• Title/Summary/Keyword: $Ag_2Se$ thin film

Search Result 50, Processing Time 0.034 seconds

Interfacial Adhesion between Screen-Printed Ag and Epoxy Resin-Coated Polyimide (에폭시수지가 도포된 폴리이미드와 스크린 프린팅 Ag 사이의 계면접착력 평가)

  • Park, Sung-Cheol;Kim, Jae-Won;Kim, Ki-Hyun;Park, Se-Ho;Lee, Young-Min;Park, Young-Bae
    • Journal of the Microelectronics and Packaging Society
    • /
    • v.17 no.1
    • /
    • pp.41-46
    • /
    • 2010
  • The interfacial adhesion strengths between screen-printed Ag film and epoxy resin-coated polyimide were evaluated by $180^{\circ}$ peel test method. Measured peel strength value was initially around $164.0{\pm}24.4J/m^2$, while the heat treatment during 24h at $120^{\circ}C$ increase peel strength up to $220.8{\pm}19.2J/m^2$. $85^{\circ}C/85%$ RH temperature/humidity treatment decrease peel strength to $84.1{\pm}50.8J/m^2$, which seems to be attributed to hydrolysis bonding reaction mechanism between metal and adhesive epoxy resin coating layer.

Effect of Surface Modification of the Porous Stainless Steel Support on Hydrogen Perm-selectivity of the Pd-Ag Alloy Hydrogen Separation Membranes (다공성 스테인리스 강 지지체의 표면개질에 따른 팔라듐-은 합금 수소 분리막의 수소 투과 선택도의 변화)

  • Kim, Nak-Cheon;Kim, Se-Hong;Lee, Jin-Beum;Kim, Hyun-Hee;Yang, Ji-Hye;Kim, Dong-Won
    • Journal of the Korean institute of surface engineering
    • /
    • v.49 no.3
    • /
    • pp.286-300
    • /
    • 2016
  • Pd-Ag alloy membranes have attracted a great deal of attention for their use in hydrogen purification and separation due to their high theoretical permeability, infinite selectivity and chemical compatibility with hydro-carbon containing gas streams. For commercial application, Pd-based membranes for hydrogen purification and separation need not only a high perm-selectivity but also a stable long-term durability. However, it has been difficult to fabricate thin, dense Pd-Ag alloy membranes on a porous stainless steel metal support with surface pores free and a stable diffusion barrier for preventing metallic diffusion from the porous stainless steel support. In this study, thin Pd-Ag alloy membranes were prepared by advanced Pd/Ag/Pd/Ag/Pd multi-layer sputter deposition on the modified porous stainless steel support using rough polishing/$ZrO_2$ powder filling and micro-polishing surface treatment, and following Ag up-filling heat treatment. Because the modified Pd-Ag alloy membranes using rough polishing/$ZrO_2$ powder filling method demonstrate high hydrogen permeability as well as diffusion barrier efficiency, it leads to the performance improvement in hydrogen perm-selectivity. Our membranes, therefore, are expected to be applicable to industrial fields for hydrogen purification and separation owing to enhanced functionality, durability and metal support/Pd alloy film integration.

Photoelectron Spectroscopic Investigation of Ag and Au Deposited Amorphous In-Ga-Zn-O Thin Film Surface

  • Gang, Se-Jun;Baek, Jae-Yun;Sin, Hyeon-Jun
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2014.02a
    • /
    • pp.338.2-338.2
    • /
    • 2014
  • 투명반도체산화물은 우수한 광학적, 전기적 특성을 가지고 있기 때문에 차세대 박막트랜지스터의 채널층으로 각광을 받고 있다. 특히, 그 중에서도 a-IGZO를 이용한 TFT는 높은 가시광선 투과율(>80%)과 큰 전하이동도(>10 cm2/Vs) 를 갖는 등 좋은 광학적, 전기적 특성을 갖기 때문에 많은 연구가 이루어졌다. 여러 연구들에 의하면, a-IGZO TFT는 소스/드레인의 전극으로 어떤 물질을 사용하는지에 따라서 동작특성에 큰 영향을 미치는 것으로 알려져 있다. 일반적으로, a-IGZO 박막은 n형 반도체로써 일함수가 작은 금속과는 ohmic contact를 형성하고, 일함수가 큰 금속과는 Schottky barrier를 형성한다고 알려져 있다. 이와 관련된 대부분의 이전의 연구들에서는 각각의 전극물질에 따라 전기적인 특성변화에 초점을 맞춰서 연구하였다. 본 연구에서는 일함수가 작은 Ag와 일함수가 큰 Au를 a-IGZO의 박막 위에 얇게 증착하면서 이에 따른 고분해능 광전자분광(high-resolution x-ray photoelectron spectroscopy) 정보의 변화를 분석함으로써, 금속의 증착에 따른 금속층과 a-IGZO 표면 및 계면에서의 화학적 상태의 변화를 연구하였다. Au 4f, Ag 3d는 metallic property를 나타내기 이전까지는 lower binding energy(BE) 쪽으로 shift하였으며, In 3d 또한 lower BE 성분이 크게 증가하였다. O 1s, Ga 3d, Zn 3d들은 상대적으로 적은 변화를 나타내었는데, 이는 Ag, Au가 In과 상대적으로 더 많이 상호작용한다는 것을 의미한다. 본 발표에서는 이들 core level의 정보들과, 가전자대의 분광정보, 그리고 band bending의 정보가 제시될 것이며, 이 정보들은 metal 증착에 따른 contact 특성을 이해하는데 기여할 것으로 기대한다.

  • PDF

An analysis of the ion penetration phenomena in amorphous $Se_{75}Ge_{25}$ thin film (비정질 $Se_{75}Ge_{25}$박막으로의 이온침투 현상 해석)

  • 이현용;정홍배
    • Electrical & Electronic Materials
    • /
    • v.7 no.5
    • /
    • pp.389-396
    • /
    • 1994
  • The bilayer film of Ag/a-S $e_{75.G}$ $e_{25}$ and the monolayer film of a-S $e_{75.G}$ $e_{25}$ act as a negative-type and a positive-type resist in focused ion beam lithography, respectively. Using a model which takes into account the ion stopping power, the ion projected range, the ion concentration implanted into resists and the ion transmission coefficient, etc., the ion resist parameters are calculated for a broad range of ion energies and implanted doses. Ion sources of A $r^{+}$, S $i^{++}$ and G $a^{+}$ are used to expose resists. As the calculated results, the energy loss per unit distance by Ga'$^{+}$ ion is about 10$^{3}$[keV/.mu.M] and nearly constant for all energy range. Especially, the projected range and struggling for 80[keV] G $a^{+}$ ion energy are 0.0425[.mu.m] and 0.020[.mu.m], , respectively and the resist thickness of a-S $e_{75}$ G $e_{25}$ to minimize the ion penetration rate into a substrate is 0.118[.mu.m].u.m]..u.m].

  • PDF

Plasmonic Nanosheet towards Biosensing Applications

  • Tamada, Kaoru
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2013.02a
    • /
    • pp.105-106
    • /
    • 2013
  • Surface plasmon resonance (SPR) is classified into the propagating surface plasmon (PSP) excited on flat metal surfaces and the local surface plasmon (LSP) excited by metalnanoparticles. It is known that fluorescence signals are enhanced by these two SPR-fields.On the other hand, fluorescence is quenched by the energy transfer to metal (FRET). Bothphenomena are controlled by the distance between dyes and metals, and the degree offluorescence enhancement is determined by the correlation. In this study, we determined thecondition to achieve the maximum fluorescence enhancement by adjusting the distance of ametal nanoparticle 2D sheet and a quantum dots 2D sheet by the use of $SiO_2$ spacer layers. The 2D sheets consisting of myristate-capped Ag nanoparticles (AgMy nanosheets) wereprepared at the air-water interface and transferred onto hydrophobized gold thin films basedon the Langmuir-Schaefer (LS) method [1]. The $SiO_2$ sputtered films with different thickness (0~100 nm) were deposited on the AgMy nanosheet as an insulator. TOPO-cappedCdSe/CdZnS/ZnS quantum dots (QDs, ${\lambda}Ex=638nm$) [2] were also transferred onto the $SiO_2$ films by the LS method. The layered structure is schematically shown in Fig. 1. The result of fluorescence measurement is shown in Fig. 2. Without the $SiO_2$ layer, the fluorescence intensity of the layered QD film was lower than that of the original QDs layer, i.e., the quenching by FRET was predominant. When the $SiO_2$ thickness was increased, the fluorescence intensity of the layered QD film was higher than that of the original QDs layer, i.e., the SPR enhancement was predominant. The fluorescence intensity was maximal at the $SiO_2$ thickness of 20 nm, particularly when the LSPR absorption wavelength (${\lambda}=480nm$) was utilized for the excitation. This plasmonic nanosheet can be integrated intogreen or bio-devices as the creation point ofenhanced LSPR field.

  • PDF

Electro-optical characterization of heterostructure organic electroluminescent devices (2층 구조 유기 박막 EL 소자의 전기-광학적특성)

  • Kim, Min-Soo;Park, Se-Kwang
    • Journal of Sensor Science and Technology
    • /
    • v.4 no.4
    • /
    • pp.10-15
    • /
    • 1995
  • Organic thin film electroluminescent(EL) cells were fabricated. Their output characteristics and luminance versus voltage characteristics were measured with different work function metal electrodes. The EL structure was Indium-Tin-Oxide(ITO)/hole transport layer/emission layer(electron transport layer)/metal electrode. PMMA+TPD(0.5 wt%), MC homopolymer+TPD(0.005 wt%) and (MC/MMA) copolymer+TPD(0.005 wt%) were used as hole transport layer. Ca, Mg, Mg:Ag(10:l) and Al were used as metal electrode. I-V output showed exponential feature, and the threshold voltage of 5 volts and the luminance of over 700 $Cd/m^{2}$ at 10 volts were observed.

  • PDF

The Materials Science of Chalcopyrite Materials for Solar Cell Applications

  • Rockett, Angus
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2011.08a
    • /
    • pp.53-53
    • /
    • 2011
  • This paper describes results for surface and bulk characterization of the most promising thin film solar cell material for high performance devices, (Ag,Cu) (In,Ga) Se2 (ACIGS). This material in particular exhibits a range of exotic behaviors. The surface and general materials science of the material also has direct implications for the operation of solar cells based upon it. Some of the techniques and results described will include scanning probe (AFM, STM, KPFM) measurements of epitaxial films of different surface orientations, photoelectron spectroscopy and inverse photoemission, Auger electron spectroscopy, and more. Bulk measurements are included as support for the surface measurements such as cathodoluminescence imaging around grain boundaries and showing surface recombination effects, and transmission electron microscopy to verify the surface growth behaviors to be equilibrium rather than kinetic phenomena. The results show that the polar close packed surface of CIGS is the lowest energy surface by far. This surface is expected to be reconstructed to eliminate the surface charge. However, the AgInSe2 compound has yielded excellent atomic-resolution images of the surface with no evidence of surface reconstruction. Similar imaging of CuInSe2 has proven more difficult and no atomic resolution images have been obtained, although current imaging tunneling spectroscopy images show electronic structure variations on the atomic scale. A discussion of the reasons why this may be the case is given. The surface composition and grain boundary compositions match the bulk chemistry exactly in as-grow films. However, the deposition of the heterojunction forming the device alters this chemistry, leading to a strongly n-type surface. This also directly explains unpinning of the Fermi level and the operation of the resulting devices when heterojunctions are formed with the CIGS. These results are linked to device performance through simulation of the characteristic operating behaviors of the cells using models developed in my laboratory.

  • PDF

Effects of Sodium and Gallium on Characteristics of CIGS Thin Films and CdS/CIGS Solar Cells by Co-evaporation Method (Na확산과 Ga첨가에 따른 동시진공증발법으로 제조된 CIGS 박막과 CdS/CIGS 태양전지의 특성)

  • Kwon, S.H.;Lee, J.C.;Kang, K.H.;Kim, S.K.;Yoon, K.H.;Song, J.S.;Lee, D.Y.;Ahn, B.T.
    • Solar Energy
    • /
    • v.20 no.2
    • /
    • pp.43-54
    • /
    • 2000
  • We prepared and characterized $Cu(In_{1-x}Ga_x)Se_2$(CIGS) films using a elemental co-evaporation method for absorbing layer of high efficiency thin film solar cells. The CIGS films deposited on a soda-lime glass exhibited low resistivity because of higher carrier concentration. Na was accumulated at the CIGS surface and the 0 and Se were also accumulated at the surface, suggesting that oxidation is a driving force of Na accumulation. The structure of CIGS film was modified or a secondary phase was formed in the Cu-poor CIGS bulk films probably due to the incorporation of Na into Cu vacancy sites. As the Ga/(In+Ga) ratio increased, the diffraction peaks of $Cu(In_{1-x}Ga_x)Se_2$ films were shifted to larger angle and splitted, and the grain size of $Cu_{0.91}(In_{1-x}Ga_x)Se_2$ films became smaller. All $Cu_{0.91}(In_{1-x}Ga_x)Se_2$ films showed the p-type conductivity regardless of the Ga/(In+Ga) ratio. Ag/n-ZnO/i-ZnO/CdS/$Cu_{0.91}(In_{0.7}Ga_{0.3})Se_2$/Mo solar cells were fabricated. The currently best efficiency in this study was 14.48% for $0.18cm^2$ area ($V_{oc}=581.5mV,\;J_{sc}=34.88mA$, F.F=0.714).

  • PDF

Selenization of the CIGS Thin Film by Using the Cracked Selenium

  • Kim, Min-Yeong;Kim, Gi-Rim;Kim, Jong-Wan;Son, Gyeong-Tae;Im, Dong-Geon;Lee, Jae-Hyeong
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2013.02a
    • /
    • pp.704-704
    • /
    • 2013
  • CIGS 박막 태양전지는 I-III-VI족 화합물 반도체로서 직접천이형 에너지 밴드 구조를 가지고 있고, $1{\times}10$ cm의 높은 흡수계수를 가지고 있으며, Ga, Ag, Al을 첨가함으로써 밴드갭을 1~2.7 eV 넓은 범위로 조절가능하다. 본 연구의 목적은 Sputtering 방식과 Cracker cell을 이용한 실험으로 보다 효율적인 방식으로 CIGS 전구체 조성별 특성에 따른 구조와 전기적, 광학적 특성의 효과에 대하여 조사하였다. Cu-In-Ga 전구체는 CuGa(80-20 at.%)과 In(99.0%) target을 사용하여, Sputtering 공정으로 증착하였으며, Cracker cell이 부착된 RTP (rapid thermal processing)를 통하여 셀렌화를 진행하였다. Reservoir zone 온도는 320도, Cracking zone 온도는 900도로 유지하였으며, 진공상태에서 Se이 공급되면서 열처리가 진행되었다.Cu-In-Ga 전구체 구조에서 In의 증착시간을 변화시켜 CIGS 박막에 미치는 영향에 대해 분석하였다. 이때 기판온도는 $500^{\circ}C$로 고정하거나, $240^{\circ}C$ 열처리 후 $500^{\circ}C$에서 열처리하는 두가지를 적용하여 그 영향을 분석하였다. 또한 Selenium이 Cracking zone 온도와 열처리 시간에 따라 미치는 영향의 변화를 조사하였다. 이에 따른 CIGS 박막의 전기적 특성의 변화를 조사하였다.

  • PDF

Multi Layer Thin Film Deposition Using Rotatable Hexagonal Gun by Sputtering for the Insulating Glass

  • Park, Se-Yeon;Lee, Jong-Ho;Choi, Bum-Ho;Han, Young-Ki;Lee, Kee-Soo
    • Proceedings of the Korean Vacuum Society Conference
    • /
    • 2012.08a
    • /
    • pp.314-315
    • /
    • 2012
  • 최근들어 반도체 및 디스플레이 소자의 구조가 복잡해짐에 따라 다층 박막 증착에 대한 중요성이 날로 증가하고 있다. 본 연구에서는 다층 박막을 효율적으로 증착하기 위해 회전이 가능한 육각건을 개발하였고, 이를 이용하여 에너지 절약형 단열 유리 증착 공정을 구현 하였다. 개발된 회전형 육각건은 기존 플래너형 스퍼터링 건의 확장형으로서 최대 6개의 물질을 하나의 챔버에서 증착이 가능하도록 구성되었다. 기존 공정의 경우 서로 다른 물질 증착을 위해서는 각각의 챔버가 필요한 반면, 회전형 육각건을 이용할 경우 하나의 챔버에서 공정을 진행할 수 있어 원가 절감이 가능하다. Fig. 1은 개발된 회전형 육각건의 모식도로서, 스퍼터링 타겟이 장착 가능한 건과, 회전부로 구성되어 있다. 이를 이용하여 투명전극-금속-투명전극-금속-절연체로 구성되어 있는 에너지 절약형 단열 유리용 다층 박막 증착 공정을 개발하였다. 이때 알루미늄이 도핑된 ZnO (AZO)는 RF 마그네트론 스퍼터로, 금속 박막은 DC 스퍼터, $SiO_2$ 및 SiN과 같은 절연 박막은 $O_2$$N_2$ 분위기에서 반응성 RF 스퍼터로 각각 증착하였다. Base pressure는 $10^{-7}$ torr였으며, 증착 시 공정 압력은 1~3 mTorr로 조정하였다. 증착 균일도 향상을 위해 20 rpm의 속도로 기판을 회전시켰다. Fig. 2(a)는 ZnO-Ag-ZnO 구조로 이루어진 다층 박막의 단면을 관찰한 투과전자 현미경 사진으로 각 층간의 계면이 뚜렷하게 나타남을 확인할 수 있으며, 각 층간의 intermixing 현상이 발생하지 않음을 확인 가능하다. 이를 보완하기 위해 Fig. 2(b)에서 보는 바와 같이 XPS를 이용하여 depth profile을 측정하였다. 각 층에서 서로 다른 물질이 발견되는 현상, 즉 교차 오염이 발생함에 따라 나타나는 intermixing 없이 거의 순수한 형태의 ZnO, Ag 박막 성분이 검출되었다. 이는 6개의 서로 다른 물질이 장착된 회전형 육각건을 이용하여 고 품질의 다층 박막 증착이 가능함을 제시하는 결과이다. 증착된 다층 박막의 균일도는 3.8%, 가시광선 영역에서 80% 이상의 투과도, 면저항 값은 3 ${\Omega}/{\Box}$ 이하를 보임으로서 에너지 절약형 단열 유리로서의 사양을 만족시키는 결과를 제시하였다.

  • PDF