Material characterization and investigation are the basis for improving the performance of electrochemical devices. However, many compounds with electrochemical applications are sensitive to atmospheric gases and moisture; therefore, even their characterization should be performed in a controlled atmosphere. In some cases, it is impossible to execute such investigations in a glove box, and, therefore, in the present work, an air-tight 3D printed cell was developed that preserves samples in a controlled atmosphere while allowing spectroscopic measurements in reflectance geometry. Equipped with a cheap 1 mm thick CaF2 optical window or a more expensive 0.5 mm thick ZnS window, the cell was used for both optical photothermal infrared and Raman spectroscopy measures; imaging of the samples was also possible. The far-infrared range reflectance measurements were performed with a cell equipped with a diamond window.

A 3D printed air-tight cell adaptable for far-infrared reflectance, optical photothermal infrared spectroscopy, and raman spectroscopy measurements / Paolone, Annalisa; Celeste, Arcangelo; Di Pea, Maria; Brutti, Sergio; Borondics, Ferenc; Capitani, Francesco. - In: INSTRUMENTS. - ISSN 2410-390X. - 8:4(2024), pp. 1-11. [10.3390/instruments8040054]

A 3D printed air-tight cell adaptable for far-infrared reflectance, optical photothermal infrared spectroscopy, and raman spectroscopy measurements

Paolone, Annalisa
;
Celeste, Arcangelo;Di Pea, Maria;Brutti, Sergio;
2024

Abstract

Material characterization and investigation are the basis for improving the performance of electrochemical devices. However, many compounds with electrochemical applications are sensitive to atmospheric gases and moisture; therefore, even their characterization should be performed in a controlled atmosphere. In some cases, it is impossible to execute such investigations in a glove box, and, therefore, in the present work, an air-tight 3D printed cell was developed that preserves samples in a controlled atmosphere while allowing spectroscopic measurements in reflectance geometry. Equipped with a cheap 1 mm thick CaF2 optical window or a more expensive 0.5 mm thick ZnS window, the cell was used for both optical photothermal infrared and Raman spectroscopy measures; imaging of the samples was also possible. The far-infrared range reflectance measurements were performed with a cell equipped with a diamond window.
2024
3D printing; air-tight cell; infrared spectroscopy; optical photothermal infrared spectroscopy; Raman spectroscopy
01 Pubblicazione su rivista::01a Articolo in rivista
A 3D printed air-tight cell adaptable for far-infrared reflectance, optical photothermal infrared spectroscopy, and raman spectroscopy measurements / Paolone, Annalisa; Celeste, Arcangelo; Di Pea, Maria; Brutti, Sergio; Borondics, Ferenc; Capitani, Francesco. - In: INSTRUMENTS. - ISSN 2410-390X. - 8:4(2024), pp. 1-11. [10.3390/instruments8040054]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1737194
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