Šić Edina, Schutjajew Konstantin, Haagen Ulrich, Breitzke Hergen, Oschatz Martin, Buntkowsky Gerd, Gutmann Torsten
Eduard Zintl Institute for Inorganic and Physical Chemistry, Technical University of Darmstadt, Peter-Grünberg-Straße 8, 64287, Darmstadt, Germany.
Institute for Technical Chemistry and Environmental Chemistry, Friedrich-Schiller-University Jena, Philosophenweg 7a, 07743, Jena, Germany.
ChemSusChem. 2024 Feb 22;17(4):e202301300. doi: 10.1002/cssc.202301300. Epub 2023 Nov 17.
In this work, we report on an improved cell assembly of cylindrical electrochemical cells for Na in-situ solid-state NMR (ssNMR) investigations. The cell set-up is suitable for using powder electrode materials. Reproducibility of our cell assembly is analyzed by preparing two cells containing hard carbon (HC) powder as working electrode and sodium metal as reference electrode. Electrochemical storage properties of HC powder electrode derived from carbonization of sustainable cellulose are studied by ssNMR. Na in-situ ssNMR monitors the sodiation/desodiation of a Na|NaPF |HC cell (cell 1) over a period of 22 days, showing high cell stability. After the galvanostatic process, the HC powder material is investigated by high resolution Na ex-situ MAS NMR. The formation of ionic sodium species in different chemical environments is obtained. Subsequently, a second Na|NaPF |HC cell (cell 2) is sodiated for 11 days achieving a capacity of 220 mAh/g. Na ex-situ MAS NMR measurements of the HC powder material extracted from this cell clearly indicate the presence of quasi-metallic sodium species next to ionic sodium species. This observation of quasi-metallic sodium species is discussed in terms of the achieved capacity of the cell as well as of side reactions of sodium in this electrode material.