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The role of various binding materials for trace elemental analysis of powder samples using laser-induced breakdown spectroscopy

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94 Scopus citations

Abstract

Study of various binding materials like potassium bromide, poly(vinyl alcohol), starch, silver and aluminum has been carried out using laser-induced breakdown spectroscopy (LIBS). The role of matrix effects using these five binders on LIBS signal intensity was investigated for better performance of LIBS technique as a quantitative analytical tool. For comparative study of different binders, the signal intensity of different Mg lines at 518.3, 517.2, 383.8 and 279.5 nm wavelengths were recorded for pellets prepared with known concentrations of Mg in these binders. The influence of laser energy on ablated mass under different binding materials and its correlation with LIBS signal intensity has been explored. Optical scanning microscopy images of the ablated crater were studied to understand the laser ablation process. The study revealed that the binding material plays an important role in the generation of LIBS signal. The relative signal intensity measured for a standard Mg line (at 518.3 nm) were 735, 538, 387, 227 and 130 for potassium bromide, starch, poly(vinyl alcohol), silver and aluminum as binders, respectively. This indicates clearly that potassium bromide is better as a binder for LIBS studies of powder samples.

Original languageEnglish
Pages (from-to)642-649
Number of pages8
JournalTalanta
Volume72
Issue number2
DOIs
StatePublished - 30 Apr 2007

Bibliographical note

Funding Information:
The support by the Physics Departments and King Fahd University of Petroleum and Minerals is gratefully acknowledged. One of the author (T.H.) is thankful to National University of Science and Technology and Government of Pakistan for financial support for his Ph.D work.

Keywords

  • Analytical techniques
  • Binding materials
  • Crater effect
  • Environmental pollution
  • LIBS applications
  • Laser-induced break down spectroscopy (LIBS)
  • Matrix effects
  • Trace element detection

ASJC Scopus subject areas

  • Analytical Chemistry

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