• 제목/요약/키워드: SUBSTRATE SIZE

검색결과 1,597건 처리시간 0.027초

Controllable Growth of Single Layer MoS2 and Resistance Switching Effect in Polymer/MoS2 Structure

  • Park, Sung Jae;Chu, Dongil;Kim, Eun Kyu
    • Applied Science and Convergence Technology
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    • 제26권5호
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    • pp.129-132
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    • 2017
  • We report a chemical vapor deposition approach and optimized growth condition to the synthesis of single layer molybdenum disulfide ($MoS_2$). Obtaining large grain size with continuous $MoS_2$ atomically thin films is highly responsible to the growth distance between molybdenum trioxide source and receiving silicon substrate. Experimental results indicate that triangular shape $MoS_2$ grain size could be enlarged up to > 80um with the precisely controlled the source-to-substrate distance under 7.5 mm. Furthermore, we demonstrate fabrication of a memory device by employing poly(methyl methacrylate) (PMMA) as insulating layer. The fabricated devices have a PMMA-$MoS_2$/metal configuration and exhibit a bistable resistance switching behavior with high/low-current ratio around $10^3$.

Development of Coencapsulating Technology for the Production of Chitosanoligosaccharides

  • Lee, Ki-Sun;Chio, Myeong-Rak;Lim, Hyun-Soo
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제5권5호
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    • pp.345-349
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    • 2000
  • To easily separate chitosanoligosaccharides by size exclusion, an coencapsulating technology of substrate and enzyme was developed. The membrane was composed of alginate and a divalent cation such as calcium. Chitosan and chitosanase were enveloped in this membrane and the product released to medium by size exclusion. The capsule was stabilized in a 2% acetic acid solution (pH 5.0) containing 0.145 M CaCO$_3$. The leakage of substrate caused by the agitation speed was controlled by increasing alginate and CaCO$_3$concentrations. The lower limit of the alginate concentration and the agitation speed were 0.5% and 49rpm, respectively. Membrane thickness and capsule diameter were 10$\mu\textrm{m}$ and 2.5mm, respectively. By TLC analysis, the composition of chitosanoligosaccharides were mainly 3-6 mers. The molecular weight distribution of the released oligosaccharides ranged from 262 to 3624 Da by GPC.

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전자선 증착기술에 의해 성장된 다결정 CdSe 박막의 광학적 특성 (Optical properties of the polycrystalline CdSe thin films grown by the electron-beam evaporation technique)

  • 김화민
    • 한국진공학회지
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    • 제9권1호
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    • pp.60-68
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    • 2000
  • The optical constants ($E_g^d$, n, K) of the polycrystalline CdSe thin films deposited on the glass substrate by the electron-beam evaporation technique are determined over 400~2,500 nm photon wavelengths. In order to explain the variation of the optical contents with film thickness and substrate temperatures, the surface microstructural parameter are investigated by AFM (atomic forced microscope( images for the films deposited by different growth conditions. It is shown that the variations of optical constants are close related to changes of the surface morphology of the CdSe thin films. The decrease in the band gap with film thickness is connected with quantum size effects due to increase of the grain size. The refractive index of CdSe films decrease with increasing the grain size of the films, and the dispersion of the refractive index followed a single oscillator model according to the Sellmeier formulation.

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기판의 크기가 마이크로스트립 패치 안테나의 방사특성에 미치는 효과 (Effect of Finite Substrate Plane on the Radiation Characteristics of Microstrip Patch Antennas)

  • 김상우;김태영;김부균;신종덕;김세윤
    • 대한전자공학회논문지TC
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    • 제44권11호
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    • pp.33-41
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    • 2007
  • 기판의 크기가 마이크로스트립 패치 안테나의 방사특성에 미치는 영향에 대하여 알아보았다. 기판의 폭을 고정시키고 길이를 변화시킬 때 방사패턴 특성이 크게 변화하나 기판 길이를 고정시키고 폭을 변화시킬 때는 방사패턴 특성이 거의 변화하지 않음을 볼 수 있었다. 기판 크기에 따른 방사패턴 특성의 변화는 기판 두께가 두꺼울 때가 작을 때보다 더 큼을 볼 수 있었다.

RF Magnetron Sputtering에 의해 증착된 Ni-Zn-Cu Ferrite 박막의 물성에 미치는 기판온도의 영향 (Effects of the Substrate Temperature on the Properties of Ni-Zn-Cu Ferrite Thin Films Deposited by RF Magnetron Sputtering)

  • 공선식;조해석;김형준;김경용
    • 한국세라믹학회지
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    • 제29권5호
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    • pp.383-390
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    • 1992
  • We investigated the effect of substrate on the properties of the Ni-Zn-Cu ferrite thin films deposited on SiO2 (1000∼3000${\AA}$) / Si (100) substrate at various conditions by rf magnetron sputtering. A disktype Ni-Zn-Cu ferrite sintered by conventional ceramic process and argon gas were used as a target and a sputtering gas, repectively. The compositions of the thin films measured by EPMA were similar to target composition (Fe: 65.8 at%, Ni: 12.7 at%, Cu: 6.7 at%, Zn: 14.8 at%) irrespective of substrate temperature. Amorphous thin films were deposited when substrate was not intentionally heated, but the films came to crystallize with increasing substrate temperature, and crystalline thin films were deposited at substrate temperature above 200$^{\circ}C$. Below 250$^{\circ}C$ saturation magnetization (Ms), remanence (Mr) and coercivity (Hc) of the ferrite thin film increased with the substrate temperature due to the increase of grain size and the improvement of crystallinity. And above 250$^{\circ}C$, Ms, Mr increased slightly, but Hc of the amorphous thin films increased due to crystallization, whereas that of the crystalline thin films decreased because of grain growth and stress release.

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Substrate Ground State Binding Energy Concentration Is Realized as Transition State Stabilization in Physiological Enzyme Catalysis

  • Britt, Billy Mark
    • BMB Reports
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    • 제37권5호
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    • pp.533-537
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    • 2004
  • Previously published kinetic data on the interactions of seventeen different enzymes with their physiological substrates are re-examined in order to understand the connection between ground state binding energy and transition state stabilization of the enzyme-catalyzed reactions. When the substrate ground state binding energies are normalized by the substrate molar volumes, binding of the substrate to the enzyme active site may be thought of as an energy concentration interaction; that is, binding of the substrate ground state brings in a certain concentration of energy. When kinetic data of the enzyme/substrate interactions are analyzed from this point of view, the following relationships are discovered: 1) smaller substrates possess more binding energy concentrations than do larger substrates with the effect dropping off exponentially, 2) larger enzymes (relative to substrate size) bind both the ground and transition states more tightly than smaller enzymes, and 3) high substrate ground state binding energy concentration is associated with greater reaction transition state stabilization. It is proposed that these observations are inconsistent with the conventional (Haldane) view of enzyme catalysis and are better reconciled with the shifting specificity model for enzyme catalysis.

유한한 기판 크기가 E-평면상에 배열된 두 개의 패치안테나간의 상호결합에 미치는 영향 (Effect of a Finite Substrate on the Mutual Coupling of a Pair of Microstrip Patch Antennas Positioned along the E-plane)

  • 김태영;김군수;김부균
    • 대한전자공학회논문지TC
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    • 제47권6호
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    • pp.26-34
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    • 2010
  • 기판 크기가 유한하면 두 패치안테나간의 상호결합은 기판 가장자리에서 회절되어 들어오는 표면파에 의해 영향을 받는다. 상호결합이 최소가 되는 패치안테나 중심과 기판 가장자리까지의 거리는 접지된 기판의 유효 유전상수에 의해 결정됨을 알 수 있었다. 상호결합이 최소화되는 기판 크기는 이미지 방법을 사용하여 쉽게 계산 할 수 있다. 이미지 방법으로 계산한 최적화된 기판 크기와 전산모의 결과로 얻어진 최적화된 기판 크기가 잘 일치하였다.

Adsorption of Colloidal Silica Particles on a Glass Substrate

  • Sim, Soo-Man
    • 한국세라믹학회지
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    • 제39권11호
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    • pp.1011-1016
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    • 2002
  • Colloidal particles of silica (100 nm in size) were electrostatically dispersed and adsorbed on a glass substrate coated with silica sol or alumina sol. Stability of the suspensions and microstructure of the adsorbed particle layers were discussed in terms of total potential energies between the particles and the substrate. Well-dispersed suspension resulted in a layer with densely packed and regularly arranged particles, whereas less stable suspension resulted in a porous layer with loosely packed and irregularly arranged particles. Despite repulsive interactions between the particles and the substrate coated with silica sol, the observed adsorption can be attributed to chemical bonds formed at the interface between the particle and silica sol. In contrast, the adsorption of the particles on the substrate coated with alumina sol formed a layer with strongly adhered and densely packed particles, due to large attractive interactions between the particles and alumina sol.

펄스레이저 증착법에서 기판-플룸 각 변화가 ZnO 박막의 구조 및 광학적 특성에 미치는 영향 (Structural and Optical Properties of ZnO Thin Films Grown at Various Plume-Substrate Angles by Pulsed Laser Deposition)

  • 강정석;강홍성;김재원;이상렬
    • 한국전기전자재료학회논문지
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    • 제17권3호
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    • pp.329-332
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    • 2004
  • ZnO thin films were grown with different plume-substrate angles by pulsed laser deposition (PLD) to control the amount of ablated species arriving on a substrate per laser shot. The angles between plume propagation direction and substrate plane (P-S angle) were 0$^{\circ}$, 45$^{\circ}$ and 90$^{\circ}$. The growth time was changed in order to adjust film thickness. From the XRD pattern exhibiting a dominant (002) and a minor (101) XRD peak of ZnO, all films were found to be well oriented along c-axis. From the AFM image, it was found that the grain size of ZnO thin film was increased, as P-S angle decreased. UV intensity investigated by PL (Photoluminescence) increased as P-S angle decreased.

기판 온도 변화에 따라 증착되어진 ZnO 박막의 특성과 유기 태양전지의 버퍼층으로의 응용 (Characteristics of ZnO Thin Films Deposited with the Variation of Substrate Temperature and the Application As Buffer Layer in Organic Solar Cell)

  • 박용섭
    • 한국전기전자재료학회논문지
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    • 제28권10호
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    • pp.648-651
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    • 2015
  • The characterizations of zinc oxide (ZnO) buffer layers grown by unbalanced magnetron (UBM) sputtering under various substrate temperatures for inverted organic solar cells (IOSCs) were investigated. UBM sputter grown ZnO films exhibited higher crystallinity with increasing the substrate temperature, resulting in uniform and large grain size. Also, the electrical properties of ZnO films are improved with increasing substrate temperature. In the results, the performance of IOSCs critically depended on the substrate temperature during the film growth because the crystalllinity of the ZnO film affect the carrier mobility of the ZnO film.