4.6 Article

Aerogel-Lined Capillaries for Raman Signal Gain of Aqueous Mixtures

期刊

SENSORS
卷 22, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/s22124388

关键词

Raman spectroscopy; optofluidic waveguide; Raman sensor; aerogel; liquid core waveguide; backward scattering; waveguide capillary cell; metal-lined hollow-core fibre

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  1. German Federal Ministry of Education and Research [FKZ: 13N15233]

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The experimental study demonstrated that confining liquid water in aerogel-lined capillaries significantly increased the Raman signal with better stability compared to silver-lined capillaries. The aerogel-lined capillaries showed superior performance when exposed to mixtures of water, sugar, ethanol and acetic acid.
We report an experimental study on the gain of the Raman signal of aqueous mixtures and liquid water when confined in aerogel-lined capillaries of various lengths of up to 20 cm and various internal diameters between 530 and 1000 mu m. The lining was made of hydrophobised silica aerogel, and the carrier capillary body consisted of fused silica or borosilicate glass. Compared to the Raman signal detected from bulk liquid water with the same Raman probe, a Raman signal 27 times as large was detected when the liquid water was confined in a 20 cm-long capillary with an internal diameter of 700 mu m. In comparison with silver-lined capillaries of the same length and same internal diameter, the aerogel-lined capillaries featured a superior Raman signal gain and a longer gain stability when exposed to mixtures of water, sugar, ethanol and acetic acid.

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