• Title/Summary/Keyword: nano structure

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Soft Mold Imprinting Fabrication of Anti-reflection Film using Self-Organized Nanostructure Polymer Surfaces Irradiated by Ion Beams (이온빔 처리된 폴리머 표면의 자가나노구조화를 이용한 반사방지 필름 제조용 소프트 몰드 임프린팅 연구)

  • Lee, Seunghun;Byeon, Eun-Yeon;Choi, Juyeon;Jung, Sunghoon;Yu, Byeong-Gil;Kim, Do-Geun
    • Journal of the Korean institute of surface engineering
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    • v.50 no.6
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    • pp.480-485
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    • 2017
  • Soft mold imprinting method that uses nanostructured polymer mold was investigated for anti-reflection film fabrication. The nanostructured soft mold was polyethylene terephthalate(PET) irradiated by oxygen ion beams. The collisional energy transfer between oxygen ion and the polymer surface induced cross-linking and scission reactions, resulting in self-organized nanostructures with regular patterns of the wavenumber of $5{\mu}m^{-1}$. Post processes including ultra-violet curable resin coating and delamination fabricated anti-reflection films. The imprinted resin surface also showed the consistent wavenumber, $5{\mu}m^{-1}$. Pristine PET, oxygen ion beam treated PET, and imprinted replica sample showed total transmittance of 91.04, 93.25, and 93.57-93.88%, respectively.

Recent research trends on Bio-MEMS (Bio-MEMS분야의 최근 연구동향)

  • Park, Se-Kwang;Yang, Joo-Ran
    • Journal of Sensor Science and Technology
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    • v.19 no.4
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    • pp.259-270
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    • 2010
  • MEMS(micro electro mechanical systems) is a technology for the manufacture hyperfine structure, as a micro-sensor and a driving device, by a variety of materials such as silicon and polymer. Many study for utilizing the MEMS applications have been performed in variety of fields, such as light devices, high frequency equipments, bio-technology, energy applications and other applications. Especially, the field of Bio-MEMS related with bio-technology is very attractive, because it have the potential technology for the miniaturization of the medical diagnosis system. Bio-MEMS, the compound word formed from the words 'Bio-technology' and 'MEMS', is hyperfine devices to analyze biological signals in vitro or in vivo. It is extending the range of its application area, by combination with nano-technology(NT), Information Technology(IT). The LOC(lab-on-a-chip) in Bio-MEMS, the comprehensive measurement system combined with Micro fluidic systems, bio-sensors and bio-materials, is the representative technology for the miniaturization of the medical diagnosis system. Therefore, many researchers around the world are performing research on this area. In this paper, the application, development and market trends of Bio-MEMS are investigated.

H2 gas sensing characteristics of SnO2 nano-powdersprepared by homogeneous precipitation method (균일침전법을 이용한 SnO2 나노분말의 H2 감지 특성)

  • Kim, Yeong-Bok;Lee, Woon-Young;Park, Jin-Seong
    • Journal of Sensor Science and Technology
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    • v.17 no.5
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    • pp.361-368
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    • 2008
  • Nanosized $SnO_2$ particles were synthesized by homogeneous precipitation method using tin chloride ($SnCl_4{\cdot}5H_{2}O$) and urea ($CO(NH_2)_2$). The powders were heated at $500^{\circ}C$ and $600^{\circ}C$ for 2h. The crystal structure, microstructure, thermal behavior, specific surface area were analyzed using XRD, FE-SEM, TGA and BET, respectively. The initial resistance and the $H_2$ sensing properties were measured as a function of ${Sb_2}{O_3}$ and Pd doping concentrations. The resistance was decreased with the addition of ${Sb_2}{O_3}$ and the sensitivity for $H_2$ gas was increased with the addition of Pd. Thus, the optimum $H_2$ gas sensing property was obtained in the 0.25.mol% ${Sb_2}{O_3}$ and 1.w% added $SnO_2$ powders.

Comparison on commercial simulators for nano-structure device simulation- For ISE-TCAD and Micro-tec - (나노 구조 소자 시뮬레이션을 위한 상용 시뮬레이터의 비교 분석 - ISE-TCAD와 Micro-tec을 중심으로 -)

  • 심성택;임규성;정학기
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.6 no.1
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    • pp.103-108
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    • 2002
  • The metal-oxide-semiconductor field-effect transistor(MOSFET) has undergone many changes in the last decade In response to the constant demand for increased speed, decreased power, and increased packing density. The state -of-the-art simulation programs are developed by engineers and scientists. This paper has compared commercial programs of Micro-tec and ISE-TCAD in device simulation. This paper investigates LDD MOSFET using two simulators. Bias condition is applied to the devices with gate lengths(Lg) 180㎚. We have presented MOSFET's characteristics such as I-V characteristic and electric field, and compared Micro-tec with ISE TCAD.

A Study on the Hybrid-ECAP Process to Produce Ultra-Fine Materials (초미세 결정립 조직을 만들기 위한 복합전단가공법에 관한 연구)

  • Lee, Ju-Hyun;Lee, Jin-Ho
    • Journal of the Korea Institute of Military Science and Technology
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    • v.11 no.4
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    • pp.83-91
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    • 2008
  • The development of the equal channel angular pressing(ECAP) process in metals has recently provided a feasible solution to produce ultra-fine or nano-grained bulk materials with tailored material properties. However, ECAP process is difficult to scale up commercially due to requirements of an excessive load. In this paper, a new Hybrid-ECAP process with torsional die is considered to obtain materials of ultra-fine grain structure under low forming load. An upper bound analysis and numerical simulation (DEFORM 3D, a commercial FEM code) are carried out on the torsional die. By the upper bound analysis, analytical expression for the compression force and rotation speed are obtained. By the FEM analysis, the distribution of strain, stress and deformation are obtained. These results show that the Hybrid-ECAP is a useful process because this process can obtain the homogeneous deformations with relatively low forming load. Additionally, due to decreased forming load, die life can be improve.

Process Development for Enhancement of High Temperature Thermoelectric Properties in a p-Type Skutterudite (P-형 Skutterudite 소재의 고온 열전물성 제어를 위한 공정 개발)

  • Liu, Peng Ju;Nou, Chang Wan;Choi, Soon-Mok
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.33 no.6
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    • pp.495-499
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    • 2020
  • Power factor improvement at high temperatures has been a major research topic for the development of skutterudite thermoelectric materials. Here, we attempted to optimize the process parameters for manufacturing skutterudite materials, especially for p-type systems. We focused on the effect of aging time variation to maximize the high-temperature performance of the Ce-filled Fe3CoSb12 skutterudite system. The optimized aging time was concluded to be a key parameter for the formation of single-phase nanostructures in this p-type skutterudite system. The optimized condition was effective in reducing the bipolar effect at high temperature ranges by increasing the carrier concentration in the p-type system. To confirm the conclusions, the electrical conductivity, Seebeck coefficient, and power factor were measured. The results matched well with the microstructure and with those of an XRD analysis performed for the system.

A study of DSC using Ultrasonic and Thermal treatment on Photo-Electrode (염료감응형 태양전지 광전극 초음파 열처리에 관한 연구)

  • Hong, Ji-Tae;Kim, Mi-Jeong;Sim, Ji-Yong;Seo, Hyun-Woong;Kim, Hee-Je
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1291-1292
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    • 2007
  • Recently, there were many researches for efficiency improvement of DSC. Among of these works, research of surface treatment is still a prerequisite for electron diffusion, light-harvesting and surface state of DSC.[1] Using of the surface treatment, it can be raise up porosity of $TiO_2$ nano-crystalline structure on photo-electrode. There are chemical, physical, electrical and optical methods which raise up its porosity. In this paper, we have designed and manufactured MOPA-type ultrasonic circuit (100W, frequency and duty variable). Manufactured ultrasonic circuit to use to force cavity density and power into $TiO_2$ paste. Then, we have optimized forcing time, frequency and duty of ultrasonic irradiation for surface treatment of photo-electrode of DSC. In I-V characteristic test of DSC, ultrasonic and thermal treated DSC shows 19% improved its efficiency against monolithic DSC. And it shows stability of light-harvesting from drastically change of light irradiation test.

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Surface Treatments of Titanium Biomaterials by Anodization (양극산화법에 의한 생체적합형 티타늄 표면 개질)

  • Mun, Kyu-Shik;Kim, Jae-Yeon;Kim, Dong-Hyun;Cheon, Se-Jun;Kim, Hyo-Eun;Lee, Myoung-Hoon;Choi, Won-Youl
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.11a
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    • pp.306-306
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    • 2007
  • The surface was transformed to porous titanium oxide by the anodization of pure titanium. Titanium was anodized in non-aqueous and aqueous electrolytes at different potentials between 5 V and 150 V. Various electrolytes were compose of ethylene glycerol, $H_2SO_4,\;NH_4F\;and\;H_2O$. We obtained titania nanotube arrays on the micro pore of titanium. Micro pores and nano tubes were obtained by anodization at high potentials and low potentials, respectively. Morphologies of nanotubes and micro pore were characterized by FE-SEM. The unique surface structure is very attractive to electrical and medical applications such as gas sensor, biosensor, dental implant and stent.

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Fabrication of the Silicon Nano Structure applicable to Non-volatile Memory Device using Block Copolymer (비휘발성 메모리 소자 응용을 위한 블록 공중합체를 이용한 실리콘 나노 구조 제작)

  • Jung, Sung-Wook;Kim, Hyun-Min;Park, Dae-Ho;Sohn, Byeong-Hyeok;Jung, Jin-Chul;Zin, Wang-Cheol;Parm, I.O.;Yi, Jun-Sin
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2005.07a
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    • pp.95-96
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    • 2005
  • 나노 구조 제작을 위한 다양한 시도 중 블록 공중합체를 이용한 방법은 현재 활발한 연구가 진행되고 있는 분야이다. 본 연구에서는 비휘발성 메모리 소자의 용량 증가를 위하여 블록 공중합체 박막을 나노 마스크로 이용하고, 평행판헝 반응관 내에서 반응성 이온 에칭을 사용하여 나노 구조의 표면을 제작하였다. 에칭동안에 나노 마스크로서 사용할 블록 공중합체 박막은 PS-b-PMMA를 이용하여 제작하였고, UV를 주사하여 PMMA를 제거하고 수직적인 나노 흩을 구성하여 나노 패터닝이 가능하도록 하였다. 실험을 통하여 매우 균일한 나노 바늘 형태의 구조를 생성할 수 있으며, 반응기체와 유량의 조절을 통하여 다양한 표면 구조를 확인할 수 있었다. 블록 공중합체는 나노 마스크로서 뛰어난 기능을 나타내며, 이를 이용하여 나노 사이즈의 패터닝이 가능하고, 표면적 증가를 통하여 비휘발성 메모리 소자의 용량 증가에 기여할 수 있다.

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Optimization of Electrolytes on Cn ECMP Process (Cu ECMP 공정에 사용디는 전해액의 최적화)

  • Kwon, Tae-Young;Kim, In-Kwon;Cho, Byung-Gwun;Park, Jin-Goo
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.06a
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    • pp.78-78
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    • 2007
  • In semiconductor devices, Cu has been used for the formation of multilevel metal interconnects by the damascene technique. Also lower dielectric constant materials is needed for the below 65 nm technology node. However, the low-k materials has porous structure and they can be easily damaged by high down pressure during conventional CMP. Also, Cu surface are vulnerable to have surface scratches by abrasive particles in CMP slurry. In order to overcome these technical difficulties in CMP, electro-chemical mechanical planarization (ECMP) has been introduced. ECMP uses abrasive free electrolyte, soft pad and low down-force. Especially, electrolyte is an important process factor in ECMP. The purpose of this study was to characterize KOH and $KNO_3$ based electrolytes on electro-chemical mechanical. planarization. Also, the effect of additives such as an organic acid and oxidizer on ECMP behavior was investigated. The removal rate and static etch rate were measured to evaluate the effect of electro chemical reaction.

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