• 제목/요약/키워드: metal films

검색결과 1,677건 처리시간 0.033초

수정진동자를 이용한 프탈로시아닌 LB박막의 $NO_2$ 감지 특성 (The Application of Octa-Substituted Metallophthalocyanine Langmuir-Blodgett films for $NO_2$ Measurement)

  • 권현정;이영진;장용근;김종득
    • 센서학회지
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    • 제7권4호
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    • pp.254-262
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    • 1998
  • 수정진동자(QCM)위에 네 종류의 프탈로시아닌($MPc(OEH)_8$, M ${\equiv}$ Cu, Co, Sn, $H_2$) LB박막을 여러 층 적층시킨 후 순수한 질소 분위기 하에서 $NO_2$에 노출시켜 그 농도를 정량화 하였다. 사용한 네 종류의 프탈로시아닌 중에서 중심위치에 금속 이온이 자리하지 않은 $H_2Pc(OEH)_8$ 감응막이 $NO_2$에 대하여 가장 민감한 것으로 나타났다. 그러나 이 박막은 $NO_2$에 노출된 후 질소로 퍼지해도 처음의 주파수를 회복하지 못하는 비가역적인 흡착 양상을 보였다. NMR과 FTIR 스펙트럼 조사 결과 비가역적인 흡착은 빙고링과 프탈로시아닌 곁가지의 결합부위인 ether 그룹에서 일어나는 것으로 판명되었다. 따라서 비가역적으로 흡착이 일어나는 부분을 미리 고농도에서 포화시키는 방법으로 박막을 전처리 한 후 반복실험에 사용하였다. $CuPc(OEH)_8$박막 사용 시 수십 ppm 수준부터 4 ppm의 $NO_2$ 농도까지 정량화가 가능하였고 $H_2Pc(OEH)_8$ 박막의 경우에는 수 ppm부터 35 ppb까지의 낮은 농도까지 정량화가 가능하였다. 또한, 실제 대기 조건을 모사하기 위하여 운반기체를 순수한 질소 대신 공기로 교체하여 $H_2Pc(OEH)_8$ 감응막의 성능을 실험한 결과 산소의 영향으로 센싱 가능 한계가 수백 ppb 수준으로 증가하였다. 습기가 운반기체에 포함된 경우 감지 성능에 매우 큰 영향을 미쳤다.

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다중준위 상변환 메모리를 위한 Ge2Sb2Te5/Ti/W-Ge8Sb2Te11 구조의 전기적 특성 연구 (A Study on the Electrical Characteristics of Ge2Sb2Te5/Ti/W-Ge8Sb2Te11 Structure for Multi-Level Phase Change Memory)

  • 오우영;이현용
    • 한국전기전자재료학회논문지
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    • 제35권1호
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    • pp.44-49
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    • 2022
  • In this paper, we investigated current (I)- and voltage (V)-sweeping properties in a double-stack structure, Ge2Sb2Te5/Ti/W-doped Ge8Sb2Te11, a candidate medium for applications to multilevel phase-change memory. 200-nm-thick and W-doped Ge2Sb2Te5 and W-doped Ge8Sb2Te11 films were deposited on p-type Si(100) substrate using magnetron sputtering system, and the sheet resistance was measured using 4 point-probe method. The sheet resistance of amorphous-phase W-doped Ge8Sb2Te11 film was about 1 order larger than that of Ge2Sb2Te5 film. The I- and V-sweeping properties were measured using sourcemeter, pulse generator, and digital multimeter. The speed of amorphous-to-multilevel crystallization was evaluated from a graph of resistance vs. pulse duration (t) at a fixed applied voltage (12 V). All the double-stack cells exhibited a two-step phase change process with the multilevel memory states of high-middle-low resistance (HR-MR-LR). In particular, the stable MR state is required to guarantee the reliability of the multilevel phase-change memory. For the Ge2Sb2Te5 (150 nm)/Ti (20 nm)/W-Ge8Sb2Te11 (50 nm), the phase transformations of HR→MR and MR→LR were observed at t<30ns and t<65ns, respectively. We believe that a high speed and stable multilevel phase-change memory can be optimized by the double-stack structure of proper Ge-Sb-Te films separated by a barrier metal (Ti).

증착 및 열처리 조건에 따른 AZO/Cu/AZO 박막의 전기적·광학적 특성 평가 (Effect of Deposition and Heat Treatment Conditions on the Electrical and Optical Properties of AZO/Cu/AZO Thin Film)

  • 김찬영;임하은;양가은;권숙정;강찬희;임상철;이택영
    • 한국재료학회지
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    • 제33권4호
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    • pp.142-150
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    • 2023
  • AZO/Cu/AZO thin films were deposited on glass by RF magnetron sputtering. The specimens showed the preferred orientation of (0002) AZO and (111) Cu. The Cu crystal sizes increased from about 3.7 nm to about 8.5 nm with increasing Cu thickness, and from about 6.3 nm to about 9.5 nm with increasing heat treatment temperatures. The sizes of AZO crystals were almost independent of the Cu thickness, and increased slightly with heat treatment temperature. The residual stress of AZO after heat treatment also increased compressively from -4.6 GPa to -5.6 GPa with increasing heat treatment temperature. The increase in crystal size resulted from grain growth, and the increase in stress resulted from the decrease in defects that accompanied grain growth, and the thermal stress during cooling from heat treatment temperature to room temperature. From the PL spectra, the decrease in defects during heat treatment resulted in the increased intensity. The electrical resistivities of the 4 nm Cu film were 5.9×10-4 Ω·cm and about 1.0×10-4 Ω·cm for thicker Cu films. The resistivity decreased as the temperature of heat treatment increased. As the Cu thickness increased, an increase in carrier concentration resulted, as the fraction of AZO/Cu/AZO metal film increased. And the increase in carrier concentration with increasing heat treatment temperature might result from the diffusion of Cu ions into AZO. Transmittance decreased with increasing Cu thicknesses, and reached a maximum near the 500 nm wavelength after being heat treated at 200 ℃.

염료감응형 광전기화학 물분해 전지용 Tri-branched tri-anchoring organic dye 개발 (Tri-branched tri-anchoring organic dye for Visible light-responsive dye-sensitized photoelectrochemical water-splitting cells)

  • 박정현;김재홍;안광순
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.87-87
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    • 2010
  • Photoelectrochemical (PEC) systems are promising methods of producing H2 gas using solar energy in an aqueous solution. The photoelectrochemical properties of numerous metal oxides have been studied. Among them, the PEC systems based on TiO2 have been extensively studied. However, the drawback of a PEC system with TiO2 is that only ultraviolet (UV) light can be absorbed because of its large band gap (3.2 - 3.4 eV). Two approaches have been introduced in order to use PEC cells in the visible light region. The first method includes doping impurities, such as nitrogen, into TiO2, and this technique has been extensively studied in an attempt to narrow the band gap. In comparison, research on the second method, which includes visible light water splitting in molecular photosystems, has been slow. Mallouk et al. recently developed electrochemical water-splitting cells using the Ru(II) complex as the visible light photosensitizer. the dye-sensitized PEC cell consisted of a dye-sensitized TiO2 layer, a Pt counter electrode, and an aqueous solution between them. Under a visible light (< 3 eV) illumination, only the dye molecule absorbed the light and became excited because TiO2 had the wide band gap. The light absorption of the dye was followed by the transfer of an electron from the excited state (S*) of the dye to the conduction band (CB) of TiO2 and its subsequent transfer to the transparent conducting oxide (TCO). The electrons moved through the wire to the Pt, where the water reduction (or H2 evolution) occurred. The oxidized dye molecules caused the water oxidation because their HOMO level was below the H2O/O2 level. Organic dyes have been developed as metal-free alternatives to the Ru(II) complexes because of their tunable optical and electronic properties and low-cost manufacturing. Recently, organic dye molecules containing multi-branched, multi-anchoring groups have received a great deal of interest. In this work, tri-branched tri-anchoring organic dyes (Dye 2) were designed and applied to visible light water-splitting cells based on dye-sensitized TiO2 electrodes. Dye 2 had a molecular structure containing one donor (D) and three acceptor (A) groups, and each ended with an anchoring functionality. In comparison, mono-anchoring dyes (Dye 1) were also synthesized. The PEC response of the Dye 2-sensitized TiO2 film was much better than the Dye 1-sensitized or unsensitized TiO2 films.

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InGaZnO active layer 두께에 따른 thin-film transistor 전기적인 영향

  • 우창호;김영이;안철현;김동찬;공보현;배영숙;서동규;조형균
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 추계학술대회 논문집
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    • pp.5-5
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    • 2009
  • Thin-film-transistors (TFTs) that can be prepared at low temperatures have attracted much attention because of the great potential for transparent and flexible electronics. One of the mainstreams in this field is the use of organic semiconductors such as pentacene. But device performance of the organic TFTs is still limited due to low field-effect mobility and rapid degradation after exposing to air. Alternative approach is the use of amorphous oxide semiconductors as a channel. Amorphous oxide semiconductors (AOSs) based TFTs showed the fast technological development, because AOS films can be fabricated at room temperature and exhibit the possibility in application like flexible display, electronic paper, and larges solar cells. Among the various AOSs, a-IGZO has lots of advantages because it has high channel mobility, uniform surface roughness and good transparency. [1] The high mobility is attributed to the overlap of spherical s-orbital of the heavy post-transition metal cations. This study demonstrated the effect of the variation in channel thickness from 30nm to 200nm on the TFT device performance. When the thickness was increased, turn-on voltage and subthreshold swing was decreased. The a-IGZO channels and source/drain metals were deposited with shadow mask. The a-IGZO channel layer was deposited on $SiO_2$/p-Si substrates by RF magnetron sputtering, where RF power is 150W. And working pressure is 3m Torr, at $O_2/Ar$ (2/28 sccm) atmosphere. The electrodes were formed with electron-beam evaporated Ti (30 nm) and Au (70 nm) bilayer. Finally, Al (150nm) as a gate metal was thermal-evaporated. TFT devices were heat-treated in a furnace at 250 $^{\circ}C$ and nitrogen atmosphere for 1hour. The electrical properties of the TFTs were measured using a probe-station. The TFT with channel thickness of 150nm exhibits a good subthreshold swing (SS) of 0.72 V/decade and on-off ratio of $1{\times}10^8$. The field effect mobility and threshold voltage were evaluated as 7.2 and 8 V, respectively.

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Co/Ti이중박막을 이용한 $CoSi_2$에피박막형성에 관한 연구 (A Study on the Formation fo Epitaxial $CoSi_2$ Thin Film using Co/Ti Bilayer)

  • 김종렬;배규식;박윤백;조윤성
    • 한국재료학회지
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    • 제4권1호
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    • pp.81-89
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    • 1994
  • 전자빔 증착법을 사용하여 10nm두께의 Ti과 18nm두께의 Co를 Si(100)기판에 증착한 후, $N_{2}$분위기에서 $900^{\circ}C$, 20초 급속 열처리하여, Co/Ti 이중금속박막의 역전을 유도함으로서 $CoSi_{2}$박막을 형성하였다. 4점 탐침기로 측정한 면저항은 3.9Ω/ㅁ 었으며, 열처리 시간을 증가해도 이값은 유지하여 열적 안정성을 나타내었다. XRD 결과는 형성된 실리사이드는 기판과 에피관계를 갖는 $CoSi_{2}$상 임을 보였으며, SEM 사진은 평탄한 표면을 나타내었다. 단면 TEM 사진은 기판위에 형성된 박막층은 70nm 두께의 $CoSi_{2}$ 에피박막과 그위에 두개의 C0-Ri-Si합금층등 세개의 층으로 되어 있음을 보였다. AES 분석은, 기판상의 자연산화막을 형성할 수 있었음을 보여주었다. AES분석은, 기판상의 잔연산화막이 열처리초기, Ti에 의해 제거된후 Co가 원자적으로 깨끗한 Si기판에 확산하여 $CoSi_{2}$에피박막을 형성할 수 있었음을 보여주었다. $700^{\circ}C$, 20초 + $900^{\circ}C$, 20초 이중 열처리를 한 경우, $CoSi_{2}$결정성장으로 면저항값은 약간 낮아졌으나, 박막의 표면과 계면이 거칠었다. 이 $CoSi_{2}$에피박막의 실제 소자에의 적용방안과 막의 역전을 통한 에피박막형성의 기제를 열역학 및 kinetics 관점에서 고찰하였다.

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Metal/Ferroelectric/Insulator/Semiconductor 구조의 결정 구조 및 전기적 특성에 관한 연구 (Characteristics of the Crystal Structure and Electrical Properties of Metal/Ferroelectric/Insulator/Semiconductor)

  • 신동석;최훈상;최인훈;이호녕;김용태
    • 한국진공학회지
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    • 제7권3호
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    • pp.195-200
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    • 1998
  • 본 연구에서는 강유전체 박막의 게이트 산화물로 사용한 $Pt/SrBi_2Ta_2O_9(SBT)/CeO_2/Si(MFS)$와 Pt/SBT/Si(MFS) 구조의 결정 구조 및 전기적 성질 의 차이를 연구하였다. XRD 및 SEM 측정 결과 SBT/$CeO_2$/Si박막은 약5nm정도의 $SiO_2$층 이 형성되었고 비교적 평탄한 계면의 미세구조를 가지는 반면, SBT/Si는 각각 약6nm와 7nm정도의 $SiO_2$층과 비정질 중간상층이 형성되었음을 알 수 있다. 즉 CeO2 박막을 완충층 으로 사용함으로써 SBT박막과 Si기판의 상호 반응을 적절히 억제할 수 있음을 확인하였다. Pt/SBT/$CeO_2/Pt/SiO_2$/와 Pt/SBT/Pt/$SiO_2$/Si구조에서 Polarization-Electric field(P-E) 특 성을 비교해 본 결과 CeO2박막의 첨가에 따라 잔류분극값은 감소하였고 항전계값은 증가하 였다. MFIS구조에서 memory window값은 항전계값과 직접적 관련이 있으므로 이러한 항 전계값의 증가는 MFIS구조에서의 memory window값이 증가할 수 있음을 나타낸다. Pt-SBT(140nm)/$CeO_2$(25nm)/Si구조에서 Capacitance-Voltage(C-V) 측정 결과로부터 동작 전압 4-6V에서 memory wondows가 1-2V정도로 나타났다. SBT박막의 두께가 증가할수록 memory window값은 증가하였는데 memory wondows가 1-2V정도로 나타났다. SBT박막의 두께가 증가할수록 memory window값은 증가하였는데 이는 SBT박막에 걸리는 전압강하가 증가하기 때문인 것으로 생각되어진다. Pt/SBT/$CeO_2$/Si의 누설전류는 10-8A/cm2정도였고 Pt/SBT/Si 구조에서는 약10-6A/cm2정도로 약간 높은 값을 나타내었다.

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InGaP/GaAs 이중접합 기반의 고효율 플렉시블 태양전지 제조기술 연구 (Flexible InGaP/GaAs Double-Junction Solar Cells Transferred onto Thin Metal Film)

  • 문승필;김영조;김강호;김창주;정상현;신현범;박경호;박원규;안연식;강호관
    • Current Photovoltaic Research
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    • 제4권3호
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    • pp.108-113
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    • 2016
  • III-V compound semiconductor based thin film solar cells promise relatively higher power conversion efficiencies and better device reliability. In general, the thin film III-V solar cells are fabricated by an epitaxial lift-off process, which requires an $Al_xGa_{1-x}As$ ($x{\geq}0.8$) sacrificial layer and an inverted solar cell structure. However, the device performance of the inversely grown solar cell could be degraded due to the different internal diffusion conditions. In this study, InGaP/GaAs double-junction solar cells are inversely grown by MOCVD on GaAs (100) substrates. The thickness of the GaAs base layer is reduced to minimize the thermal budget during the growth. A wide band gap p-AlGaAs/n-InGaP tunnel junction structure is employed to connect the two subcells with minimal electrical loss. The solar cell structures are transferred on to thin metal films formed by Au electroplating. An AlAs layer with a thickness of 20 nm is used as a sacrificial layer, which is removed by a HF:Acetone (1:1) solution during the epitaxial lift-off process. As a result, the flexible InGaP/GaAs solar cell was fabricated successfully with an efficiency of 27.79% under AM1.5G illumination. The efficiency was kept at almost the same value after bending tests of 1,000 cycles with a radius of curvature of 10 mm.

폴리페닐카보실란을 이용한 SiOC가 코팅된 스테인리스스틸 제조 및 이의 내부식성 특징 (SiOC Coating on Stainless Steel Using Polyphenylcarbosilane, and Its Anti-corrosion Properties)

  • 김종일;이윤주;김수룡;김영희;김정일;우창현;최두진
    • 한국재료학회지
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    • 제21권1호
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    • pp.8-14
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    • 2011
  • To improve the chemical stability of metal, the ceramic coatings on metallic materials have attracted interest from many researchers due to the chemical inertness of ceramic materials. To endure strong acids, SiOC coating on metal substrate was carried out by dip coating method using 20wt% polyphenylcarbosilane solution; SiC powder was added to the solution at 10wt% and 15wt% to improve the mechanical properties and to prevent cracks of the film. Thermal oxidation as a curing step was carried out at $200^{\circ}C$ for crosslinking of the polyphenylcarbosilane, and the coating samples were pyrolysized at $800^{\circ}C$ under argon to convert the polyphenylcarbosilane to SiOC film. The thicknesses of the SiOC coating films were $2.36{\mu}m$ and $3.16{\mu}m$. The quantities of each element were measured as $SiO_{1.07}C_{6.33}$ by EPMA, and it can be confirmed that the SiOC film from polyphenylcarbosilane was formed in a manner that was carbon rich. The hardness of the SiOC film was found to be 3.2Gpa through nanoindentor measurement. No defect including cracks appeared in the SiOC film. The weight loss of the SiOC coated stainless steel was within 2% after soaking in 10% HCl solution at $80^{\circ}C$ for one week. From these results, SiOC coating shows good potential for application to protect against severe chemical corrosion of stainless steel.

Ge 기판 위에 HfO2 게이트 산화물의 원자층 증착 중 In Situ 질소 혼입에 의한 전기적 특성 변화 (Improved Electrical Properties by In Situ Nitrogen Incorporation during Atomic Layer Deposition of HfO2 on Ge Substrate)

  • 김우희;김범수;김형준
    • 한국진공학회지
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    • 제19권1호
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    • pp.14-21
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    • 2010
  • Ge은 Si에 비하여 높은 이동도를 갖기 때문에 차세대 고속 metal oxide semiconductor field effect transistors (MOSFETs) 소자를 위한 channel 물질로서 각광받고 있다. 그러나 화학적으로 안정한 게이트 산화막의 부재는 MOS 소자에 Ge channel의 사용에 주요한 장애가 되어왔다. 특히, Ge 기판 위에 고품질의 계면 특성을 갖는 게이트 절연막의 제조는 필수 요구사항이다. 본 연구에서, $HfO_xN_y$ 박막은 Ge 기판 위에 플라즈마 원자층 증착법(plasma-enhanced atomic layer deposition, PEALD)을 이용하여 증착되었다. 플라즈마 원자층 증착공정 동안에 질소는 질소, 산소 혼합 플라즈마를 이용한 in situ 질화법에 의하여 첨가되었다. 산소 플라즈마에 대한 질소 플라즈마의 첨가로 성분비를 조절함으로써 전기적 특성과 계면 성질을 향상시키는데 초점을 맞추어서 연구를 진행하였다. 질소 산소의 비가 1:1이었을 때, EOT의 값의 10% 감소를 갖는 고품질의 소자특성을 보여주었다. X-ray photoemission spectroscopy (XPS)와 high resolution transmission electron microscopy (HR-TEM)를 사용하여 박막의 화학적 결합 구조와 미세구조를 분석하였다.