• Title/Summary/Keyword: %24HfSi_xO_y%24

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Study on Electrical Characteristics of Hafnium Silicate Films with Low Temperature O2 Annealing (저온 Osub2 어닐링 공정을 통한 HfSixOy의 전기적 특성 개선)

  • Lee, Jung-Chan;Kim, Kwang-Sook;Jeong, Seok-Won;Roh, Yong-Han
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.24 no.5
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    • pp.370-373
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    • 2011
  • We investigated the effects of low temperature ($500^{\circ}C$) $O_2$ annealing on the characteristics of hafnium silicate ($HfSi_xO_y$) films deposited on a Si substrate by atomic layer deposition (ALD). We found that the post deposition annealing under oxidizing ambient causes the oxidation of residual Hf metal components, resulting in the improvement of electrical characteristics such as flat band voltage shift (${\Delta}V_{fb}$) by hysteresis without oxide capacitance reduction. We suggest that post deposition annealing under oxidizing ambient is necessary to improve the electrical characteristics of $HfSi_xO_y$ films deposited by ALD.

Nano-Mechanical Studies of HfOx Thin Film for Oxygen Outgasing Effect during the Annealing Process (고온 열처리 과정에서 산소 Outgasing 효과에 의한 HfOx 박막의 Nanomechanics 특성 연구)

  • Park, Myung Joon;Kim, Sung Joon;Lee, Si Hong;Kim, Soo In;Lee, Chang Woo
    • Journal of the Korean Vacuum Society
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    • v.22 no.5
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    • pp.245-249
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    • 2013
  • The $HfO_X$ thin film was deposited what it has been paid attention to the next generation oxide thin layer of MOSFET (metal-Oxide semiconductor field-effect-transistor) by rf magnetron sputter on Si (100) substrate. The $HfO_X$ thin film was deposited using a various oxygen gas flows (5, 10, 15 sccm). After deposition, $HfO_X$ thin films were annealed from 400 to $800^{\circ}C$ for 20 min in nitrogen ambient. The electrical characteristics of the $HfO_X$ thin film was improved by leakage current properties, depending on the increase of oxygen gas flow and annealing temperature. In particular, the properties of nano-mechanics of $HfO_X$ thin films were measured by AFM and Nano-indenter. From the results, the maximum indentation depth at the basis of maximum indentation force was increased from 24.9 to 38.8 nm according to increase the annealing temperature. Especially, the indentation depth was increased rapidly at $800^{\circ}C$. The rapid increasement of indentation depth was expected to be due to the change of residual stress in the $HfO_X$ thin film, and this result was caused by relative flux of oxygen outgasing during the annealing process.