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Ni^(3+)抑制具有阴离子氧化还原活性钠离子电池正极材料的电压衰减
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作者 胡紫霖 牛耀申 +1 位作者 容晓晖 胡勇胜 《物理化学学报》 SCIE CAS CSCD 北大核心 2024年第6期54-56,共3页
由于钠资源丰富,钠离子电池在大规模储能方面显示出巨大的潜力。随着近年来研究的深入,在正极材料中引入适量的阴离子氧化还原可以有效地提升钠离子电池的能量密度,同时减少高成本过渡金属元素如V、Co和Ni等的用量。有研究表明,材料循... 由于钠资源丰富,钠离子电池在大规模储能方面显示出巨大的潜力。随着近年来研究的深入,在正极材料中引入适量的阴离子氧化还原可以有效地提升钠离子电池的能量密度,同时减少高成本过渡金属元素如V、Co和Ni等的用量。有研究表明,材料循环过程中不可逆的氧损失以及Mn^(4+)/Mn^(3+)氧化还原的激活,导致了层状氧化物正极材料持续的电压衰减。本工作通过在Na_(x)[Li,Ni,Mn]O_(2)基钠离子电池正极材料中引入Ni^(3+)作为Mn^(4+)/Mn^(3+)氧化还原屏障,利用Ni^(3+)/Ni^(2+)的氧化还原代替Mn^(4+)/Mn^(3+)的氧化还原,成功抑制了材料的电压衰减。电化学测试结果显示,改性材料在不损失容量的前提下,循环稳定性得到明显提升。X射线光电子能谱结果也验证了Ni3^(+)的引入有利于维持材料多周循环后Mn价态的稳定。 展开更多
关键词 钠离子电池 阴离子氧化还原 电压衰减 单相固溶反应
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Surface encapsulation of layered oxide cathode material with NiTiO_(3) for enhanced cycling stability of Na-ion batteries
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作者 胡紫霖 唐彬 +8 位作者 林挺 张楚 牛耀申 刘渊 高立克 谢飞 容晓晖 陆雅翔 胡勇胜 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第8期551-558,共8页
In Na-ion batteries,O3-type layered oxide cathode materials encounter challenges such as particle cracking,oxygen loss,electrolyte side reactions,and multi-phase transitions during the charge/discharge process.This st... In Na-ion batteries,O3-type layered oxide cathode materials encounter challenges such as particle cracking,oxygen loss,electrolyte side reactions,and multi-phase transitions during the charge/discharge process.This study focuses on surface coating with NiTiO_(3) achieved via secondary heat treatment using a coating precursor and the surface material.Through in-situ x-ray diffraction(XRD)and differential electrochemical mass spectrometry(DEMS),along with crystal structure characterizations of post-cycling materials,it was determined that the NiTiO_(3) coating layer facilitates the formation of a stable lattice structure,effectively inhibiting lattice oxygen loss and reducing side reaction with the electrolyte.This enhancement in cycling stability was evidenced by a capacity retention of approximately 74%over 300 cycles at 1 C,marking a significant 30%improvement over the initial sample.Furthermore,notable advancements in rate performance were observed.Experimental results indicate that a stable and robust surface structure substantially enhances the overall stability of the bulk phase,presenting a novel approach for designing layered oxide cathodes with higher energy density. 展开更多
关键词 Na-ion battery layered oxides high voltage surface coating
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