fig8

Lithium metal stabilization for next-generation lithium-based batteries: from fundamental chemistry to advanced characterization and effective protection

Figure 8. (A) Schematic of interaction relationship in electrolytes. Reprinted with permission from Ref.[152]. Copyright (2020) American Chemical Society. (B) Schematic illustrations of interfacial stability enabled by the HOMO-LUMO gap of SEI and stable SEI treated chemically by fluorination. Reprinted with permission from Ref.[156]. Copyright (2019) American Chemical Society. (C) Schematic illustration of fabrication and working principle of LNO-SRF. Reprinted with permission from Ref.[158]. Copyright (2018) Springer Nature. (D) Schematic of morphologies of Li deposited on substrate in different electrolytes. Reprinted with permission from Ref.[160]. Copyright (2015) Springer Nature. (E) Schematic illustrations of passivation films with 1 M and 3 M LiPF6 in a mixed solvent of EC-EMC-DMC (1:1:1 by vol.). Reprinted with permission from Ref.[163]. Copyright (2020) Springer Nature. (F) Schematic illustrations of effect of NL cosolvent on solvation structures and thereafter the SEI formation process. Reprinted with permission from Ref.[164]. Copyright (2020) Wiley-VCH. (G) Optimized geometrical structures of (left) TPFPB-BF4- and (right) TPFPB-PF6- complexes. (H) Typical mass spectra via electrospray ionization and (inset) 3D isosurface rendering of F in PF6- around DMC and EC molecules. Reprinted with permission from Ref.[165]. Copyright 2015 American Chemical Society.

Energy Materials
ISSN 2770-5900 (Online)
Follow Us

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/