리를 증류수로 희석한 후 TPBr을 첨가한 용액을 각각 150~180${\AA}$의 온도 범위의 오토클레이브에서 수열 처리하여 ZSM-5와 실리카라이트를 합성하였다. 합성 제올라이트의 결정 구조는 사방정이었으나 450${\AA}$에서 하소하였을 때에는 단사정으로 전이됨과 동시에 채널 속을 채우고 있던 TPABr이 제거되면서 제올라이트의 3차원 채널 형태의 기공 구조가 생성되었다. 제올라이트 결정의 형상과 크기는 실리카 공급원과 반응용액/졸의 농도에 따라 매우 민감하게 변화되었다. 하소 제올라이트의 비표면적은 약 360 m$^2$/g 이었다. 합성 제올라이트의 표면은 소수성인 반면에 높은 CO$_2$ 흡착능을 갖고 있어서 CO$_2$ 분리용 막의 재료로써 적합하였다.

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The high thermal stability induced by a synergistic effect of ZrC nanoparticles and Re solution in W matrix in hot rolled tungsten alloy

  • Zhang, T.;Du, W.Y.;Zhan, C.Y.;Wang, M.M.;Deng, H.W.;Xie, Z.M.;Li, H.
    • Nuclear Engineering and Technology
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    • v.54 no.8
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    • pp.2801-2808
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    • 2022
  • The synergistic effect of ZrC nanoparticle pining and Re solution in W matrix on the thermal stability of tungsten was studied by investigating the evolution of the microstructure, hardness and tensile properties after annealing in a temperature range of 1000-1700 ℃. The results of metallography, electron backscatter diffraction pattern and Vickers micro-hardness indicate that the rolled W-1wt%Re-0.5 wt% ZrC alloy has a higher recrystallization temperature (1600 ℃-1700 ℃) than that of the rolled pure W (1200 ℃), W-0.5 wt%ZrC (1300 ℃), W-0.5 wt%HfC (1400-1500 ℃) and W-K-3wt%Re alloy fabricated by the same technology. The molecular dynamics simulation results indicated that solution Re atoms in W matrix can slow down the self-diffusion of W atoms and form dragging effect to delay the growth of W grain, moreover, the diffusion coefficient decrease with increasing Re content. In addition, the ZrC nanoparticles can pin the grain boundaries and dislocations effectively, preventing the recrystallization. Therefore, synergistic effect of solid solution Re element and dispersed ZrC nanoparticles significantly increase recrystallization temperature.

Transport of Some Solutes in Blood Plasma Through Poly(2-Hydroxyethyl Methacrylate) Hydrogel Membrane (혈장내 염의 Poly(2-Hydroxyethyl Methacrylate) 격막 투과현상)

  • Jee Jong Gi;Jhon Mu Shik;Ree Tai Kyue
    • Journal of the Korean Chemical Society
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    • v.22 no.5
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    • pp.304-310
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    • 1978
  • The relative permeabilities, distribution coefficients and diffusion coefficient of some salts which are important components in blood plasma through a poly(HEMA) membrane were measured. The crosslinker which was used for preparing the membrane was tetraethylene glycol dimethacrylate(TEGDMA), the weight percentage of the latter was about 2.8. We found that the diffusion coefficients ($D_m$) of the solutes decrease exponentially with increasing molecular weight, and also that $D_m$'s decrease linearly (except urea) with cylindrical radius (a). These facts were explained by a sieve pore flow model. The relative permeability and diffusion coefficient of urea at various temperature were larger than those of other solutes such as glycine, ${\beta}$-alanine, D-glucose, saccharose and maleic acid. The result indicates that the poly(HEMA) membrane might be suitable for hemodialysis application.

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Effect of AC Electric Fields on Counterflow Diffusion Flame of Methane (메탄의 대향류 확산화염에 대한 AC 전기장의 영향)

  • Choi, Byung-Chul;Kim, Hyung-Kuk;Chung, Suk-Ho
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.8
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    • pp.849-855
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    • 2012
  • The effect of electric fields on the response of diffusion flames in a counterflow has been investigated experimentally by varying the AC voltage and frequency. The result showed that the flame was stationary with high AC frequency above the threshold frequency, and it increased with the applied voltage and then leveled off at 35 Hz. Below the threshold frequency, however, the flame oscillated with a frequency that was synchronized with the applied AC frequency. This oscillation can be attributed to the ionic wind effect due to the generation of bulk flow, which arises from the momentum transfer by molecular collisions between neutral molecules and ions, where the ions in the reaction zone were accelerated by the Lorentz force.

Antimicrobial Effects of Essential Oils for Multidrug-Resistant Acinetobacter baumanii (다제내성 아시네토박터 바우마니의 에센셜 오일에 대한 항균효과)

  • Park, Chang-Eun;Kwon, Pil Seung
    • Korean Journal of Clinical Laboratory Science
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    • v.50 no.4
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    • pp.431-437
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    • 2018
  • Acinetobacter baumannii is categorized as a red alert pathogen that is increasingly associated with a high mortality rate in infected patients because of its resistance to extensive antibiotics. This study evaluated the antibacterial activities of some essential oils (tee tree, rosemary, and lavender oils) against 18 clinical isolates of multidrug-resistant A. baumannii (MRAB). The carbapenemase screening Hodge test showed that all 20 strains of A. baumannii were resistant to imipenem. The identification of multidrug-resistant microbes was carried out using the VITEK system. The antimicrobial activity of essential oils was tested by a disk diffusion method against MRAB. In the disk diffusion method, tea tree showed the largest increase in inhibition size compared to lavender oil, and rosemary had no antibacterial effect. These results proved the antimicrobial effect of multidrug resistance A. baumannii. Tee tree oil would be a useful alternative natural product for the treatment and prevention of most common human pathogens and MRAB infections. This is expected to be used as an antimicrobial agent, such as hand disinfectant using natural essential oil in the future.

Influence of Cholesterol Derivatives on the Several Physicochemical Properties of Oleic acid (Oleic acid의 여러 물리화학적 성질에 미치는 Cholesterol계 유도체의 영향)

  • Ahn, Beom-Shu
    • Journal of the Korean Applied Science and Technology
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    • v.36 no.3
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    • pp.813-820
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    • 2019
  • The influence of cholesterol on the physicochemical properties of the oleic acid was clarified through the measurements of density, viscosity, IR, $^1H$ NMR, self-diffusion coefficient for the oleic acid samples containing a small amount of additives such as cholesterol, cholestanol, cholestane, cholesteryl oleate, benzene, and ethanol. Cholesterol, possessing one OH group and one double bond in its molecular structure, largely increased the viscosity and reduced the self-diffusion coefficient and the intramolecular movement of oleic acid. Oleic acid forms a complex with cholesterol as well as with ethanol. On the basis of these complex formations and the existence of the clusters composed of oleic acid dimers, it was known the role and the fundamental mechanism of cholesterol to the intermolercular and intramolecular movements of oleic acid in the liquid state.

Combined Analysis Using Functional Connectivity of Default Mode Network Based on Independent Component Analysis of Resting State fMRI and Structural Connectivity Using Diffusion Tensor Imaging Tractography (휴지기 기능적 자기공명영상의 독립성분분석기법 기반 내정상태 네트워크 기능 연결성과 확산텐서영상의 트랙토그래피 기법을 이용한 구조 연결성의 통합적 분석)

  • Choi, Hyejeong;Chang, Yongmin
    • Journal of Korea Multimedia Society
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    • v.24 no.5
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    • pp.684-694
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    • 2021
  • Resting-state Functional Magnetic Resonance Imaging(fMRI) data detects the temporal correlations in Blood Oxygen Level Dependent(BOLD) signal and these temporal correlations are regarded to reflect intrinsic cortical connectivity, which is deactivated during attention demanding, non-self referential tasks, called Default Mode Network(DMN). The relationship between fMRI and anatomical connectivity has not been studied in detail, however, the preceded studies have tried to clarify this relationship using Diffusion Tensor Imaging(DTI) and fMRI. These studies use method that fMRI data assists DTI data or vice versa and it is used as guider to perform DTI tractography on the brain image. In this study, we hypothesized that functional connectivity in resting state would reflect anatomical connectivity of DMN and the combined images include information of fMRI and DTI showed visible connection between brain regions related in DMN. In the previous study, functional connectivity was determined by subjective region of interest method. However, in this study, functional connectivity was determined by objective and advanced method through Independent Component Analysis. There was a stronger connection between Posterior Congulate Cortex(PCC) and PHG(Parahippocampa Gyrus) than Anterior Cingulate Cortex(ACC) and PCC. This technique might be used in several clinical field and will be the basis for future studies related to aging and the brain diseases, which are needed to be translated not only functional connectivity, but structural connectivity.

Influence of Coating Materials and Emulsifiers on Nanoparticles in Manufacturing Process (코팅물질과 유화제가 나노입자 제조 및 안정성에 미치는 영향)

  • Kim, Byeong-Cheol;Chun, Ji-Yeon;Park, Young-Mi;Hong, Geun-Pyo;Lee, Si-Kyong;Choi, Mi-Jung
    • Food Science of Animal Resources
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    • v.32 no.2
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    • pp.220-227
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    • 2012
  • The objective of this study was to investigate the influence of emulsion processing with various homogenization treatments on the physical properties of nanoparticles. For the manufacturing of nanoparticles, by taking the emulsion-diffusion method, various coating materials, such as gum arabic, hydroxyethyl starch, polycarprolactone, paraffin wax, ${\kappa}$-carrageenan and emulsifiers like Tween$^{(R)}$60, Tween$^{(R)}$80, monoglyceride and Pluronic$^{(R)}$F68, were added into the emulsion system. Furthermore, the various speeds (7,000 rpm to 10,000 rpm), and times (15 s to 60 s) of homogenization were treated during the emulsion- diffusion process. NEO II homomixer was the most effective homogenizer for making nanoparticles as 51 nm ($D_{10}$) and 26 nm ($D_{50}$). To manufacture smaller nanoparticles, by using NEO II homomixer, 10,000 rpm of agitation speed, polycaprolactone as coating material, and Pluronic$^{(R)}$F68 as an emulsifier were the optimum operating conditions and components. For the stability of nanoparticles for 7 days, $20^{\circ}C$ of storage temperature was appropriate to maintain the particle size. From these results, the type of homogenizer, homogenization speed, homogenization time and storage temperature could affect the particle size. Moreover, type of coating materials and emulsifier also influenced the size and stability of the nanoparticles.