• Title/Summary/Keyword: SZO

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Electrical and optical Properties $SiO_2$ doped ZnO film transparent conductive oxide(TCO)

  • Bae, Kang;Ryu, Sung-Won;Hong, Jae-Suk;Park, Jeong-Sik;Park, Seoung-Hwan;Kim, Hwa-Min
    • 한국정보디스플레이학회:학술대회논문집
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    • 2009.10a
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    • pp.1437-1439
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    • 2009
  • Electrical and optical properties of $SiO_2$-doped ZnO (SZO) films on the corning 7059 glass substrates by using rfmagnetron sputtering method are investigated. The deposition rate becomes maximum near 3 wt.% and gradually decreases when the $SiO_2$ content further increases. The growth rates at 3 wt.% is $4^{\circ}$A/s. We found that the average transmittance of all films is over 80% in the wavelength range above 500 nm. The optical band gap decreases from 3.52 to 3.33 eV with an increase in thickness. X-ray diffraction patterns show that the film with a relatively low $SiO_2$ content (< 4 wt.%) is amorphous. SZO films at the $SiO_2$ contents of 2 wt.% shows the resistivity of about $3.8{\times}10^{-3}{\cdot}cm$. The sheet resistance decreases with increasing the heat treatment temperature.

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Resistive Switching Properties of Cr-Doped SrZrO3 Thin Film on Si Substrate (실리콘 기판위에서의 Cr-Doped SrZrO3 박막의 저항변화 특성)

  • Yang, Min-Kyu;Ko, Tae-Kuk;Park, Jae-Wan;Lee, Jeon-Kook
    • Korean Journal of Materials Research
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    • v.20 no.5
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    • pp.241-245
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    • 2010
  • One of the weak points of the Cr-doped SZO is that until now, it has only been fabricated on perovskite substrates, whereas NiO-ReRAM devices have already been deposited on Si substrates. The fabrication of RAM devices on Si substrates is important for commercialization because conventional electronics are based mainly on silicon materials. Cr-doped ReRAM will find a wide range of applications in embedded systems or conventional memory device manufacturing processes if it can be fabricated on Si substrates. For application of the commercial memory device, Cr-doped $SrZrO_3$ perovskite thin films were deposited on a $SrRuO_3$ bottom electrode/Si(100)substrate using pulsed laser deposition. XRD peaks corresponding to the (112), (004) and (132) planes of both the SZO and SRO were observed with the highest intensity along the (112) direction. The positions of the SZO grains matched those of the SRO grains. A well-controlled interface between the $SrZrO_3$:Cr perovskite and the $SrRuO_3$ bottom electrode were fabricated, so that good resistive switching behavior was observed with an on/off ratio higher than $10^2$. A pulse test showed the switching behavior of the Pt/$SrZrO_3:Cr/SrRuO^3$ device under a pulse of 10 kHz for $10^4$ cycles. The resistive switching memory devices made of the Cr-doped $SrZrO_3$ thin films deposited on Si substrates are expected to be more compatible with conventional Si-based electronics.

The protection effects from water vapor permeation of inorganic films prepared by electron-beam evaporation technique (전자-선 증착 기술에 의해 성막된 다양한 무기 박막들의 투습 방지 특성)

  • Ryu, Sung-Won;Rhee, Byung-Roh;Kim, Hwa-Min
    • Journal of the Korean Vacuum Society
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    • v.17 no.1
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    • pp.9-15
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    • 2008
  • Various diatomic inorganic films and their composite films are packed as passivation films covering Ca cells on glass substrates by using an electron-beam evaporation technique. When these Ca cells are exposed to an ambient atmosphere, the water vapor penetrating through the passivation layers is absorbed in the Ca cells, resulting in a gradual progress of transparency in the Ca cells, which can be represented by changes of the optical transmittance in the visible range. Compared with the saturation times for the Ca cells to become completely transparent in the atmosphere, the protection effects of water vapor are estimated for various passivation films. The composite films consisting silicon oxide($SiO_2$) and tin oxide($SnO_2$) or zinc oxide(ZnO) are found to show a superior protection effect of water vapor as compared with diatomic inorganic films. Also, the main factors affecting the permeation of water vapor through the oxide films are found to be the polarizability and the packing density.