fig4

Advances in lithium-ion battery materials for ceramic fuel cells

Figure 4. Overview of BIEF-enhanced ion transmission in LIBs, Na-ion batteries and CFCs. (A) Illustration of facilitation of Li+ charge transport under a BIEF during discharge (left) and charge (right). Copyright from Ref.[13]. (B) Li-ion transport mechanism at heterogeneous LiCoO2 cathode/β-Li3PS4 solid electrolyte interface in a LIB. Copyright from Ref.[28]. (C) Schematic of BIEF formation and Na+ storage mechanism upon discharge (left) and charge (right) of a Na-ion battery of Fe2O3/Na0.67(Mn0.67Ni0.23Mg0.1)O2. Further comparison of BIEF-induced high-performance CFCs. Copyright from Ref.[30]. (D) Band diagrams and alignment at Sm2O3/SmNi interface determined from UPS and UV-vis spectroscopy and schematic of proton transport process in SmNi. Copyright from Ref.[31]. (E) BIEF-confined proton transport in CeO2/CeO2-δ core-shell structure and illustration of a proton conduction shuttle mechanism. Copyright from Ref.[32].

Energy Materials
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