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Laser induced photoacoustic spectroscopy in liquid samples: temperature and solvent effects

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  • Spectrometric Methods
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Summary

Laser induced photoacoustic spectroscopy (LIPAS) has been confirmed as an analytical tool, suitable for the determination of inorganic and organic species in aqueous and organic solvents, reaching detection limits two orders of magnitude lower than those obtained with conventional spectrophotometry.

A significant influence of the solvent on the enhancement of the magnitude of the LIPAS response waveform of the piezoelectric detector has been found experimentally for inorganic species (neodymium ions) and organic compounds (e.g. β-carotene and the cytochrome c), when water was replaced by organic solvents. This is particularly true, when a laser excitation wavelength above 500 nm was used, where the absorption coefficient for H2O increases drastically.

Furthermore, the temperature dependence of the magnitude of the LIPAS signal has been measured, in the range between 20–70°C in samples containing Nd3+,β-carotene and the macromolecule cytochrome c in various aqueous and organic (polar and non-polar) solvents (H2O, HClO4, acetone, ethanol and petrol ether). A very strong enhancement of the LIPAS response was observed with increasing temperature (a factor of two in an interval between 20 and 40°C) for all inorganic and organic substances in aqueous solution. On the other hand, in polar and non-polar organic solvents only a slight decline of the signals of about 20% was found over the same temperature range.

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References

  1. Pollard PM, Liezers M, McMillan JW, Phillips G, Thomason HP, Ewart FT (1988) Radiochim Acta 44/45:95–101

    Google Scholar 

  2. Klenze P, Kim JI (1989) Mat Res Soc Symp Proc 127:985–990

    Google Scholar 

  3. Sawada T, Oda S, Shimizu H, Kamada H (1979) Anal Chem 51:688–690

    Google Scholar 

  4. Torres RA, Palmer CEA, Baisden PA, Russo RE, Silva RJ (1990) Anal Chem 62:298–303

    Google Scholar 

  5. Lahmann W, Ludewig HJ, Welling H (1977) Anal Chem 49:549–551

    Google Scholar 

  6. Adams MJ, Beadle BC, King AA, Kirkbright GF (1976) Analyst 101:553–561

    Google Scholar 

  7. Voigtmann E, Jurgensen A, Winefordner JD (1981) Anal Chem 53:1921–1923

    Google Scholar 

  8. Beitz JV, Bowers DL, Doxtader MM, Maroni VA, Reed DT (1988) Radiochim Acta 44/45:87–93

    Google Scholar 

  9. Tam AC, Patel CKN (1979) Appl Optics 18:3348–3358

    Google Scholar 

  10. Berthoud T, Delorme N (1987) Appl Spectrosc 41:15–19

    Google Scholar 

  11. Nelson ET, Patel CKN (1981) Opt Lett 6:354–356

    Google Scholar 

  12. Stahr B (1990) Ph D Thesis, Karlsruhe (in prep.)

  13. Klesper I (1966) Z Phys Chem 51:1–12

    Google Scholar 

  14. Gray DE (ed) (1972) Am Inst Phys Handbook 3rd edn. McGraw-Hill, New York, p 157

    Google Scholar 

  15. Kell SG (1967) J Chem Eng Data 12:66–69

    Google Scholar 

  16. Schaaffs W (1967) In: Landolt-Boernstein, vol II (5) Springer, Berlin Heidelberg New York, pp 58–72

    Google Scholar 

  17. Kaye GWC, Laby TH (1973) Tab Phys Chem Const, 14th edn, pp 55–66

  18. Rowlinson LS (1953) Liquid and liquid mixtures. Butterworth, London, pp 37–39

    Google Scholar 

  19. Wilson W, Bradley D (1964) J Acoust Soc Am 36:333–337

    Google Scholar 

  20. Patel CKN, Tam AC (1979) Appl Phys Lett 34:467–470

    Google Scholar 

Download references

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Adelhelm, K., Faubel, W. & Ache, H.J. Laser induced photoacoustic spectroscopy in liquid samples: temperature and solvent effects. Fresenius J Anal Chem 338, 259–264 (1990). https://doi.org/10.1007/BF00323020

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  • DOI: https://doi.org/10.1007/BF00323020

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