• 제목/요약/키워드: Metallic Bi

검색결과 61건 처리시간 0.033초

Sn8Zn3Bi 솔더를 이용한 1608 칩 솔더링부의 열충격 신뢰성 평가 (Reliability evaluation of 1608 chip joint using Sn8Zn3Bi solder under thermal shock)

  • 이영우;김규석;홍성준;정재필;문영준;이지원;한현주;김미진
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2005년도 추계학술발표대회 개요집
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    • pp.225-227
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    • 2005
  • Sn-8wt%Zn-3wt%Bi (이하, Sn-8Zn-3Bi) 솔더의 장기 신뢰성을 평가하기 위하여 열 충격 시험을 행하였다. 열 충격 시험은 $-40^{\circ}C$에서 $80^{\circ}C$범위에서 1000 사이클 동안 하였다. 접합 기판으로는 각각 OSP(Organic Solderability Preservative), Sn 그리고 Ni/Au 처리를 한 PCB(Printed Circuit Board) 패드를 사용하였다. 접합에 사용한 부품은 1608 Chip(Multi Layer Chip Capacitor, Chip Resistor) 으로 전극 부위에 Sn-37wt%Pb, Sn 도금하여 사용하였다. 솔더링 후 1608 Chip의 전단 강도와 솔더링부에서 미세조직 및 IMC(Inter Metallic Compound) 변화를 관찰하였다. 측정결과, Sn-8Zn-3Bi 솔더의 초기 전단 강도는 기판의 표면처리에 상관없이 약 40N 이상이었다. 그리고 열충격 시험 1000 사이클 후에는 모든 기판에서 2N 정도 약간의 강도 저하를 보였다.

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금속 원통 케이스를 방사소자로 활용한 펜타입 무선 프리젠터용 비대칭 다이폴 안테나 (Asymmetric Dipole Antenna for Pen-Type Wireless Presenter Having Metallic Cylinder Case as a Radiating Element)

  • 방지훈;김영민;유태훈
    • 한국전자파학회논문지
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    • 제27권10호
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    • pp.883-891
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    • 2016
  • 본 논문에서는 금속 케이스를 접지 방사체로 활용한 비대칭 다이폴 안테나를 제안하고, 이를 ISM 대역(2.4~2.48 GHz)에서 동작하는 펜타입 무선 프리젠터에 적용하였다. 제안한 비대칭 다이폴 안테나는 긴 원통 모양의 금속 케이스 상단에 수직모드 헬리컬 코일이 장착된 구조로, 접지면인 금속 케이스를 방사소자로 동작하게 하여 헬리컬 안테나의 좁은 대역폭과 낮은 이득을 증가시켰다. 또한, 특수 제작된 인체 팬텀을 사용하여 사람이 무선 프리젠터의 금속 케이스를 손으로 잡을 때 안테나의 성능에 미치는 영향을 분석하였다. 측정 결과, 제안한 안테나는 자유공간에서 반사손실 -10 dB를 기준으로 2.3~2.5 GHz까지 200 MHz의 대역폭을 가지며, 5 dBi의 최대이득을 나타내었다. 사람 손이 금속 케이스에 접촉한 경우에는 2.24~2.72 GHz까지 480 MHz의 대역폭이 측정되었고, 최대이득은 3 dB만큼 낮아진 2 dBi로 측정되었다.

Gold/Copper Bi-Metallic Catalysts by Carbothermal Method for CO2 Reduction

  • Yoon, Hee-chan;Jung, Woo-bin;Jung, Hee-Tae
    • 한국환경과학회:학술대회논문집
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    • 한국환경과학회 2019년도 정기학술대회 발표논문집
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    • pp.83-83
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    • 2019
  • Increasing the CO2 concentration in the atmosphere induce high temperature and rising sea levels. So the technology that capture and reuse of the CO2 have been recently become popular. Among other methods, CRR(CO22 reduction reaction) is typical method of CO2 reusing. Electrocatalyst can show more higher efficiencies in CRR than photocatalyst because it doesn't use nature source. Nowadays, finding high efficient electrocatalyst by controlling electronic (affected by stoichiometry) and geometric (affected by atomic arrangement) factors are very important issues. Mono-atomic electro-catalyst has limitations on controlling binding energy because each intermediate has own binding energy range. So the Multi-metallic electro-catalyst is important to stabilize intermediate at the same time. Carbon monoxide(CO) which is our target product and important feedstock of useful products. Au is known for the most high CO production metal. With copper, Not only gold/copper has advantages which is they have FCC packing for easily forming solid solution regardless of stoichiometry but also presence of adsorbed CO on Cu promotes the desorption of CO on Au because of strong repulsion. And gold/copper bi-metal catalyst can show high catalytic activity(mass activity) although it has low selectivity relatively Gold. Actually, multi-metallic catalyst structure control method is limited in the solution method which is takes a lot of time. In here, we introduce CTS(carbo thermal shock) method which is using heat to make MMNP in a few seconds for making gold-copper system. This method is very simple and efficient in terms of time(very short reaction time and using carbon substrate as a direct working electrode) and increasing reaction sites(highly dispersed and mixing alloy structures). Last one is easy to control degree of mixing and it can induce 5 or more metals in one alloy system. Gold/copper by CTS can show higher catalytic activity depending on metal ratio which is altered easily by changing simple variables. The ultimate goals are making CO2 test system by CTS which can check the selectivity depending on metal types in a very short time.

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A topological metal at the surface of an ultrathin BiSb alloy film

  • Hirahara, T.;Sakamoto, Y.;Saisyu, Y.;Miyazaki, H.;Kimura, S.;Okuda, T.;Matsuda, I.;Murakami, S.;Hasegawa, S.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.14-15
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    • 2010
  • Recently there has been growing interest in topological insulators or the quantum spin Hall (QSH) phase, which are insulating materials with bulk band gaps but have metallic edge states that are formed topologically and robust against any non-magnetic impurity [1]. In a three-dimensional material, the two-dimensional surface states correspond to the edge states (topological metal) and their intriguing nature in terms of electronic and spin structures have been experimentally observed in bulk Bi1-xSbx single crystals [2,3,4]. However, if we want to know the transport properties of these topological metals, high purity samples as well as very low temperature will be needed because of the contribution from bulk states or impurity effects. In a recent report, it was also shown that an intriguing coupling between the surface and bulk states will occur [5]. A simple solution to this bothersome problem is to prepare a topological metal on an ultrathin film, in which the surface-to-bulk ratio is drastically increased. Therefore in the present study, we have investigated if there is a method to make an ultrathin Bi1-xSbx film on a semiconductor substrate. From reflection high-energy electron diffraction observation, it was found that single crystal Bi1-xSbx films (0${\sim}30\;{\AA}A$ can be prepared on Si(111)-$7{\times}7$. The transport properties of such films were characterized by in situ monolithic micro four-point probes [6]. The temperature dependence of the resistivity for the x=0.1 samples was insulating when the film thickness was $240\;{\AA}A$. However, it became metallic as the thickness was reduced down to $30\;{\AA}A$, indicating surface-state dominant electrical conduction. Figure 1 shows the Fermi surface of $40\;{\AA}A$ thick Bi0.92Sb0.08 (a) and Bi0.84Sb0.16 (b) films mapped by angle-resolved photoemission spectroscopy. The basic features of the electronic structure of these surface states were shown to be the same as those found on bulk surfaces, meaning that topological metals can be prepared at the surface of an ultrathin film. The details will be given in the presentation.

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Si 및 SrTiO3 기판 위에 증착된 Bi4Ti3O12 박막의 결정구조 및 배향에 따른 강유전 특성 (Ferroelectric Properties of Bi4Ti3O12 Thin Films Deposited on Si and SrTiO3 Substrates According to Crystal Structure and Orientation)

  • 이명복
    • 전기학회논문지
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    • 제67권4호
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    • pp.543-548
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    • 2018
  • Ferroelectric $Bi_4Ti_3O_{12}$ films were deposited on $SrTiO_3(100)$ and Si(100) substrate by using conductive $SrRuO_3$ films as underlayer, and their ferroelectric and electrical properties were investigated depending on crystal structure and orientation. C-axis oriented $Bi_4Ti_3O_{12}$ films were grown on well lattice-matched pseudo-cubic $SrRuO_3$ films deposited on $SrTiO_3(100)$ substrate, while random-oriented polycrystalline $Bi_4Ti_3O_{12}$ films were grown on $SrRuO_3$ films deposited on Si(100) substrate. The random-oriented polycrystalline film showed a good ferroelectric hysteresis property with remanent polarization ($P_r$) of $9.4{\mu}C/cm^2$ and coercive field ($E_c$) of 84.9 kV/cm, while the c-axis oriented film showed $P_r=0.64{\mu}C/cm^2$ and $E_c=47kV/cm$ in polarizaion vs electric field curve. The c-axis oriented $Bi_4Ti_3O_{12}$ film showed a dielectric constant of about 150 and lower thickness dependence in dielectric constant compared to the random-oriented film. Furthermore, the c-axis oriented $Bi_4Ti_3O_{12}$ film showed leakage current lower than that of the polycrystalline film. The difference of ferroelectric properties in two films was explained from the viewpoint of depolarization effect due to orientation of spontaneous polarization and layered crystal structure of bismuth-base ferroelectric oxide.

Control of Surface Energy using Bilayer Metallic Film Heterostructures

  • Kim, Chang-Lae;Kim, Dae-Eun;Kim, Hae-Jin
    • Tribology and Lubricants
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    • 제35권6호
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    • pp.350-355
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    • 2019
  • Surface energy is an important factor in determining the performance of application components in terms of preventing adhesion failure between thin films. In this regard, numerous attempts have been made to acquire the desired surface energy through chemical treatment or by using micro/nanostructures. However, such approaches are expected to provide extreme values of surface energy, which may not be suitable in achieving the enhanced performance of applications. In this study, we propose a method to control surface energy by using bilayer metallic film heterostructures. We measure the water contact angle of incompatible (Ni/Ag) and compatible (Zn/Ag) metal pairs under several experimental factors, including thickness, time, and temperature. Furthermore, we conduct Auger electron spectroscopy measurements to investigate the atomic concentration with respect to depth after the change in the water contact angle. The experimental results reveal that three parameters, namely, compatibility, film thickness, and environmental temperature, are major factors in controlling the water contact angle. Thus, we experimentally demonstrate that controlling these three parameters can provide the approximate desired water contact angle. This result is expected to aid in the performance enhancement of a wide range of application components, where control of surface energy is required.

금속 브롬화물의 첨가에 따른 금속 할라이드 페로브스카이트 나노결정의 광학적 특성 변화 (Optical Properties of Metal Halide Perovskite Nanocrystals with Addition of Metal Bromide)

  • 윤석진;최지훈
    • 한국표면공학회지
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    • 제52권6호
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    • pp.334-341
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    • 2019
  • Organometal halide perovskite materials have attracted much attention in the photovoltaic and light emitting devices due to the compositional flexibility with AMX3 formula (A is an organic amine cation; M is a metal ion; X is a halogen atom). The addition of homovalent or heterovalent metal cations to the bulk organohalide perovskites has been performed to modify their energy band structure and the relevant optoelectronic properties by ligand-assisted ball milling. Here, we report CH3NH3Pb1-xMxBr3 nanocrystals substituted by metallic cations (M is Sn2+, In3+, Bi3+; x = 0, 0.01, 0.02, 0.05, 0.1, 0.2). Photoluminescence and quantum yield was significantly reduced with increasing metallic cations content. These quenching effect could be resulted from the metal cations that behave as a non-radiative recombination center.

Contact Transfer Printing Using Bi-layer Functionalized Nanobio Interface for Flexible Plasmonic Sensing

  • Lee, Jihye;Park, Jiyun;Lee, Junyoung;Yeo, Jong-Souk
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.413-413
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    • 2014
  • In this paper, we present a fabrication method of functionalized gold nanostructures on flexible substrate that can be implemented for plasmonic sensing application. For biomolecular sensing, many researchers exploit unconventional lithography method like nanoimprint lithography (NIP), contact transfer lithography, soft lithography, colloidal transfer printing due to its usability and easy to functionalization. In particular, nanoimprint and contact transfer lithography need to have anti-adhesion layer for distinctive metallic properties on the flexible substrates. However, when metallic thin film was deposited on the anti-adhesion layer coated substrates, we discover much aggravation of the mold by repetitive use. Thus it would be impossible to get a high quality of metal nanostructure on the transferred substrate for developing flexible electronics based transfer printing. Here we demonstrate a method for nano-pillar mold and transfer the controllable nanoparticle array on the flexible substrates without an anti-adhesion layer. Also functionalization of gold was investigated by the different length of thiol applied for effectively localized surface plasmonic resonance sensing. First, a focused ion beam (FIB) and ICP-RIE are used to fabricate the nanoscale pillar array. Then gold metal layer is deposited onto the patterned nanostructure. The metallic 130 nm and 250 nm nanodisk pattern are transferred onto flexible polymer substrate by bi-layer functionalized contact imprinting which can be tunable surface energy interfaces. Different thiol reagents such as Thioglycolic acid (98%), 3-Mercaptopropionic acid (99%), 11-Mercaptoundecanoic acid (95%) and 16-Mercaptohexadecanoic acid (90%) are used. Overcoming the repeatedly usage of the anti-adhesion layer mold which has less uniformity and not washable interface, contact printing method using bi-layer gold array are not only expedient access to fabrication but also have distinctive properties including anti-adhesion layer free, functionalized bottom of the gold nano disk, repeatedly replicate the pattern on the flexible substrate. As a result we demonstrate the feasibility of flexible plasmonic sensing interface and anticipate that the method can be extended to variable application including the portable bio sensor via mass production of stable nanostructure array and other nanophotonic application.

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후면 주파수 선택 표면을 이용한 광대역 고이득 평면 사다리꼴 모노폴 안테나 설계 (Design of Wideband High Gain Trapezoidal Monopole Antenna using Backside Frequency Selective Surface)

  • 홍승모
    • 한국정보전자통신기술학회논문지
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    • 제14권6호
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    • pp.473-478
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    • 2021
  • 본 논문은 급증하는 무선통신, 자율주행자동차, 5G 무선통신 및 광대역 어플리케이션 등과 같이 다양한 방면에서 필요로 하는 광대역, 고이득 안테나 필요성에 따라 후면 주파수 선택 표면(FSS, Frequency Selective Surface)을 이용한 광대역 고이득 평면 사다리꼴 모노폴 안테나를 설계하였다. 제안된 안테나는 이중 금속층을 사용하여 기존의 주파수 선택 표면과 구조적인 차이점을 갖는다. 또한 기존의 안테나 설계에서 갖는 설계의 복잡함을 해결하기 위해 GA(Genetic Algorithms)과 HFSS(High Frequency Structure Simulator) 시뮬레이션을 사용하여 효율성을 증가시켰다. 이를 통해 3.52 GHz ~ 5.92 GHz의 넓은 대역폭과 전체 대역폭에서 10.5 dBi 이상의 이득을 유지하며, 5.1 GHz에서 11.8 dBi의 최고 이득을 갖는다. 기존 안테나와 비교하였을 경우 1.8 GHz의 36% 임피던스 대역폭이 2.4 GHz의 50% 임피던스 대역폭으로 향상되었으며, 이득의 경우 8.6 dBi 증가하는 것을 확인하였다.

순간접전기전력법에 의한 용융 Cd중의 Zn과 Cu, Ag, In, Bi, Pb 및 Sn와의 상위작용 파라미터 (Thermodynamic interaction parameter between Zn and Cu, Ag, In, Bi, Pb, Sn in Dilute cadmium alloy by Touch Instant electro-motive force method)

  • 김대룡;윤겸하
    • 한국표면공학회지
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    • 제15권4호
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    • pp.192-207
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    • 1982
  • A study has been made of the interaction parameters of Zn other elements in dilute solutesd solution of molten cadmium alloys over the temperature range of 450 to 570$^{\circ}C$. The experi-mental measurementss were made in a touch instant cell using a fusedd Licl-KCl electrolyte. The activity of zinc in binary and ternary solutions sexhibiteds a strong positive deviation from Raoult's law. The addition of silver, indium or lead increased the activity of zinc whereas addition of copper, bismuth or tin decreased the zinc activity slightly. The results for all the metallic solutions showed a linear dependence of reciprocal of ab-solute temperature over the experimental range. The interaction parameters obtained are as follows.

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