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- W2069496995 abstract "An Al2O3 xerogel with a distinctive microstructure is studied for the application of laser absorption spectroscopy of oxygen. The xerogel has an exceptionally high porosity (up to 88%) and a large pore size (up to 3.6 µm). Using the method of gas-in-scattering media absorption spectroscopy (GASMAS), a long optical path length (about 3.5m) and high enhancement factor (over 300 times) are achieved as the result of extremely strong multiple-scattering when the light is transmitted through the air-filled, hollow-sphere alumina xerogel. We investigate how the micro-physical feature influences the optical property. As part of the optical sensing system, the material's gas exchange dynamics are also experimentally studied." @default.
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- W2069496995 date "2014-01-29" @default.
- W2069496995 modified "2023-10-10" @default.
- W2069496995 title "Laser absorption spectroscopy of oxygen confined in highly porous hollow sphere xerogel" @default.
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- W2069496995 doi "https://doi.org/10.1364/oe.22.002584" @default.
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