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Effect of N2O/SiH4 flow ratios on properties of amorphous silicon oxide thin films deposited by inductively-coupled plasma chemical vapor deposition with application to silicon surface passivation

  • Vinh Ai Dao
  • , Van Duy Nguyen
  • , Jongkyu Heo
  • , Hyungwook Choi
  • , Youngkuk Kim
  • , Nariangadu Lakshminarayan
  • , Junsin Yi
  • Sungkyunkwan University
  • University of Madras

Research output: Contribution to journalArticlepeer-review

Abstract

Silicon oxide (SiOx) thin films have been deposited at a substrate temperature of 300 °C by inductively-coupled plasma chemical vapor deposition (ICP-CVD) using N2O/SiH4 plasma. The effect of N2O/SiH4 flow ratios on SiOx film properties and silicon surface passivation were investigated. Initially, the deposition rate increased up to the N2O/SiH4 flow ratio of 2/1, and then decreased with the further increase in N2O/SiH4 flow ratio. Silicon oxide films with refractive indices of 1.47-2.64 and high optical band-gap values (>3.3 eV) were obtained by varying the nitrous oxide to silane gas ratios. The measured density of the interface states for films was found to have minimum value of 4.3 × 1011 eV-1 cm-2. The simultaneous highest τeff and lowest density of interface states indicated that the formation of hydrogen bonds at the SiOx/c-Si interface played an important role in surface passivation of p-type silicon.

Original languageEnglish
Pages (from-to)410-414
Number of pages5
JournalVacuum
Volume84
Issue number3
DOIs
StatePublished - 5 Nov 2009

Keywords

  • ICP-CVD
  • Silicon oxide
  • Surface passivation

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