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Enhancing the cycling stability of layered cathodes for sodium-ion batteries via phase transition regulation
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作者 Guojie Chen Yuxi Luo +18 位作者 Jiahua Liu Xiaoyu Gao Yuguang Pu Pinyu Niu Wenguang Zhao Wenxin Tong Tao Zeng Xianya Wang Lei Cao Jiaxin Zheng Zhewen Ma Nian Zhang Wenhai Ji Zhenhong Tan Ping Miao Junrong Zhang Jun Wang Rui Wang Yinguo Xiao 《Journal of Energy Chemistry》 2025年第10期839-849,共11页
Sodium-ion batteries have been deemed as a sustainable alternative to lithium-ion systems due to the abundance and affordability of sodium sources.Nevertheless,developing high-energy-density P2-type layered oxide cath... Sodium-ion batteries have been deemed as a sustainable alternative to lithium-ion systems due to the abundance and affordability of sodium sources.Nevertheless,developing high-energy-density P2-type layered oxide cathodes with long-term cycling stability poses challenges,stemming from irreversible phase transitions,structural degradation,and lattice oxygen instability during electrochemical cycling.Here,we propose a one-step NbB_(2)modification strategy that enhances both bulk and surface properties of Na_(0.8)Li_(0.12)Ni_(0.22)Mn_(0.66)O_(2)cathodes.By exploiting different techniques,we disclose that bulk Nb and B doping combined with a Nb-Transition Metal-BO_(3)surface layer reconstruction enable a reversible P2-OP4 phase transition and,meanwhile,improve anionic redox reversibility.In addition,Li^(+)migrates into alkali-metal layers and underpins the layered structure through the“pillar effect”,thereby facilitating the Na^(+)diffusion in Na_(0.8)Li_(0.12)Ni_(0.22)Mn_(0.66)O_(2)cathodes and retaining their structural integrity at high voltage.As a result,the modified cathodes achieve 93.6%capacity retention after 500 cycles at 1C and deliver specific capacities above 114 m A h g^(-1)at 10C within 2.0-4.3 V.Contrary to the previous studies reporting that OP4 phase are detrimental to the structural stability of layered cathodes,we experimentally validate that a well-regulated P2-OP4 phase transition is beneficial for structural and electrochemical stabilities. 展开更多
关键词 Sodium-ion batteries p2-op4 phase transition NbB_(2)modification Lithium pillar effect Structural stability High-voltage performance
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