Layered oxide cathode for sodium-ion batteries: Surface and interface modification and suppressed gas generation effect
- Corresponding author: Wenchang ZHU, wczhu@suda.edu.cn Jianqing ZHAO, jqzhao@suda.edu.cn
Citation:
Xiaotian ZHU, Fangding HUANG, Wenchang ZHU, Jianqing ZHAO. Layered oxide cathode for sodium-ion batteries: Surface and interface modification and suppressed gas generation effect[J]. Chinese Journal of Inorganic Chemistry,
;2025, 41(2): 254-266.
doi:
10.11862/CJIC.20240260
HERBERZ M, HAHNEL U J J, BROSCH T. Counteracting electric vehicle range concern with a scalable behavioural intervention[J]. Nat. Energy, 2022,7(6):503-510. doi: 10.1038/s41560-022-01028-3
CHEN M Z, ZHANG Y Y, XING G C, CHOU S L, TANG Y X. Electrochemical energy storage devices working in extreme conditions[J]. Energy Environ. Sci., 2021,14(6):3323-3351. doi: 10.1039/D1EE00271F
YANG T Z, LUO D, ZHANG X Y, GAO S H, GAO R, MA Q Y, PARK H W, OR T, ZHANG Y G, CHEN Z W. Sustainable regeneration of spent cathodes for lithium-ion and post-lithium-ion batteries[J]. Nat. Sustain., 2024,7:776-785. doi: 10.1038/s41893-024-01351-5
WU F X, MAIER J, YU Y. Guidelines and trends for next-generation rechargeable lithium and lithium-ion batteries[J]. Chem. Soc. Rev., 2020,49(5):1569-1614. doi: 10.1039/C7CS00863E
ZHANG H, GAO Y, LIU X H, ZHOU L F, LI J Y, XIAO Y, PENG J, WANG J Z, CHOU S L. Long-cycle-life cathode materials for sodium-ion batteries toward large-scale energy storage systems[J]. Adv. Energy Mater., 2023,13(23)2300149. doi: 10.1002/aenm.202300149
ZHAO L, ZHANG T, LI W, LI T, ZHANG L, ZHANG X G, WANG Z Y. Engineering of sodium-ion batteries: Opportunities and challenges[J]. eScience, 2023,24:172-183.
ABRAHAM K M. How comparable are sodium-ion batteries to lithium-ion counterparts?[J]. ACS Energy Lett., 2020,5(11):3544-3547. doi: 10.1021/acsenergylett.0c02181
ZHU W C, ZHU X T, QI J Z, YAO J Y, SHEN Y B, CHENG G J, HUANG X, YANG S, ZHANG H, CHIANG C L, LIN Y G, BAI J M, YIN W J, GAO L J, CHEN L W, WANG F, ZHAO J Q. Stabilizing high-Ni cathodes with gradient surface Ti-enrichment[J]. Chem. Eng. J., 2024,489151208. doi: 10.1016/j.cej.2024.151208
ZUO W H, INNOCENTI A, ZARRABEITIA M, BRESSER D, YANG Y, PASSERINI S. Layered oxide cathodes for sodium-ion batteries: Storage mechanism, electrochemistry, and techno-economics[J]. Acc. Chem. Res., 2023,56(3):284-296. doi: 10.1021/acs.accounts.2c00690
LAN Y Q, YAO W J, HE X L, SONG T Y, TANG Y B. Mixed polyanionic compounds as positive electrodes for low-cost electrochemical energy storage[J]. Angew. Chem.‒Int. Edit., 2020,59(24):9255-9262. doi: 10.1002/anie.201915666
PENG J, ZHANG W, LIU Q N, WANG J Z, CHOU S L, LIU H K, DOU S X. Prussian blue analogues for sodium-ion batteries: Past, present, and future[J]. Adv. Mater., 2022,34(15)2108384. doi: 10.1002/adma.202108384
JIANG C Y, WANG Y S, Xin Y H, DING X Y, LIU S K, PANG Y F, CHEN B R, WANG Y S, LIU L, WU F, GAO H C. Toward high stability of O3-type NaNi1/3Fe1/3Mn1/3O2 cathode material with zirconium substitution for advanced sodium‑ion batteries[J]. Carbon Neutral., 2024,3(2):233-244. doi: 10.1002/cnl2.115
HONG N Y, LI J W, WANG H J, HU X, Y ZHAO B, HUA F, MEI Y, HUANG J N, ZHANG B C, JIAN W S, GAO J Q, TIAN Y, SHI X X, DENG W T, ZOU G Q, HOU H S, HU Z G, LONG Z, JI X B. Regulating phase transition and restraining fe distortion at high potential window via rare earth metal incorporation on O3-type layered cathodes[J]. Adv. Funct. Mater., 2024,42402398.
REN Q H, LI Y, LEI L L, WANG G M, HOU J, XU W L, CHEN S M, LI S Y, CHEN L P, WANG J. The critical role of titanium cation for the enhanced Na-ion layer spacing of O3 layered oxide cathode materials[J]. Mater. Today Commun., 2024,39109284. doi: 10.1016/j.mtcomm.2024.109284
LIU Y F, HAN K, PENG D N, KONG L Y, SU Y, LI H W, HU H Y, LI J Y, WANG H R, FU Z Q, MA Q. Layered oxide cathodes for sodium-ion batteries: From air stability, interface chemistry to phase transition[J]. InfoMat, 2023,5(6)e12422. doi: 10.1002/inf2.12422
XU C L, CAI H R, CHEN Q L, KONG X Q, PAN H L, HU Y S. Origin of air-stability for transition metal oxide cathodes in sodium-ion batteries[J]. ACS Appl. Mater. Interfaces, 2022,14(4):5338-5345. doi: 10.1021/acsami.1c21103
YOU Y, SONG B H, JARVIS K, HUQ A, MANTHIRAM A. Insights into the improved chemical stability against water of LiF-incorporated layered oxide cathodes for sodium-ion batteries[J]. ACS Appl. Energy Mater., 2019,1(1):89-95.
NWANNA E C, BITIRE S, IMOISILI P E, JEN T C. An overview of the application of atomic layer deposition process for lithium-ion based batteries[J]. Int. J. Energy Res., 2022,46(8):10499-10521. doi: 10.1002/er.7941
YU F, DU L, ZHANG G, SU F M, WANG W C, SUN S H. Electrode engineering by atomic layer deposition for sodium-ion batteries: From traditional to advanced batteries[J]. Adv. Funct. Mater., 2019,30(9)1906890.
ZHAO J Q, WANG Y. Surface modifications of Li-ion battery electrodes with various ultrathin amphoteric oxide coatings for enhanced cycleability[J]. J. Solid State Electrochem., 2012,17:1049-1058.
ZHAO J Q, WANG Y. Ultrathin surface coatings for improved electrochemical performance of lithium ion battery electrodes at elevated temperature[J]. J. Phys. Chem. C, 2012,116(22):11867-11876. doi: 10.1021/jp3010629
ZHAO J Q, WANG Y. Atomic layer deposition of epitaxial ZrO2 coating on LiMn2O4 nanoparticles for high-rate lithium ion batteries at elevated temperature[J]. Nano Energy, 2013,2(5):882-889. doi: 10.1016/j.nanoen.2013.03.005
ZHU W C, HUANG X, LIU T T, XIE Z Q, WANG Y, TIAN K, BU L M, WANG H B, GAO L J, ZHAO J Q. Ultrathin Al2O3 coating on LiNi0.8Co0.1Mn0.1O2 cathode material for enhanced cycleability at extended voltage ranges[J]. Coatings, 2019,9(2)92. doi: 10.3390/coatings9020092
DESAI P, HUANG J Q, HIJAZI H, ZHANG L T, MARIYAPPAN S, TARASCON J M. Deciphering interfacial reactions via optical sensing to tune the interphase chemistry for optimized Na-ion electrolyte formulation[J]. Adv. Energy Mater., 2021,11(36)2101490. doi: 10.1002/aenm.202101490
FU Y P, ZHU C B. Design strategies for sodium electrode materials: Solid-state ionics perspective[J]. Acta Phys.‒Chim. Sin., 2023,39(3):16-32.
GONG C, PU S D, ZHANG S M, YUAN Y, NING Z Y, YANG S X, GAO X W, CHAU C, LI Z X, LIU J L, PI L Q, LIU B Y, CAPHONE I, HU B K, MELVIN D L R, PASTA M, BRUCE P G, ROBERTSON A W. The role of an elastic interphase in suppressing gas evolution and promoting uniform electroplating in sodium metal anodes[J]. Energy Environ. Sci., 2023,16:535-545. doi: 10.1039/D2EE02606F
HAO Y N, CAI Z M. Holey graphene for sodium-ion battery anode material[J]. Acta Phys.‒Chim. Sin., 2023,39(11)2303046.
LU Z Y, YANG H J, GUO Y, HE P, WU S C, YANG Q H, ZHOU H S. Electrolyte sieving chemistry in suppressing gas evolution of sodium-metal batteries[J]. Angew. Chem.‒Int. Edit., 2022,134(30)e202206340. doi: 10.1002/ange.202206340
SIM R, MANTHIRAM A. Factors influencing gas evolution from high-nickel layered oxide cathodes in lithium-based batteries[J]. Adv. Energy Mater., 2024,14(8)202303985.
YIN W N, CAI Y T, XIE L B, HUANG H, ZHU E C, PAN J A, BU J P, CHEN H, YUAN Y, ZHUANG Z C, WANG L L. Revisited electrochemical gas evolution reactions from the perspective of gas bubbles[J]. Nano Res., 2022,16(4):4381-4398.
ZHAO H J, WANG J, SHAO H Y, XU K, DENG Y H. Gas generation mechanism in Li-metal batteries[J]. Energy Environ. Mater., 2021,5(1):327-336.
METZGER M, STREHLE B, SOLCHENBACH S, GASTEIGER H A. Origin of H2 evolution in LIBs: H2O reduction vs. electrolyte oxidation[J]. J. Electrochem. Soc., 2016,163(5):A798-A809. doi: 10.1149/2.1151605jes
FENG Y H, CHENG Z W, XU C L, YU L Z, SI D, YUAN B H, LIU M T, ZHAO B, WANG P F, HAN X G. Low-cost Al-doped layered cathodes with improved electrochemical performance for rechargeable sodium-ion batteries[J]. ACS Appl. Mater. Interfaces, 2022,14(20):23465-23473. doi: 10.1021/acsami.2c03469
LI X Y, LIANG L W, SU M S, WANG L X, ZHANG Y M, SUN J F, LIU Y, HOU L R, YUAN C Z. Multi-level modifications enabling chemomechanically stable Ni-rich O3-layered cathode toward wide-temperature-tolerance quasi-solid-state Na-ion batteries[J]. Adv. Energy Mater., 2023,13(9)202203701.
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Ⅰ: NFM; Ⅱ: FM@TiO2(10)@Al2O3(10), Ⅲ: NFM#Ti(35)#Al(10); Mn+: metal ion.
Inset: gas components and corresponding volumetric percentages.