• Title/Summary/Keyword: W-N thin film

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Mechanical Property Evaluation of Dielectric Thin Films for Flexible Displays using Organic Nano-Support-Layer (유기 나노 보강층을 활용한 유연 디스플레이용 절연막의 기계적 물성 평가)

  • Oh, Seung Jin;Ma, Boo Soo;Yang, Chanhee;Song, Myoung;Kim, Taek-Soo
    • Journal of the Microelectronics and Packaging Society
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    • v.28 no.3
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    • pp.33-38
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    • 2021
  • Recently, rollable and foldable displays are attracting great attention in the flexible display market due to their excellent form factor. To predict and prevent the mechanical failure of the display panels, it is essential to accurately understand the mechanical properties of brittle SiNx thin films, which have been used as an insulating film in flexible displays. In this study, tensile properties of the ~130 nm- and ~320 nm-thick SiNx thin films were successfully measured by coating a ~190 nm-thick organic nano-support-layer (PMMA, PS, P3HT) on the fragile SiNx thin films and stretching the films as a bilayer state. Young's modulus values of the ~130 nm and ~320 nm SiNx thin films fabricated through the controlled chamber pressure and deposition power (A: 1250 mTorr, 450 W/B: 1000 mTorr, 600 W/C: 750 mTorr, 700 W) were calculated as A: 76.6±3.5, B: 85.8±4.6, C: 117.4±6.5 GPa and A: 100.1±12.9, B: 117.9±9.7, C: 159.6 GPa, respectively. As a result, Young's modulus of ~320 nm SiNx thin films fabricated through the same deposition condition increased compared to the ~130 nm SiNx thin films. The tensile testing method using the organic nano-support-layer was effective in the precise measurement of the mechanical properties of the brittle thin films. The method developed in this study can contribute to the robust design of the rollable and foldable displays by enabling quantitative measurement of mechanical properties of fragile thin films for flexible displays.

Ohmic contact formation of single crystalline 3C-SiC for high temperature MEMS applications (초고온 MEMS용 단결정 3C-SiC의 Ohmic Contact 형성)

  • Chung, Gwiy-Sang;Chung, Su-Yong
    • Journal of Sensor Science and Technology
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    • v.14 no.2
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    • pp.131-135
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    • 2005
  • This paper describes the ohmic contact formation of single crystalline 3C-SiC thin films heteroepitaxially grown on Si(001) wafers. In this work, a TiW (Titanium-tungsten) film as a contact matieral was deposited by RF magnetron sputter and annealed with the vacuum and RTA (rapid thermal anneal) process respectively. Contact resistivities between the TiW film and the n-type 3C-SiC substrate were measured by the C-TLM (circular transmission line model) method. The contact phases and interface the TiW/3C-SiC were evaulated with XRD (X-ray diffraction), SEM (scanning electron microscope) and AES (Auger electron spectroscopy) depth-profiles, respectively. The TiW film annealed at $1000^{\circ}C$ for 45 sec with the RTA play am important role in formation of ohmic contact with the 3C-SiC substrate and the contact resistance is less than $4.62{\times}10^{-4}{\Omega}{\cdot}cm^{2}$. Moreover, the inter-diffusion at TiW/3C-SiC interface was not generated during before and after annealing, and kept stable state. Therefore, the ohmic contact formation technology of single crystalline 3C-SiC using the TiW film is very suitable for high temperature MEMS applications.

Preparation of InN thin films by reactive sputtering (반응성 스퍼터링에 의한 InN 박막 제작)

  • 김영호;송복식;정성훈;문동찬;김선태
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1997.04a
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    • pp.62-65
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    • 1997
  • Indium nitride thin films were deposited on Si(100) substrates by reactive sputtering method. The metallic indium target was sputtered by nitrogen gas with rf sputtering equipment. The surface morphology and cross-section of the InN thin films were investigated by scanning electron microscopy. The crystal orientations were investigated by X-ray diffraction and the Hall effect were measured with van der Pauw method. The indium nitride thin film showed high Hall mobility(215$\textrm{cm}^2$/V-sec) at 5mTorr total pressure and rf power 60W.

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Effect of Annealing Temperature on Thermoelectric Properties of Ag2Se Nanoparticle Thin Films (저온 열처리 공정에 따른 Ag2Se 나노입자 박막의 열전특성)

  • Yang, Seunggen;Cho, Kyoungah;Yun, Junggwon;Choi, Jinyong;Kim, Sangsig
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.65 no.4
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    • pp.611-616
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    • 2016
  • In this study, we synthesized $Ag_2Se$ nanoparticles (NPs) in an aqueous solution and investigated the thermoelectric characteristics of $Ag_2Se$ NPs thin films on plastic substrates. Regardless of thermal annealing treatment, all the $Ag_2Se$ NPs thin films show the negative Seebeck coefficients, indicating the n-type characteristics. As the annealing temperature increases, the electric conductivity increases while the Seebeck coefficient decreases. The electric conductivity of the thin film annealed at $180^{\circ}C$ is larger by $10^6$ times, compared with the as-prepared thin film, And the maximum power density for the thin film annealed at $180^{\circ}C$ is calculated to be $44{\mu}W/cm^2$.

Influence of Substrate Temperature of SCT Thin Film by RF Sputtering Method (RF 스퍼터링법에 의한 SCT 박막의 기판온도 영향)

  • Oh, Y.C.;Kim, J.S.;Cho, C.N.;Shin, C.G.;Song, M.J.;So, B.M.;Choi, W.S.;Kim, C.H.;Lee, J.U.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2004.07b
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    • pp.718-721
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    • 2004
  • The $(Sr_{0.9}Ca_{0.1})TiO_3$(SCT) thin films are deposited on Pt-coated electrode$(Pt/TiN/SiO_2/Si)$ using RF sputtering method at various substrate temperature. The optimum conditions of RF power and $Ar/O_2$ ratio were 140[W] and 80/20, respectively. Deposition rate of SCT thin films was about $18.75[{\AA}/min]$. The crystallinity of SCT thin films were increased with increase of substrate temperature in the temperature range of $100\sim500[^{\circ}C]$. The dielectric constant of SCT thin films were increased with the increase of substrate temperature, and changed almost linearly in temperature ranges of $-80\sim+190[^{\circ}C]$. The current-voltage characteristics of SCT thin films showed the increasing leakage current as the substrate temperature increases.

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A study of WSi$_2$ film peeling off from Si substrate (텅스텐 실리사이드 박막 들뜸에 관한 연구)

  • 한성호;이재갑;김창수;이은구
    • Journal of the Korean institute of surface engineering
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    • v.29 no.1
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    • pp.3-14
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    • 1996
  • High temperature anneal of W-rich silicides, inferior to adherence compared with Si-rich silicides, resulted in the film peeling off from the Si-substrate when WSix thickness reached more than critical thickness. Investigation of the W-rich silicide films peeling off from the substrate revealed that the voids underneath the $WSi_2$ produced through silicide reaction were responsible for the poor adherence of W-rich silicide. In addition, internal stress in the film increased as the silicide thickness increased. In order to promote the adhesion of WSix to Si-substrate, thin Ti-layer was formed between WSi and Si-substrate(WSix/Ti/Si). No voids were observed in $WSi_2$/Ti/Si $N_2$-annealed at $1000^{\circ}C$, thereby leading to an increase of the critical thickness from ~1700$\AA$ to more than 2500$\AA$. However, higher resisiti-vity was obtained in WSix/Ti/Si than in WSix/Si. Finally, different silicide reaction mechanism for the structures(WSix/Si, WSix/Ti/Si) was proposed to explain the formation of voids as well as the role of thin Ti-layer.

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Fabrication of Micro-heaters Using MgO as Medium Layer and It`s Application for Micro-Flowsensors (매개층 산화마그네슘막을 이용한 백금박막 미세발열체의 제작과 마이크로 유량센서에의 응용)

  • 홍석우;조정복;정귀상
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.11a
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    • pp.358-361
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    • 1999
  • This paper describes on the fabrication and characteristics of hot-film type micro-flowsensors integrated with Pt-RTD\`s and micro-heater on the Si substrate, in which MgO thin-films were used as medium layer in order to improve adhesion of Pt thin-films to SiO$_2$ layer The MgO layer improved adhesion of Pt thin-films to SiO$_2$` layer without any chemical reactions to Pt thin-films under high as gas flow rate and its conductivity increased due to increase of heat-loss from sensor to external. Output voltage was 82 mV at N2 flow rate of 2000 sccm/min, heating power of 1.2W. The respons time was about 100 msec when input flow was step-input

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Properties wRh Ca Substitutional Contents of $SrTiO_{3}$ Ceramic Thin Film ($SrTiO_{3}$ 세라믹 박막의 Ca 치환량에 따른 특성)

  • Kim Jin-Sa;Oh Yong-Cheol;Cho Choon-Nam;Shin Cheol-Gi;Song Min-Jong;Choi Woon-Shik;Park Min-Sun;Kim Chung-Hyeok
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.54 no.9
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    • pp.397-402
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    • 2005
  • The ($Sr_{1-x}Ca_x)TiO_3(SCT)$ thin films are deposited on Pt-coated electrode (Pt/TiN/SiO$_{2}$Si) using RF sputtering method with substitutional contents of Ca. The optimum conditions of RF power and Ar/O$_{2}$ ratio were 140(W) and 80/20, respectively. Deposition rate of SCT thin film was about $18.75{\AA}$/min. The dielectric constant was increased with increasing the substitutional contents of Ca, while it was decreased if the substitutional contents of Ca exceeded over $15[mol\%]$. The capacitance characteristics had a stable value within $\pm4[\%]$ in temperature ranges of $-80\~+90[^{\circ}C]$. All SCT thin films used in this study show the phenomena of dielectric relaxation with the increase of frequency, and the relaxation frequency is observed above 200[kHz].

V-I Characteristics of $(Sr_{0.85}Ca_{0.15})TiO_3$ Thin Film by RF Sputtering Method (RF 스퍼터링법에 의한 $(Sr_{0.85}Ca_{0.15})TiO_3$ 박막의 전압-전류 특성)

  • Kim, J.S.;Cho, C.N.;Shin, C.G.;Choi, W.S.;Kim, C.H.;Lee, J.U.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2000.04b
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    • pp.88-91
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    • 2000
  • The $(Sr_{0.85}Ca_{0.15})TiO_3$(SCT) thin films are deposited on Pt-coated electrode(Pt/TiN/$SiO_2$/Si) using RF sputtering method. The crystallinity of SCT thin films is increased with increase of substrate temperature in the temperature range of 200~500$[^{\circ}C]$. V-I characteristics of SCT thin films show the increasing leakage current with the increases of deposition temperature. The conduction mechanism of the SCT thin films observed in the temperature range of 25~100$[^{\circ}C]$ can be divided into four characteristic regions with different mechanism by the increasing current.

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