密度泛函理论
锂(药物)
介电谱
电化学
钒
无机化学
材料科学
铌
化学
物理化学
计算化学
医学
电极
冶金
内分泌学
作者
Daniele Spada,Matteo Aramini,Maria Fittipaldi,Alberto Cini,Martina Fracchia,Paolo Ghigna,Alessandro Girella,Chiara Milanese,Marcella Bini
标识
DOI:10.1021/acs.jpcc.1c10573
摘要
Niobium oxides have a prominent role in many technological applications, including electrochemical energy storage where they are employed as anodes for lithium- and sodium-ion batteries, hybrid supercapacitors, electrocatalysts in vanadium redox flow batteries, and electrochemical support in fuel cells. Owing to the great complexity of the available coordination environment, they can host other transition metals without phase changes. In this paper, multiple techniques are employed, for the first time, to study the influence of iron cations on the structural and functional properties of monoclinic and orthorhombic FeNb 11 O 29 . The element-selectivity of X-ray absorption spectroscopy and Mössbauer spectroscopy demonstrated the disorder of Fe 3+ cations over the six octahedral sites of FeNb 11 O 29 . Ab-initio Density Functional Theory calculations were used in tandem with spectroscopic techniques to confirm the cationic disorder of the material and link its implications to the conductivity investigated with electrochemical impedance spectroscopy. The paramagnetism given by Fe 3+ was confirmed with muon spin relaxation spectroscopy. The differences between FeNb 11 O 29 and other analogous niobium-based compounds were rationalized and discussed, in view of their electrochemical applications.
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