• DocumentCode
    787739
  • Title

    Simultaneous qualitative analysis of volatile and nonvolatile organic contamination on silicon wafer by online pyrolysis mass spectrometry

  • Author

    Ketola, Raimo A. ; Kiuru, Jari ; Tarkiainen, Virpi ; Kiviranta, Arto ; Räsänen, Jaakko ; Ritala, Heini ; Eränen, Simo

  • Author_Institution
    Tech. Res. Center of Finland, Finland
  • Volume
    5
  • Issue
    4
  • fYear
    2005
  • Firstpage
    652
  • Lastpage
    658
  • Abstract
    This paper presents a new analytical setup that aims for a qualitative analysis of both volatile and nonvolatile organic contamination simultaneously from one whole silicon wafer. The aim was to develop a screening method that can be used for the identification of the source(s) of organic contamination for quality control in the manufacturing process. The model compounds used in the analysis were a solvent (toluene), a photoresist, and a resist stripper solution. The instrumental setup consisted of a heatable chamber for sample handling and an online mass spectrometer for detection. The organic contamination could be directly desorbed from the surface of the silicon wafer (volatile organic components) or pyrolyzed/desorbed from the surface in air atmosphere at elevated temperature (nonvolatile components), and consequently detected by the mass spectrometer. The mass spectra and the ion chromatograms obtained by the mass spectrometer during the heating of the silicon wafer can be used for the identification of all organic compounds on the silicon wafer and thus, for the identification of a possible source of contamination.
  • Keywords
    chromatography; contamination; integrated circuit manufacture; integrated circuit technology; mass spectra; mass spectroscopic chemical analysis; organic compounds; quality control; contamination analysis; ion chromatograms; manufacturing process; mass spectra; membrane-inlet mass spectrometry; nonvolatile organic contamination; online pyrolysis mass spectrometry; organic contamination source; photoresist material; quality control; resist stripper solution; silicon wafer; toluene solvent; volatile organic contamination; Atmosphere; Instruments; Manufacturing processes; Mass spectroscopy; Quality control; Resists; Semiconductor device modeling; Silicon; Solvents; Surface contamination; Membrane-inlet mass spectrometry (MS); nonvolatile organic compound (non-VOC); online mass spectrometry (MS); organic contamination; pyrolysis; silicon wafer; volatile organic compound (VOC);
  • fLanguage
    English
  • Journal_Title
    Device and Materials Reliability, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1530-4388
  • Type

    jour

  • DOI
    10.1109/TDMR.2005.860563
  • Filename
    1573680