• Title/Summary/Keyword: 액상실리콘

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종이 기반의 마이크로 패터닝 구현 방법

  • Sin, Jong-Mok;Jo, Yong-In;Na, In-Yeop;Choe, Jun-Hui;Jang, Ho-Gyun;Kim, Gyu-Tae
    • Proceedings of the Korean Vacuum Society Conference
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    • 2015.08a
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    • pp.196.1-196.1
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    • 2015
  • 전 세계적으로 환경에 대한 인식이 증대됨에 따라 친환경적인 소재의 개발 연구가 필요한 상황이고, 대표적으로 셀룰로오스를 이용한 종이기판을 활용하는 방안이 새로운 연구화두로 떠오르고 있다. 종이를 기본으로 한 전기전자 회로구성의 가능성을 보기위해 종이 위해 전자회로 구성요소를 형성시켜야 할 필요가 있다. 이를 위해 본 연구팀은 상용 복사 용지위에 마이크로 단위의 패터닝을 구현하는 연구를 진행하였다. 마이크로 패터닝 구현 방법은 다음과 3가지로 요약할 수 있다;1. 리소그래피 공정, 2. 메탈마크스를 사용한 물질 증착, 3. 잉크젯 프린팅. 리소그래피 공정을 위해서 발수처리를 한 종이 위에 실리콘기반 공정과 마찬가지로 레지스트를 코팅하고 노광과 디벨롭, 증착과 리프트오프 과정을 거쳤다. 공정 결과 패터닝이 어느 정도 잘 되는 것을 확인할 수 있었다. 두번째로 상용 메탈마스크를 제작하여 종이 위에 그대로 증착하는 방법을 사용하였다. 이 방법은 액상공정을 요구하지 않기 때문에 발수처리가 필요하지 않고 종이의 기본성질을 그대로 유지 할 수 있다는 장점이 있다. 마지막으로 잉크젯 프린팅 공정은 복사용지를 인쇄할 때 사용하는 간단한 상용프린터를 이용하였다. 이 방법은 앞의 두 공정보다는 다소 패턴 사이즈가 크다는 단점이 있지만 원하는 모양을 자유롭게 패터닝 할 수 있고 그만큼 대량 생산에 용이하다는 장점이 있다.

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Growth of Carbon Nanotubes for Nano Device Application (나노 디바이스 응용을 위한 탄소나노튜브 성장 특성)

  • Park, Yong-Wook;Lee, Seung-Dae
    • Journal of the Korea Computer Industry Society
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    • v.8 no.1
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    • pp.17-22
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    • 2007
  • Carbon nanotubes (CNTs) were grown by a thermal chemical vapor deposition (CVD) method, which has been regarded as one of the most promising candidates for the synthesis of CNTs due to low cost and high growth yield. The Ethylene $(C_2H_4)$, hydrogen $(H_2)$ and Argon(Ar) gases were used for the growth of CNTs at $700^{\circ}C$. As a catalyst for CNTs growth, Fe thin film and Iron nitrate and Molybdenyl acetylacetonate solution with alumina nano-particle were prepared on $SiO_2/Si$ substrate. The growth properties of CNTs were analyzed by SEM and AFM.

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Analysis of cure behavior of low temperature curing liquid silicone rubber (LSR) for multi-material injection molding (이중사출 성형을 위한 저온 경화 액상실리콘고무 (LSR)의 경화 거동 분석)

  • Hyeong-min Yoo
    • Design & Manufacturing
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    • v.17 no.1
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    • pp.1-5
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    • 2023
  • In multi-material injection molding, since two or more materials with different process conditions are used, it is essential to maximize process efficiency by operating the cooling or heating system to a minimum. In this study, Liquid silicone rubber (LSR) that can be cured at a low temperature suitable for the multi-material injection molding was selected and the cure behavior according to the process conditions was analyzed through differential scanning calorimetry (DSC). Dynamic measurement results of DSC with different heating rate were obtained, and through this, the total heat of reaction when the LSR was completely cured was calculated. Isothermal measurement results of DSC were derived for 60 minutes at each temperature from 80 ℃ to 110 ℃ at 10 ℃ intervals, and the final degree of cure at each temperature was calculated based on the total heat of reaction identified from the Dynamic DSC measurement results. As the result, it was found that when the temperature is lowered, the curing start time and the time required for the curing reaction increase, but at a temperature of 90 ℃ or higher, LSR can secure a degree of cure of 80% or more. However, at 80 ℃., it was found that not only had a relatively low degree of curing of about 60%, but also significantly increased the curing start time. In addition, in the case of 110 ℃, the parameters were derived from experimental result using the Kamal kinetic model.

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Effects of Carbon Black on Mechanical Properties and Curing Behavior of Liquid Silicone Rubber (LSR) (Carbon Black 첨가에 따른 액상 실리콘 고무(LSR)의 기계적 특성 및 경화 거동 분석)

  • Beom-Joo Lee;Seon-Ju Kim;Hyeong-Min Yoo
    • Design & Manufacturing
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    • v.17 no.2
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    • pp.27-32
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    • 2023
  • Liquid silicon rubber (LSR) has fine thermal compatibility and is widely used in various fields such as medical care and automobiles because it is easy to implement products with good fluidity. With the recent development of flexible sensors, the focus has been on manufacturing conductive elastomers, such as silicone as elastic materials, and carbon black, CNT, and graphene are mainly used as nanomaterials that impart conductive phases. In this study, mechanical behavior and curing behavior were measured and analyzed to manufacture a CB-LSR complex by adding Carbon Black to LSR and to identify properties. As a result of the compression test, the elastic modulus tended to increase as carbon black was added. When the swelling test and the compression set test were conducted, the swelling rate tended to decrease as the content of carbon black increased, and the compression set tended to increase. In addition, DSC measurements showed that the total amount of reaction heat increased slightly as the carbon black content increased. It is considered that carbon black was involved in the crosslinking of LSR to increase the crosslinking density and have a positive effect on oil resistance reinforcement.

Discharge Characteristics of Plasma Jet Doping Device with the Atmospheric and Ambient Gas Pressure (플라즈마 제트 도핑 장치의 대기 및 기체의 압력 변화에 대한 방전 특성)

  • Kim, J.G.;Lee, W.Y.;Kim, Y.J.;Han, G.H.;Kim, D.J.;Kim, H.C.;Koo, J.H.;Kwon, G.C.;Cho, G.S.
    • Journal of the Korean Vacuum Society
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    • v.21 no.6
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    • pp.301-311
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    • 2012
  • Discharge property of plasma jet devices is investigated for the application to the doping processes of crystalline solar cells and others. Current-voltage characteristics are shown as the typical normal-glow discharge in the various gas pressure of plasma jets, such as in the atmospheric plasma jets of Ar-discharge, in the ambient pressure of atmospheric discharge, and in the ambient Ar-pressure of Ar-discharge. The discharge voltage of atmospheric plasma jet is required as low as about 2.5 kV while the operation voltage of low pressure below 200 Torr is low as about 1 kV in the discharge of atmospheric and Ar plasma jets. With a single channel plasma jet, the irradiated plasma current on the doped silicon wafer is obtained high as the range of 10~50 mA. The temperature increasement of wafer is normally about $200^{\circ}C$. In the result of silicon wafers doped by phosphoric acid with irradiating the plasma jets, the doping profiles of phosphorus atoms shows the possibility of plasma jet doping on solar cells.

Synthesis of high purity carbon powders using inductively thermal plasma (유도 열플라즈마 공정을 이용한 고순도 카본분말 합성)

  • Kim, Kyung-In;Han, Kyu-Sung;Hwang, Kwang-Taek;Kim, Jin-Ho
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.23 no.6
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    • pp.309-313
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    • 2013
  • Silicon carbide (SiC) has recently drawn an enormous industrial interest because of its useful mechanical properties such as thermal resistance, abrasion resistance and thermal conductivity at high temperature. Especially, high purity SiC is applicable to the fields of power semiconductor and lighting emitting diode (LED). In this work, high purity carbon powders as raw material for high purity SiC were prepared by a RF induction thermal plasma. Dodecane ($C_{12}H_{26}$) as hydrocarbon liquid precursor has been utilized for synthesis of high purity carbon powders. It is found that the filtercollected carbon powders showed smaller particle size (10~20 nm) and low crystallinity compared to the reactor-collected carbon powders. The purities of reactor-collected and filter-collected carbon powders were 99.9997 % (5N7) and 99.9993 % (5N3), respectively. In addition, the impurities of carbon powders synthesized by RF induction thermal plasma were mainly originated from the surrounding environment.

A Study on the Computational Design of Static Mixer and Mixing Characteristics of Liquid Silicon Rubber using Fluidic Analysis for LED Encapsulation (LED Encapsulation을 위한 스태틱 믹서의 전산 설계 및 유동해석을 이용한 액상 실리콘의 혼합 특성에 대한 연구)

  • Cho, Yong-Kyu;Ha, Seok-Jae;Huxiao, Huxiao;Cho, Myeong-Woo;Choi, Jong Myeong;Hong, Seung-Min
    • Design & Manufacturing
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    • v.7 no.1
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    • pp.55-59
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    • 2013
  • A Light Emitting Diode(LED) is a semiconductor device which converts electricity into light. LEDs are widely used in a field of illumination, LCD(Liquid Crystal Display) backlight, mobile signals because they have several merits, such as low power consumption, long lifetime, high brightness, fast response, environment friendly. In general, LEDs production does die bonding and wire bonding on board, and do silicon and phosphor dispensing to protect LED chip and improve brightness. Then lens molding process is performed using mixed liquid silicon rubber(LSR) by resin and hardener. A mixture of resin and hardener affect the optical characteristics of the LED lens. In this paper, computational design of static mixer was performed for mixing of liquid silicon. To evaluate characteristic of mixing efficiency, finite element model of static mixer was generated, and fluidic analysis was performed according to length of mixing element. Finally, optimal condition of length of mixing element was applied to static mixer from result of fluidic analysis.

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Atomic Layer Deposition of Silicon Oxide Thin Film on $TiO_2$ nanopowders (원자층증착법에 의한 $TiO_2$ 나노파우더 표면의 실리콘 산화물 박막 증착)

  • Kim, Hee-Gyu;Kim, Hyung-Jong;Kang, In-Gu;Kim, Doe-Hyoung;Choi, Byung-Ho;Jung, Sang-Jin;Kim, Min-Wan
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.11a
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    • pp.381-381
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    • 2009
  • 염료감응형 태양전지의 효율 향상을 위한 다양한 방법들 중 $TiO_2$ 나노 파우더의 표면 개질 및 페이스트의 분산성 향상을 위한 연구가 활발하게 진행되고 있다. 기존 나노 파우더의 표면 개질법으로는 액상 공정인 졸겔법이 있으나 표면 처리 공정에서의 응집현상은 아직 해결해야 할 과제 중 하나이다. 이에 본 연구에서는 진공증착방법인 ALD법을 이용하여 염료감응형 태양전지용 $TiO_2$ 나노 파우더의 $SiO_2$ 산화물 표면처리를 통한 분산특성을 파악하였다. 기존 ALD법의 경우 reactor의 온도가 $300{\sim}500^{\circ}C$ 정도의 고온에서 공정이 이루어졌지만 본 실험에서는 2차 아민계촉매(pyridine)을 사용하여 reactor의 온도를 $30^{\circ}C$정도의 저온공정에서 $SiO_2$ 산화물을 코팅을 하였다. MO source로는 액체상태의 TEOS$(Si(OC_2H_5)_4)$를, 반응가스로는 $H_2O$를 사용하였고, 불활성 기체인 Ar 가스는 purge 가스로 각각 사용 하였다. ALD 공정에 의해 표면처리 된 $TiO_2$ 나노 파우더의 분산특성은 각 공정 cycle에 따라 FESEM을 통하여 입자의 형상 및 분산성을 확인하였으며 입도 분석기를 통하여 부피의 변화 및 분산 특성을 확인하였다. 공정 cycle 이 증가함에 따라 입자간의 응집현상이 개선되는 것을 확인 할 수 있었으며, 100cycles에서 응집현상이 가장 많이 감소하는 것을 확인할 수 있었다. 또한 표면 처리된 $SiO_2$ 산화막은 XRD를 통한 결정 분석 및 EDX를 통한 정성 분석을 통하여 확인하였다.

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Fabrication of Ceramic Line Pattern by UV-Nanoimprint Lithography of Inorganic Polymers (무기고분자의 나노임프린트법에 의한 세라믹 선형 패턴의 제조)

  • Park Jun-Hong;Pham Tuan-Anh;Lee Jae-Jong;Kim Dong-Pyo
    • Polymer(Korea)
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    • v.30 no.5
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    • pp.407-411
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    • 2006
  • The SiC-based ceramic nanopatterns were prepared by placing polydimethylsiloxane (PDMS) mold from DVD master on the spincoated polyvinylsilaeane (PVS) or allylhydridopolycaybosilane (AHPCS) as ceramic precursors to fabricate line pattern via UV-nanoimprint lithography (UV-NIL), and subsequent pyrolysis at $800^{\circ}C$ in nitrogen atmosphere. As the dimensional change of polymeric and ceramic patterns was comparatively investigated by AFM and SEM, the shrinkage in height was 38.5% for PVS derived pattern and 24.1% for AHPCS derived pattern while the shrinkage in width was 18.8% for PVS and 16.7% for AHPCS. It indicates that higher ceramic yield of the ceramic precursor resulted in less shrinkage, and the strong adhesion between the substrate and the pattern caused anisotropic shrinkage. This preliminary work suggests that NIL is a promissing route for fabricating ceramic MEMS devices, with the development on the shrinkage control.

The Effect of Liquid Medium on Silicon Grinding and Oxidation during Wet Grinding Process (습식분쇄공정에서 액상매체가 실리콘 분쇄 및 산화특성에 미치는 영향)

  • Kwon, Woo Teck;Kim, Soo Ryong;Kim, Young Hee;Lee, Yoon Joo;Shin, Dong Geun;Won, Ji Yeon;Oh, Sea Cheon
    • Journal of the Korean Ceramic Society
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    • v.51 no.2
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    • pp.121-126
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    • 2014
  • The influence of a liquid medium duringa wet-milling process in the grinding and oxidation of silicon powder was investigated. Distilled water, dehydrated ethanol and diethylene glycol were used as the liquid media. The applied grinding times were 0.5, 3, and 12 h. Ground silicon powder samples were characterized by means of aparticle size analysis, scanning electron microscopy(SEM), x-ray powder diffraction (XRD), FT-IR spectroscopy and by a chemical composition analysis. From the results of the characterization process, we found that diethylene glycol is the most efficient liquid medium when silicon powder is ground using a wet-milling process. The FT-IR results show that the Si-O band intensity in an unground silicon powder is quite strongbecause oxygen becomes incorporated with silicon to form $SiO_2$ in air. By applying deionized water as a liquid medium for the grinding of silicon, the $SiO_2$ content increased from 4.12% to 31.7%. However, in the cases of dehydrated ethanol and diethylene glycol, it was found that the $SiO_2$ contents after grinding only changed insignificantly, from 4.12% to 5.91% and 5.28%, respectively.