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January 22, 2026Applied Physics Letters0 citationsOpen Access

Spectral, temporal, and volumetric measurement of phase-selective laser-induced breakdown spectroscopy on TiC nanoparticles

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HLHecong LiuTETorsten EndresJMJan Menser

Key Points

  • The aim is to advance in situ diagnostics of titanium-based nanoparticles during their synthesis using phase-selective laser-induced breakdown spectroscopy.
  • Utilized streak camera-coupled spectrometer for time-resolved spectral analysis.
  • Employed volumetric measurement in a microwave plasma reactor.
  • Integrated principles of computed tomography for enhanced imaging of nanoparticle distribution.
  • Achieved effective localization of gas-to-solid phase transitions in nanoparticle synthesis.
  • Demonstrated improved diagnostic capabilities using time-resolved spectra for TiC nanoparticles.

Abstract

Phase-selective laser-induced breakdown spectroscopy (PS-LIBS) is an emerging technique for in situ diagnostics of nanoparticle distribution in aerosols, potentially also distinguishing between particle phases, e.g., localizing gas-to-solid phase transitions. Its application has so far been largely confined to point measurement or one- or two-dimensional imaging, with limited exploration of spectral and temporal dynamics. In this study, a streak camera-coupled spectrometer was employed to capture time-resolved spectra of PS-LIBS for titanium-based nanoparticle aerosols. By integrating this approach with excitation in extended probe volumes and computed tomography principles, we achieved volumetric measurement of PS-LIBS within a microwave plasma reactor during the synthesis of TiC nanoparticles. This advancement demonstrates the potential of PS-LIBS in in situ diagnostics in nanoparticle synthesis.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6971bd4c642b1836717e202chttps://doi.org/10.1063/5.0303495
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