• Title/Summary/Keyword: Particle Cluster

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α-Synuclein Disrupts Vesicle Fusion by Two Mutant-Specific Mechanisms

  • Yoo, Gyeongji;An, Hyeong Jeon;Yeou, Sanghun;Lee, Nam Ki
    • Molecules and Cells
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    • v.45 no.11
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    • pp.806-819
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    • 2022
  • Synaptic accumulation of α-synuclein (α-Syn) oligomers and their interactions with VAMP2 have been reported to be the basis of synaptic dysfunction in Parkinson's disease (PD). α-Syn mutants associated with familial PD have also been known to be capable of interacting with VAMP2, but the exact mechanisms resulting from those interactions to eventual synaptic dysfunction are still unclear. Here, we investigate the effect of α-Syn mutant oligomers comprising A30P, E46K, and A53T on VAMP2-embedded vesicles. Specifically, A30P and A53T oligomers cluster vesicles in the presence of VAMP2, which is a shared mechanism with wild type α-Syn oligomers induced by dopamine. On the other hand, E46K oligomers reduce the membrane mobility of the planar bilayers, as revealed by single-particle tracking, and permeabilize the membranes in the presence of VAMP2. In the absence of VAMP2 interactions, E46K oligomers enlarge vesicles by fusing with one another. Our results clearly demonstrate that α-Syn mutant oligomers have aberrant effects on VAMP2-embedded vesicles and the disruption types are distinct depending on the mutant types. This work may provide one of the possible clues to explain the α-Syn mutant-type dependent pathological heterogeneity of familial PD.

DFT Investigation of Phase Stability of Magnesium Alanate (Mg(AlH4)2) for Reversible Hydrogen Storage (가역적 수소 저장을 위한 마그네슘 알라네이트 (Mg(AlH4)2) 나노 입자 활용 : 밀도범함수이론 연구)

  • DONG-HEE LIM;EUNMIN BAE;YOUNG-SOO HAN
    • Transactions of the Korean hydrogen and new energy society
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    • v.34 no.2
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    • pp.169-177
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    • 2023
  • Phase stability diagrams were constructed for magnesium alanate (Mg(AlH4)2) nanoparticles to investigate the reversible hydrogen storage reaction by using density functional theory. Our findings indicate that bulk Mg(AlH4)2 shows favorable hydrogen release, but unfavorable hydrogen uptake (adsorption) reactions. However, for Mg(AlH4)2 nanoparticles, it was observed that hydrogen release and recharge can be achieved by controlling the particle size and temperature. Furthermore, by predicting the decomposition phase diagram of Mg(AlH4)2 nanoparticles with varying hydrogen partial pressure, it was discovered that reversible dehydrogenation reactions can occur even in relatively large nanoparticles by controlling the hydrogen partial pressure.

A PIC Simulation Study for Electron Preacceleration at Weak Quasi-Perpendicular Galaxy Cluster Shocks

  • Ha, Ji-Hoon;Kim, Sunjung;Ryu, Dongsu;Kang, Hyesung
    • The Bulletin of The Korean Astronomical Society
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    • v.46 no.1
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    • pp.36.2-36.2
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    • 2021
  • In the outskirts of galaxy clusters, weak shocks with Ms < ~3 appear as radio relics where the synchrotron radiation is emitted from cosmic-ray (CR) electrons. To understand the production of CR electrons through the so-called diffusive shock acceleration (DSA), the electron injection into the DSA process at shocks in the hot intracluster medium (ICM) has to be described. However, the injection remains as an unsolved, outstanding problem. To explore this problem, 2D Particle-in-Cell (PIC) simulations were performed. In this talk, we present the electron preacceleration mechanism mediated by multi-scale plasma waves in the shock transition zone. In particular, we find that the electron preacceleration is effective only in the supercritical shocks, which have the sonic Mach number Ms > Mcrit ≈ 2.3 in the high-beta (β~100) plasma of the ICM, because the Alfven ion cyclotron instability operates and hence multi-scale plasma waves are induced only in such supercritical shocks. Our findings will help to understand the nature of radio relics in galaxy clusters.

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A study for High Efficiency Dewatering of Sludge Contained Fine Particles (미세입자(微細粒子)를 함유(含有)한 슬러지의 고효율(高效率) 탈수(脫水) 연구)

  • Lee, Jung-Eun;Lee, Jae-Keun
    • Resources Recycling
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    • v.15 no.4 s.72
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    • pp.36-43
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    • 2006
  • There was some difficulty dewatering properties due to small porosity diameter of cake, when pigment sludge contained fine particle was formed by cake under the dewatering. It was difficult to dewater the sludge with fine particles with the conventional mechanical dewatering method. This study was to improve the dewatering rate as discharging the water from porosity of cake easily, supplying the low heat to the cake layer. Thermal dewatering equipment of piston type to keep up constant temperature on the cake was set up and relative experiment was conducted for sludge of 200 g with fine pigment particle. As test results. filtration of 176.8 g, cake weight of 19.4 g, cake thickness of 4.2 mm was measured, and it was analyzed that the water content of cake was 47 wt% and dewatering velocity, which moaned the residual d교 sloid amount per dewatering area, was $2.1DS\;m^{2}{\cdot}cycle$. This results showed that filtration increased, cake weight and thickness decreased and dewatering velocity increased against mechanical dewatering method. And water content of cake decreased about 30%, so the result which dewatering rate improved was drew generally. The reason is that the inner vapor pressure working at the cake porosity increased as applying the low heat to the cake layer, which lead to discharge the water from porosity easily. Therefore, this study was estimated by the useful technology for sludge reduction.

Synthesis, Characterizations, and Applications of Metal-Ions Incorporated High Quality MCM-41 Catalysts (고품질 금속 이온 첨가 MCM-41 분자체 촉매의 제법, 특성화 및 응용 반응)

  • Lim, Steven S.;Haller, Gary L.
    • Korean Chemical Engineering Research
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    • v.51 no.4
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    • pp.443-454
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    • 2013
  • Various metal ions (transition and base metals) incorporated MCM-41 catalysts can be synthesized using colloidal and soluble silica with non-sodium involved process. Transition metal ion-typically $V^{5+}$, $Co^{2+}$, and $Ni^{2+}$-incorporated MCM-41 catalysts were synthesized by isomorphous substitution of Si ions in the framework. Each incorporated metal ion created a single species in the silica framework, single-site solid catalyst, showing a substantial stability in reduction and catalytic activity. Radius of pore curvature effect was investigated with Co-MCM-41 by temperature programmed reduction (TPR). The size of metallic Co clusters, sub-nanometer, could be controlled by a proper reduction treatment of Co-MCM-41 having different pore size and the initial pH adjustment of the Co-MCM-41 synthesis solution. These small metallic clusters showed a high stability under a harsh reaction condition without serious migration, resulting from a direct anchoring of small metallic clusters to the partially or unreduced metal ions on the surface. After a complete reduction, partial occlusion of the metallic cluster surface by amorphous silica stabilized the particles against aggregations. As a probe reaction of particle size sensitivity, carbon single wall nanotubes (SWNT) were synthesized using Co-MCM-41. A metallic cluster stability test was performed by CO methanation using Co- and Ni-MCM-41. Methanol and methane partial oxidations were carried out with V-MCM-41, and the radius of pore curvature effect on the catalytic activity was investigated.

Investigation on the SARS-CoV-2 RNA and PM-2.5 inside Public Transportations in Seoul (서울시 대중교통 내 SARS-CoV-2 RNA와 PM-2.5 오염도 실증연구)

  • Seo, Minjeong;Hong, Juhee;Rhee, Hojun;Park, Jinsol;Lim, Hakmyeong;Park, Myung Kyu;Min, Byungchul;Park, Eun Sun;Lee, Sanghoon;Kim, Hanjun;Ha, Kwangtae;Kwon, Seungmi;Shin, Jinho;Lee, Jaein;Hwang, Youngok;Oh, Younghee;Shin, Yongseung
    • Particle and aerosol research
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    • v.18 no.2
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    • pp.23-35
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    • 2022
  • Recently, passengers using public transport are concerned about the effects of COVID-19 and fine dust. Therefore, from February 2020 to February 2021, we investigated whether SARS-CoV-2 RNA was detected even after disinfection in 55 public transportation places visited by confirmed patients in Seoul. 34 air samples and 702 object surface samples were collected and tested with RT-PCR, one surface sample was positive. In addition, preemptive investigations were conducted in 22 subway trains that passengers were being on board at that time. 1,018 preemptive tests were performed, and all were negative. Although PM-2.5 is dangerous in itself, it can be a potential carrier of viruses. It seemed that a solution was needed as one line continuously exceeded the criteria of PM-2.5. Through this study, it is judged that cluster infection in public transportation can be prevented if efforts to reduce the concentration of fine dust, appropriate disinfection management, and personal disinfection such as wearing a mask in public transportations.

A study of origins and characteristics of metallic elements in PM10 and PM2.5 at a suburban site in Taean, Chungchengnam-do (충청남도 태안 교외대기 PM10, PM2.5의 중금속 농도 특성과 기원 추적연구)

  • Sangmin Oh;Suk-Hee Yoon;Jaeseon Park;Yu-Jung Heo;Soohyung Lee;Eun-Jin Yoo;Min-Seob Kim
    • Particle and aerosol research
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    • v.19 no.4
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    • pp.111-128
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    • 2023
  • Chungcheongnam-do has various emission sources, including large-scale facilities such as power plants, steel and petrochemical industry complexes, which can lead to the severe PM pollution. Here, we measured concentrations of PM10, PM2.5, and its metallic elements at a suburban site in Taean, Chungcheongnam-do from September 2017 to June 2022. During the measurement period, the average concentrations of PM10 and PM2.5 were 58.6 ㎍/m3 (9.6~379.0 ㎍/m3) and 35.0 ㎍/m3 (6.1~132.2 ㎍/m3), respectively. The concentration of PM10 and PM2.5 showed typical seasonal variation, with higher concentration in winter and lower concentration in summer. When high concentrations of PM2.5 occurred, particulary in winter, the fraction of Zn and Pb components considerably increased, indicating a significant contribution of Zn and Pb to high-PM2.5 concentration. In addition, Zn and Pb exhibited the highest correlation coefficient among all other metallic elements of PM2.5. A backward trajectory cluster analysis and CPF model were performed to examine the origin of PM2.5. The high concentration of PM2.5 was primarily influenced by emissions from industrial complexes located in the northeast and northwest areas.

An Experimental study on the human's physiological in Smart Textile Materials by Using Medical Infrared Thermo graphic Imaging (적외선 체열 영상 진단법을 이용한 스마트 섬유소재와 휴대폰 통화량에 따른 인체 생리반응 연구)

  • Lee Tae-il;Lee Su-jeong;Lee Kyung-mi
    • Journal of the Korean Society of Clothing and Textiles
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    • v.29 no.7 s.144
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    • pp.918-925
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    • 2005
  • The following are the results from the infrared body temperature image test to verify the changes in facial temperature according to call duration with a cellular phone. As for the body temperatures, it appears to be the mean value at the upper central point of phone's battery among 7 different points that are measured, and to be the highest at srernocleido-mastoid and scapular trapezius muscle triangle zone$(34.25^{\circ}C\; and\;34.05^{\circ}C\;each)$. The changes of body temperature according to the time duration shows that the body temperature rises according to the length of phone use because of the heat emitted from the battery. As for the temperature changes according to blocking materials, the one without processing appears to be higher in the mean temperature compared to the others that are processed, NSS(Nano Silver Silk) and NSG(Nano Silver Silk Gold) appear to be the lowest in the temperature to show the best blocking property. As for the temperature changes according to measuring points, it appears to be the highest at P4, P5 with all materials, and one with NSG to be the lowest at Pl, P2, P3, and one with NSS to be the lowest at P3, P4, P5, P6, which is due to the thermal conduction of Au and Ag. And the mean temperature at each point appears to be different according to the materials. Therefore, the study conducted with human participants requires a proper particle size of it which would not penetrate cellular tissues and a proper binder and binding treatment for it, to prevent the physical fatigues and the potential diseases. However, it is highly required for back-up researches to verify various aspects in applying nano silver to textile products.

Chemical Properties of Indoor Individual Particles Collected at the Daily Behavior Spaces of a Factory Worker

  • Ma, Chang-Jin;Kang, Gong-Unn;Sakai, Takuro
    • Asian Journal of Atmospheric Environment
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    • v.11 no.2
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    • pp.122-130
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    • 2017
  • The main purpose of the study was to clarify the properties of individual particles collected at each behavior space of a factory worker. The samplings of size-segregated ($PM_{2.1-1.1}$ and $PM_{4.7-3.3}$) indoor particles were conducted at three different behavior spaces of a factory worker who is engaged in an auto parts manufacturing plant (i.e., his home, his work place in factory, and his favorite restaurant). Elemental specification (i.e., relative elemental content and distribution in and/or on individual particles) was performed by a micro-PIXE system. Every element detected from the coarse particulate matters of home was classified into three groups, i.e., a group of high net-counts (Na, Al, and Si), a group of intermediate net-counts (Mg, S, Cl, K, and Ca), and a group of minor trace elements (P, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, and Pb). The results of EF for $PM_{4.7-3.3}$ in home indicated that several heavy metals were generated from the sources within the house itself. An exceptional feature shown in the individual particles in workplace is that Cr, Mn, and Co were clearly detected in both fine and coarse particles. Cluster analysis suggested that the individual coarse particles ($PM_{4.7-3.3}$) collected at the indoor of factory were chemically heterogeneous and they modified with sea-salt, mineral, and artificially derived elements. The principal components in individual coarse particles collected at restaurant were sea-salt and mineral without mixing with harmful trace elements like chromium and manganese. Compared to the indoor fine particles of home and restaurant, many elements, especially, Cl, Na, Cr, Mn, Pb, and Zn showed overwhelmingly high net-counts in those of factory.

반도체 세정 공정용 가스 클러스터 장비의 클러스터 발생 특성 분석

  • Choe, Hu-Mi;Kim, Ho-Jung;Yun, Deok-Ju;Lee, Jong-U;Gang, Bong-Gyun;Kim, Min-Su;Park, Jin-Gu;Kim, Tae-Seong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.39-39
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    • 2011
  • 반도체 생산의 주요 공정 중 하나인 세정 공정은 공정 중 발생하는 여러 가지 부산물에 의한오염을 효과적으로 제거하여 수율 향상에 큰 영향을 미친다. 현재 주로 쓰이는 세정 공정은 습식 세정 공정으로 화학 약품을 이용하지만 패턴 손상 및 웨이퍼 대구경화에 따른 문제 등이 대두되어 이를 대체할 세정 공정의 도입이 요구되고 있다. 이에 따라 건식 세정에 대한 관심이 증가하고 있으며 에어로졸 세정이 대표적 공정으로 개발 되었으나 마이크로 단위의 발생 에어로졸 입경으로 인해 패턴 손상 문제를 해결하지 못하였다. 이러한 문제점을 극복하기 위하여 응축에 의해 형성되는 입자 크기를 줄이는 것에 관한 연구가 진행되어 왔고, 대응 방안으로 개발된 것이 가스 클러스터 세정이다. 가스 클러스터란 작동 기체의 분자가 수십, 수백 개 뭉쳐있는 형태 (cluster)를 뜻하며 이 때 형성된 클러스터는 수 nm 크기를 가진다. 그리고 짧은 시간의 응축에 의해 수십 nm 크기까지 성장하게 된다. 즉, 입자로 성장할 수 있는 시간과 환경을 형성하지 않음으로써 작은 크기의 클러스터에 의해 패턴 사이의 오염물질을 물리적으로 제거하고 다시 기체상 물질로 환원되어 부산물을 남기지 않는 공정이다. 이러한 작동 환경을 조성하기 위해서는 진공도와 노즐 출구 속도에 대한 설계 단계부터의 이론적 연구를 통한 입자 크기 예측과 세정 조건에 따라서 발생하는 클러스터의 크기 분포 특성을 측정하는 것이 필수적이다. 따라서 본 연구에서는 실시간 저압 환경에서의 측정이 가능하며, 다양한 크기의 입자를 실시간으로 측정할 수 있는 particle beam mass spectrometer (PBMS)를 이용하여 세정 공정 중 발생하는 클러스터의 크기 분포를 측정하는 연구를 수행하였다. 클러스터의 측정은 노즐에 유입되는 유량과 냉매 온도를 변수로 하여 수행하였다. 각각의 조건에 따라서 최빈값은 오차범위 내에서 일정한 것을 확인하였으며, 50 nm 이하의 값으로 가스 클러스터 공정이 패턴 손상 없이 오염입자를 제거할 수 있음을 실험적으로 확인할 수 있었다. 또한 유량의 증가에 따라 세정에 사용되는 클러스터의 입경이 증가하며, 냉매 온도가 낮아질수록 클러스터 입경이 증가하는 경향을 확인할 수 있었다. 클러스터 크기는 오염 입자와의 충돌에 의해 작용하는 힘으로 오염입자를 제거하는 메커니즘을 사용하는 가스 클러스터 세정 장치에 있어 중요성이 크다 할 수 있으며 추후 지속적 연구에 의한 세정 기술의 최적화가 기대된다.

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