Page 114 - Read Online
P. 114

Page 14 of 14          Chen et al. Energy Mater. 2025, 5, 500064  https://dx.doi.org/10.20517/energymater.2024.163

                   K-edge X-ray absorption fine structure. J. Power. Sources. 2013, 229, 272-6.  DOI
               43.      Ekwongsa, C.; Rujirawat, S.; Butnoi, P.; et al. Temperature dependent local structure of LiCoO  determined by in-situ Co K-edge X-
                                                                                 2
                   ray absorption fine structure (EXAFS). Radiat. Phys. Chem. 2020, 175, 108545.  DOI
               44.      Croce, F.; Appetecchi, G. B.; Persi, L.; Scrosati, B. Nanocomposite polymer electrolytes for lithium batteries. Nature 1998, 394, 456-
                   8.  DOI
               45.      Oyakhire, S. T.; Huang, W.; Wang, H.; et al. Revealing and elucidating ALD-derived control of lithium plating microstructure. Adv.
                   Energy. Mater. 2020, 10, 2002736.  DOI
               46.      Wang, S.; Sun, Q.; Zhang, Q.; et al. Li-ion transfer mechanism of ambient-temperature solid polymer electrolyte toward lithium metal
                   battery. Adv. Energy. Mater. 2023, 13, 2204036.  DOI
               47.      Mirsakiyeva, A.; Ebadi, M.; Araujo, C. M.; Brandell, D.; Broqvist, P.; Kullgren, J. Initial steps in PEO decomposition on a Li metal
                   electrode. J. Phys. Chem. C. 2019, 123, 22851-7.  DOI
               48.      Lin, C.; Kozen, A. C.; Noked, M.; Liu, C.; Rubloff, G. W. ALD protection of Li-metal anode surfaces - quantifying and preventing
                   chemical and electrochemical corrosion in organic solvent. Adv. Mater. Inter. 2016, 3, 1600426.  DOI
               49.      Li, B.; Su, Q.; Liu, C.; et al. Stable interface of a high-energy solid-state lithium metal battery via a sandwich composite polymer
                   electrolyte. J. Power. Sources. 2021, 496, 229835.  DOI
               50.      Song, X.; Zhang, T.; Fan, R.; et al. A composite solid-state electrolyte of high ionic-conductivity garnet-type Li La Zr Ta Nb O
                                                                                           6.5  3  1.5  0.1  0.4  12
                   filler in PEO matrix. Solid. State. Ion. 2023, 403, 116410.  DOI
               51.      Liu, M.; Guan, X.; Liu, H.; et al. Composite solid electrolytes containing single-ion lithium polymer grafted garnet for dendrite-free,
                   long-life all-solid-state lithium metal batteries. Chem. Eng. J. 2022, 445, 136436.  DOI
               52.      Yu, G.; Pan, L.; Zhang, H.; et al. Thin yet strong composite polymer electrolyte reinforced by nanofibrous membrane for flexible
                   dendrite-free solid-state lithium metal batteries. Adv. Energy. Sustain. Res. 2022, 3, 2100193.  DOI
               53.      Moškon, J.; Gaberšček, M. Transmission line models for evaluation of impedance response of insertion battery electrodes and cells. J.
                   Power. Sources. Adv. 2021, 7, 100047.  DOI
               54.      Ye, W.; Fan, Z.; Zhou, X.; Xue, Z. Functionalized polypropylene separator coated with polyether/polyester blend for high-performance
                   lithium metal batteries. Energy. Mater. 2024, 4, 400049.  DOI
               55.      Groot FM, Grioni M, Fuggle JC, Ghijsen J, Sawatzky GA, Petersen H. Oxygen 1s X-ray-absorption edges of transition-metal oxides.
                   Phys. Rev. B. Condens. Matter. 1989, 40, 5715-23.  DOI  PubMed
               56.      Groot, F. D. Multiplet effects in X-ray spectroscopy. Coordin. Chem. Rev. 2005, 249, 31-63.  DOI
               57.      Li, F.; Li, Y.; Chen, H.; et al. Impact of strain-induced changes in defect chemistry on catalytic activity of Nd NiO  electrodes. ACS.
                                                                                          2
                                                                                             4+δ
                   Appl. Mater. Interfaces. 2018, 10, 36926-32.  DOI
               58.      Huang, R.; Ding, Y.; Zhang, F.; et al. The interphasial degradation of 4.2 V-class poly(ethylene oxide)-based solid batteries beyond
                   electrochemical voltage limit. J. Energy. Chem. 2022, 75, 504-11.  DOI
               59.      Kim, D. S.; Kim, Y. E.; Kim, H. Improved fast charging capability of graphite anodes via amorphous Al O  coating for high power
                                                                                        2  3
                   lithium ion batteries. J. Power. Sources. 2019, 422, 18-24.  DOI
               60.      Zhang, H.; Xu, Z.; Shi, B.; et al. Enhanced cyclability of Cr O  cathode for PEO-based all-solid-state lithium-ion batteries by atomic
                                                          8  21
                   layer deposition of Al O . Materials 2021, 14, 5380.  DOI  PubMed  PMC
                                 2
                                   3
               61.      Hyun, D.; Jung, Y.; Kim, T.; et al. Multi-functional Al O -coated separators for high-performance lithium-ion batteries: critical effects
                                                      2
                                                        3
                   of particle shape. Ceram. Int. 2023, 49, 30147-55.  DOI
   109   110   111   112   113   114   115   116   117   118   119