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Coupling Long‐Range Raman with X‐Ray Photoelectron Spectroscopy for Complementary Bulk and Surface Characterization of Battery Materials

Radtke, Mariusz ; Kopp, Karl ; Hess, Christian (2024)
Coupling Long‐Range Raman with X‐Ray Photoelectron Spectroscopy for Complementary Bulk and Surface Characterization of Battery Materials.
In: Chemistry–Methods, 2022, 2 (1)
doi: 10.26083/tuprints-00026759
Artikel, Zweitveröffentlichung, Verlagsversion

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Kurzbeschreibung (Abstract)

For the combined surface and bulk characterization of functional powder materials, we report on the direct coupling of Raman spectroscopy with X-ray photoelectron spectroscopy (XPS) within one setup, avoiding the influence of different sample states and measurement environments. Our approach is based on the Raman integration into the XPS analysis chamber, employing a long-range camera objective connected to a portable 532 nm Raman spectrometer. For optimization of the measurement geometry, a (400) single crystal (SC), chemical vaper deposition (CVD)-grown diamond was employed. The applicability of the combined XPS-Raman spectroscopy approach was first validated by measurements on powder V₂O₅, used as a commercial standard, and then demonstrated on lithium ion battery materials, that is, LiₓV₂O₅ lithium pentoxides. The transferability to other XPS systems is strongly facilitated by the long-range Raman-spectroscopic approach, which allowed for Raman analysis over a distance of 320 mm for the CVD-grown (400) single crystal diamond and 285 mm for LiₓV₂O₅. Our results demonstrate the inexpensive and straightforward implementation of coupled XPS-Raman spectroscopy for combined surface/bulk analysis.

Typ des Eintrags: Artikel
Erschienen: 2024
Autor(en): Radtke, Mariusz ; Kopp, Karl ; Hess, Christian
Art des Eintrags: Zweitveröffentlichung
Titel: Coupling Long‐Range Raman with X‐Ray Photoelectron Spectroscopy for Complementary Bulk and Surface Characterization of Battery Materials
Sprache: Englisch
Publikationsjahr: 24 April 2024
Ort: Darmstadt
Publikationsdatum der Erstveröffentlichung: 2022
Ort der Erstveröffentlichung: Weinheim
Verlag: Wiley-VCH
Titel der Zeitschrift, Zeitung oder Schriftenreihe: Chemistry–Methods
Jahrgang/Volume einer Zeitschrift: 2
(Heft-)Nummer: 1
Kollation: 8 Seiten
DOI: 10.26083/tuprints-00026759
URL / URN: https://tuprints.ulb.tu-darmstadt.de/26759
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Herkunft: Zweitveröffentlichungsservice
Kurzbeschreibung (Abstract):

For the combined surface and bulk characterization of functional powder materials, we report on the direct coupling of Raman spectroscopy with X-ray photoelectron spectroscopy (XPS) within one setup, avoiding the influence of different sample states and measurement environments. Our approach is based on the Raman integration into the XPS analysis chamber, employing a long-range camera objective connected to a portable 532 nm Raman spectrometer. For optimization of the measurement geometry, a (400) single crystal (SC), chemical vaper deposition (CVD)-grown diamond was employed. The applicability of the combined XPS-Raman spectroscopy approach was first validated by measurements on powder V₂O₅, used as a commercial standard, and then demonstrated on lithium ion battery materials, that is, LiₓV₂O₅ lithium pentoxides. The transferability to other XPS systems is strongly facilitated by the long-range Raman-spectroscopic approach, which allowed for Raman analysis over a distance of 320 mm for the CVD-grown (400) single crystal diamond and 285 mm for LiₓV₂O₅. Our results demonstrate the inexpensive and straightforward implementation of coupled XPS-Raman spectroscopy for combined surface/bulk analysis.

Freie Schlagworte: combined surface/bulk analysis, lithium-ion batteries, lithium vanadium oxide, Raman spectroscopy, XPS
ID-Nummer: Artikel-ID: e202100058
Status: Verlagsversion
URN: urn:nbn:de:tuda-tuprints-267590
Sachgruppe der Dewey Dezimalklassifikatin (DDC): 500 Naturwissenschaften und Mathematik > 540 Chemie
Fachbereich(e)/-gebiet(e): 07 Fachbereich Chemie
07 Fachbereich Chemie > Eduard Zintl-Institut
07 Fachbereich Chemie > Eduard Zintl-Institut > Fachgebiet Physikalische Chemie
Hinterlegungsdatum: 24 Apr 2024 12:33
Letzte Änderung: 25 Apr 2024 07:45
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