Abstract

Laser-based in-situ diagnostics based on laser-induced fluorescence and incandescence are used to characterize reaction conditions such as temperature, species concentration, and particle size with high spatial and temporal resolution to understand and optimize the gas-phase synthesis of functional nanomaterials.

© 2014 Optical Society of America

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More Like This
In-Situ Laser Diagnostics of Temperature, Intermediate Species Concentration and Particle Sizes in Gas-Phase Nanoparticle Synthesis

C. Hecht, H. Yang, T. Dreier, and C. Schulz
LWB2 Laser Applications to Chemical, Security and Environmental Analysis (LACSEA) 2010

Spatially-resolved measurements of gas-phase temperature and SiO concentration in a low-pressure nanoparticle synthesis reactor using laser-induced fluorescence

O. M. Feroughi, A. Langer, T. Dreier, and C. Schulz
LM1D.2 Laser Applications to Chemical, Security and Environmental Analysis (LACSEA) 2014

In-situ laser diagnostic of nanoparticle formation and transport by phase-selective laser-induced breakdown spectroscopy

Yihua Ren
LM3A.1 Laser Applications to Chemical, Security and Environmental Analysis (LACSEA) 2020