• Title/Summary/Keyword: 원자힘현미경

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Development of a 6-DOF Active Vibration Isolation System Using Voice Coil Motor (VCM을 이용한 6자유도 능동형 제진시스템 개발)

  • Gil, Hyeong-Gyeun;Kim, Kwang-San
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.20 no.7
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    • pp.637-643
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    • 2010
  • The paper is about the development of 6-DOF active vibration isolation systems using VCM. Firstly, formulate the vertical 3-DOF mathematical model under eccentric load, and compare the model with the case in which the center of mass is located at the centroid. And then, complete the 6-DOF mathematical model by formulating the horizontal 3-DOF mathematical model. Find main parameters by comparing the result of the frequency response test with simulation result on the model. Finally, achieve the performance of vibration isolation by applying loop shaping approach & feedforward controller.

Surface Properties of Glutathione Layer Formed on Gold Surfaces Interacting with ZrO2 (이산화지르코늄과 상호작용하는 금 표면 위의 글루타싸이온층 표면 물성)

  • Park, Jin-Won
    • Korean Chemical Engineering Research
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    • v.52 no.4
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    • pp.538-543
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    • 2014
  • It is investigated that that the physical properties of Glutathione layer formed on gold surfaces may make an effect on the distribution of either gold particle adsorbed to the $ZrO_2$ surface or vice versa with the adjustment of the electrostatic interactions. For the investigation, the atomic force microscope (AFM) was used to measure the surface forces between the surfaces as a function of the salt concentration and pH value. The forces were quantitatively analyzed with the Derjaguin-Landau-Verwey-Overbeek (DLVO) theory to estimate the surface potential and charge density of the surfaces for each condition of salt concentration and pH value. The estimated-value dependence on the salt concentration was described with the law of mass action, and the pH dependence was explained with the ionizable groups on the surface. The salt concentration dependence of the surface properties, found from the measurement at pH 4 and 8, was consistent with the prediction from the law. It was found that the Glutathione layer had higher values for the surface charge densities and potentials than the zirconium dioxide surfaces at pH 4 and 8, which may be attributed to the ionized-functional-groups of the Glutathione layer.

Electrostatic Interaction between Mercaptoundecanoic-acid Layers on Gold and ZrO2 Surfaces (금 표면 위의 메르캡토언데카노익산층 표면과 이산화지르코늄 표면 사이의 정전기적 상호작용)

  • Park, Jin-Won
    • Applied Chemistry for Engineering
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    • v.25 no.6
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    • pp.607-612
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    • 2014
  • The physical properties of mercaptoundecanoic-acid layer formed on gold surfaces, which may affect the distribution of either gold particles adsorbed to the zirconium dioxide surface or vice versa, were investigated. To conduct this investigation, the surface forces were measured between the surfaces with respect to the salt concentration and pH value using atomic force microscope (AFM). The forces were quantitatively converted by the Derjaguin-Landau-Verwey-Overbeek (DLVO) theory to the surface potential and charge density of surfaces. The converted-value dependence on the salt concentration and pH was described with the law of mass action, and the dependence was consistent with the theoretical prediction. It was found that the mercaptoundecanoic-acid layer had higher values for the surface charge densities and potentials than the $ZrO_2$ surfaces, which may be attributed to the ionized-functional-groups of the mercaptoundecanoic-acid layer.

Surface Properties of Glutathione Layer Formed on Gold Surfaces (금 표면 위에 형성된 글루타싸이온 층의 표면 물성)

  • Park, Jin-Won
    • Korean Chemical Engineering Research
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    • v.50 no.2
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    • pp.379-384
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    • 2012
  • It is investigated that that the physical properties of Glutathione layer formed on gold surfaces may make an effect on the distribution of either gold particle adsorbed to the $TiO_2$ surface or vice versa with the adjustment of the electrostatic interactions. For the investigation, the atomic force microscope (AFM) was used to measure the surface forces between the surfaces as a function of the salt concentration and pH value. With the Derjaguin-Landau-Verwey-Overbeek (DLVO) theory, the forces were quantitatively analyzed to acquire the surface potential and charge density of the surfaces for each salt concentration and each pH value. The surface potential and charge density dependence on the salt concentration was described with the law of mass action, and the pH dependence was explained with the ionizable groups on the surface. The salt concentration dependence of the surface properties, found from the measurement at pH 8 and 11, was consistent with the prediction from the law. It was found that the Glutathione layer had higher values for the surface charge densities and potentials than the titanium dioxide surfaces at pH 8 and 11, which may be attributed to the ionized-functional-groups of the Glutathione layer.

Electrostatic Interaction between Zirconia and 11-Mercaptoundecylphosphoric-acid Layer Formed on Gold Surfaces (지르코니아와 금 표면 위의 메르캡토언데실인산층의 정전기적 상호작용)

  • Park, Jin-Won
    • Korean Chemical Engineering Research
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    • v.56 no.5
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    • pp.625-630
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    • 2018
  • The electrostatic interactions were investigated between the zirconia and the 11-Mercaptoundecylphosphoric-acid layer formed on gold surfaces for their complex structures. For the investigation, the atomic force microscope was used to measure the surface forces between the surfaces as a function of the salt concentration and pH value. The forces were analyzed with the Derjaguin-Landau-Verwey-Overbeek theory to estimate the potential and charge density of the surfaces for each condition. The concentration dependence of the surface properties, found from the measurement at pH 4 and 8, was consistent with the prediction from the law of mass action. The pH dependence was explained with the ionizable groups on the surface. It was found that the 11-Mercaptoundecylphosphoric-acid layer had higher values for the surface charge densities and potentials than the zirconia surfaces at pH 4 and 8, which may be attributed to the ionized-functional-groups of the layer.

Study of relationship between diameter of carbon nanotubes and surface morphology of $Al_2O_3$ supporting layer

  • Kim, Su-Yeon;Song, U-Seok;Choe, Won-Cheol;Jeong, U-Seong;Jeon, Cheol-Ho;Park, Jong-Yun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.72-72
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    • 2010
  • 탄소나노튜브(carbon nanotubes : CNTs)는 뛰어난 전기적, 물리적인 특성을 가지고 있기 때문에 다양한 분야에서 이를 활용하려는 노력들이 활발히 이루어지고 있다. CNTs의 전기적인 특성은 직경에 의해 결정되므로, 직경을 균일하게 제어하는 일이 CNTs를 기반으로 한 전자소자 응용에 가장 중요한 사항이라 할 수 있다. 일반적으로 화학기상증착법(chemical vapor deposition, CVD)으로 합성된 CNTs의 직경은 촉매의 크기에 의존하기 때문에, 촉매의 크기를 제어하기 위한 다양한 연구들이 활발히 진행되고 있다[1-3]. 하지만 CNTs의 성장온도 근처에서 촉매 입자는 표면 확산(surface diffusion)에 의해 응집(agglomeration)되기 때문에 작고 균일한 크기의 촉매를 얻기 어렵다. 본 연구에서는 Si(001) 기판 위에 지지층(supporting layer)인 Al의 두께를 변화시켜 증착하고, 열적산화과정을 통해 $Al_2O_3$ 층을 형성한 후 Fe을 증착하여 CNTs를 합성하였다. $Al_2O_3$ 지지층과 Fe 촉매입자의 구조와 화학적 상태를 원자힘현미경 (atomic force microscopy, AFM), 주사전자현미경 (scanning electron microscopy, SEM), 투과전자현미경 (transmission electron microscopy, TEM), X-선 광전자 분광기(X-ray photoelectron spectroscopy)를 통해 분석하였고, 성장된 CNTs는 SEM, TEM, 라만 분광법 (Raman spectroscopy)을 통해 분석하였다. 그 결과, $Al_2O_3$ 층은 두께에 따라 각기 다른 표면 거칠기(RMS roughness)와 결정립(grain)의 크기를 갖게 되며, 이러한 표면구조가 Fe 촉매입자의 표면확산에 의한 응집에 관여하여 CNTs의 직경에 영향을 미치는 것을 확인하였다. 또한 $Al_2O_3$ 지지층의 두께가 15 nm인 경우, Fe의 응집현상이 억제되어 좁은 직경분포를 지닌 고순도 단일벽 탄소나노튜브(Single-walled CNTs)가 성장되는 것을 확인하였다.

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Synthesis of Graphene Nanoribbon via Ag Nanowire Template

  • Lee, Su-Il;Kim, Yu-Seok;Song, U-Seok;Kim, Seong-Hwan;Jeong, Sang-Hui;Park, Sang-Eun;Park, Jong-Yun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.565-565
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    • 2012
  • 그래핀(Graphene) 기반의 전계효과 트랜지스터(Field effect transistor) 응용에 있어, 가장 핵심적인 도전과제중 하나는 에너지 밴드갭(Energy bandgap)을 갖는 그래핀 채널의 제작이다. 그래핀은 에너지 밴드갭이 존재하지 않는 반금속(semi metal)의 특성을 지니고 있어, 그 본래의 물리적 특성을 지니고서는 소자구현에 어려움이 있다. 그러나 폭이 수~수십 나노미터인 그래핀 나노리본(Graphene nanoribbon)의 경우 양자구속효과(Quantum confinement effect)에 의하여 에너지 밴드갭이 형성되며, 갭의 크기는 리본의 폭에 반비례한다는 연구결과가 보고된 바 있다. 이러한 이유에서, 효과적이며 실현가능한 그래핀 나노리본의 제작은 필수적이다. 본 연구에서는 은 나노 와이어(Ag nanowire)를 기반으로 한 그래핀 나노리본의 합성을 연구하였다. 은 나노와이어를 열화학 기상증착법(Thermal chemical vapor deposition)을 이용, 아세틸렌(Acetylene, C2H2) 가스를 탄소공급원으로 하여 그래핀을 나노와이어 표면에 합성하였다. 합성과정에서 구조에 영향을 미치는 요인인 합성온도와 가스의 비율, 압력 등을 조절하여 최적화된 합성조건을 확립하였다. 합성된 나노리본의 특성을 라만분광법(Raman spectroscopy)과 주사전자 현미경(Scanning electron microscopy), 투과전자현미경(Transmission electron microscopy), 원자힘 현미경(Atomic force microscopy)를 통하여 분석하였다.

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금속박막 패턴과 InGaN/GaN 전광소자의 표면플라즈몬 효과

  • Lee, Gyeong-Su;Kim, Seon-Pil;Kim, Eun-Gyu
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.335-335
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    • 2012
  • 높은 효율의 InGaN/GaN 전광소자는 현대 조명 산업에 필수적인 역할을 하고 있다. 전광소자의 효율을 높이는 데에는 여러가지 한계들이 있다. 예를 들면 높은 전류에서의 효율 저하, GaN의 전위결함에 의한 비발광 재결합의 발생 등이 있다. 이러한 한계를 극복하고자 InGaN/GaN 전광소자의 효율을 높이기 위해 사파이어 기판의 표면을 거칠게 바꾸는 방법, 무분극 전광소자, 표면 플라즈몬 등 여러가지 많은 방법들이 개발되고 있다. 본 실험에서는 유기금속화학증착 방법을 이용하여 사파이어 기판위에 Si이 도핑된 n-type GaN를 3.0 um 증착 하였고 그 위에는 9층의 양자 우물 층을 쌓았다. 마지막으로 위층은 Mg 이 도핑된 p-type GaN를 200 nm 증착 하여 소자를 형성하였다. 포토리소그래피 공정과 에칭공정을 통하여 7 um 인 선 패턴을 가진 시료를 완성하였다. 투과 전자 현미경의 측정 결과 맨 위층인 p-GaN의 에칭된 깊이는 175 nm 이였다. 금속박막을 증착하기 위해 열증착 방법으로 금과 은의 박막을 두께를 달리하여 0~40 nm증착 하였다. 금과 은의 두께에 따른 광발광 측정 결과 은(Ag)박막만 40 nm 일 경우 금속박막이 없는 시료보다 광발광 효율이 7배 증가하였고 금 10 nm와 은 30 nm 인 경우에는 3.5배 증가하였다. 또한 패턴의 폭에 따른 광발광 증가를 알아보고 광발광 증가가 일어나기 위한 최적의 패턴조건을 알고자 폭을 5, 10 um 달리하였고, 원자간 힘 현미경과 전자현미경을 이용하여 에칭된 패턴의 폭과 두께를 확인하였다. 본 실험을 통해 금과 은박막에 의한 표면플라즈몬 효과와 광발광 효율증대에 대해 토의할 것이다.

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Errors of Surface Image Due to the Different Tip of Nano-Indenter (나노인덴터 압입팁의 특성에 따른 표면 이미지 오차 연구)

  • Kim, Soo-In;Lee, Chan-Mi;Lee, Chang-Woo
    • Journal of the Korean Vacuum Society
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    • v.18 no.5
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    • pp.346-351
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    • 2009
  • Due to the decrease of line width and increase of the integration level of the device, it is expected that 'Bottom-up' method will replace currently used 'Top-down' method. Researches about 'Bottom-up' device production such as Nanowires and Nanobelts are widely held on. To utilize these technologies in devices, properties of matter should be exactly measured. Nano-indenters are used to measure the properties of nano-scale structures. Additionally, Nano-indenters provide AFM(Atomic Force Microscopy) function to get the image of the surface and get physical properties for exact position of nano-structure using this image. However, nano-indenter tips have relatively much bigger size than ordinary AFM probes, there occurs considerable error in surface image by Nano-Indenter. Accordingly, this research used 50nm Berkovich tip and 1um $90^{\circ}$ Conical tip, which are commonly used in Nano-Indenter. To find out the surface characteristics for each kind of tip, we indented the surface of thin layer by each tip and compared surface image and indentation depth. Then, we got image of 100nm-size structure by surface scanning using Nano-Indenter and compared it with surface image gained by current AFM technology. We calculated the errors between two images and compared it with theoretical error.

Biomechanical Characterization with Inverse FE Model Parameter Estimation: Macro and Micro Applications (유한요소 모델 변수의 역 추정법을 이용한 생체의 물성 규명)

  • Ahn, Bum-Mo;Kim, Yeong-Jin;Shin, Jennifer H.;Kim, Jung
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.33 no.11
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    • pp.1202-1208
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    • 2009
  • An inverse finite element (FE) model parameter estimation algorithm can be used to characterize mechanical properties of biological tissues. Using this algorithm, we can consider the influence of material nonlinearity, contact mechanics, complex boundary conditions, and geometrical constraints in the modeling. In this study, biomechanical experiments on macro and micro samples are conducted and characterized with the developed algorithm. Macro scale experiments were performed to measure the force response of porcine livers against mechanical loadings using one-dimensional indentation device. The force response of the human liver cancer cells was also measured by the atomic force microscope (AFM). The mechanical behavior of porcine livers (macro) and human liver cancer cells (micro) were characterized with the algorithm via hyperelastic and linear viscoelastic models. The developed models are suitable for computing accurate reaction force on tools and deformation of biomechanical tissues.