Inicio  /  Batteries  /  Vol: 4 Núm: 3 Par: Septemb (2018)  /  Artículo
ARTÍCULO
TITULO

Binding Energy Referencing for XPS in Alkali Metal-Based Battery Materials Research (II): Application to Complex Composite Electrodes

Steffen Oswald    
Franziska Thoss    
Martin Zier    
Martin Hoffmann    
Tony Jaumann    
Markus Herklotz    
Kristian Nikolowski    
Frieder Scheiba    
Michael Kohl    
Lars Giebeler    
Daria Mikhailova and Helmut Ehrenberg    

Resumen

X-ray photoelectron spectroscopy (XPS) is a key method for studying (electro-)chemical changes in metal-ion battery electrode materials. In a recent publication, we pointed out a conflict in binding energy (BE) scale referencing at alkali metal samples, which is manifested in systematic deviations of the BEs up to several eV due to a specific interaction between the highly reactive alkali metal in contact with non-conducting surrounding species. The consequences of this phenomenon for XPS data interpretation are discussed in the present manuscript. Investigations of phenomena at surface-electrolyte interphase regions for a wide range of materials for both lithium and sodium-based applications are explained, ranging from oxide-based cathode materials via alloys and carbon-based anodes including appropriate reference chemicals. Depending on material class and alkaline content, specific solutions are proposed for choosing the correct reference BE to accurately define the BE scale. In conclusion, the different approaches for the use of reference elements, such as aliphatic carbon, implanted noble gas or surface metals, partially lack practicability and can lead to misinterpretation for application in battery materials. Thus, this manuscript provides exemplary alternative solutions.

Palabras claves

 Artículos similares

       
 
Manny Anthony M. Taguba, Dennis C. Ong, Benny Marie B. Ensano, Chi-Chuan Kan, Nurak Grisdanurak, Jurng-Jae Yee and Mark Daniel G. de Luna    
Researchers are in continuous search of better strategies to minimize, if not prevent, the anthropogenic release of toxic heavy metals, such as Cu(II) and Pb(II), into drinking water resources and the natural environment. Herein, we report for the first ... ver más
Revista: Water

 
Edgars Kirilovs, Inga Zotova, Stanislavs Gendelis, Hans Jörg-Gusovius, Silvija Kukle and Veneranda Stramkale    
Phase change materials (PCMs) are now widely known as potential additives for building insulation materials to provide a thermal mass effect that helps conserve energy and maintain a comfortable indoor temperature. Therefore, the study presented in this ... ver más
Revista: Buildings

 
Xiaojiao Fang, Yin Wang, Zegao Wang, Zaixing Jiang and Mingdong Dong    
Metal and metalloid nanoparticles (NPs) have attracted substantial attention from research communities over the past few decades. Traditional methodologies for NP fabrication have also been intensely explored. However, drawbacks such as the use of toxic ... ver más
Revista: Energies

 
Clay T. Elmore, Morgan E. Seidler, Hunter O. Ford, Laura C. Merrill, Sunil P. Upadhyay, William F. Schneider and Jennifer L. Schaefer    
Solvent-free, single-ion conducting electrolytes are sought after for use in electrochemical energy storage devices. Here, we investigate the ionic conductivity and how this property is influenced by segmental mobility and conducting ion number in crossl... ver más
Revista: Batteries

 
Muhammad Naeem Iqbal, Asfa Ashraf     Pág. 14 - 15
EDITORIALEnvironmental pollution arising from heavy metals and minerals in the wastewater is the most serious problem. Due to extensive anthropogenic activities such as industrial operations particularly mining, agricultural processes and disposal of ind... ver más