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Dielectric polarization in MgFe_(2)O_(4) coating and bulk doping to enhance high-voltage cycling stability of Na_(2/3)Ni_(1/3)Mn_(2/3)O_(2) cathode material
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作者 Xiaoqian Xu Yizhen Huang +7 位作者 Dan Li Qichang Pan Sijiang Hu Yahao Li Hongqiang Wang Youguo Huang Fenghua Zheng Qingyu Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第6期200-211,I0007,共13页
Charging P2-Na_(2/3)Ni_(1/3)Mn_(2/3)O_(2)to 4.5 V for higher capacity is enticing.However,it leads to severe capacity fading,ascribing to the lattice oxygen evolution and the P2-O2 phase transformation.Here,the Mg Fe_... Charging P2-Na_(2/3)Ni_(1/3)Mn_(2/3)O_(2)to 4.5 V for higher capacity is enticing.However,it leads to severe capacity fading,ascribing to the lattice oxygen evolution and the P2-O2 phase transformation.Here,the Mg Fe_(2)O_(4) coating and Mg,Fe co-doping were constructed simultaneously by Mg,Fe surface treatment to suppress lattice oxygen evolution and P2-O2 phase transformation of P2-Na_(2/3)Ni_(1/3)Mn_(2/3)O_(2)at deep charging.Through ex-situ X-ray diffraction(XRD)tests,we found that the Mg,Fe bulk co-doping could reduce the repulsion between transition metals and Na+/vacancies ordering,thus inhibiting the P2-O2 phase transition and significantly reducing the irreversible volume change of the material.Meanwhile,the internal electric field formed by the dielectric polarization of Mg Fe_(2)O_(4) effectively inhibits the outward migration of oxidized O^(a-)(a<2),thereby suppressing the lattice oxygen evolution at deep charging,confirmed by in situ Raman and ex situ XPS techniques.P2-Na NM@MF-3 shows enhanced high-voltage cycling performance with capacity retentions of 84.8% and 81.3%at 0.1 and 1 C after cycles.This work sheds light on regulating the surface chemistry for Na-layered oxide materials to enhance the high-voltage performance of Na-ion batteries. 展开更多
关键词 p2-Na_(2/3)Ni_(1/3)Mn_(2/3)O_(2) MgFe_(2)O_(4) Bulk doping Lattice oxygen evolution p2-o2 phase transformation
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钠离子电池材料P2-Na2/3Ni1/3Mn2/3O2掺杂的研究进展
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作者 陈宇 强文江 黄冰心 《电池》 CAS CSCD 北大核心 2020年第6期585-589,共5页
从电化学性能和充放电机理角度,介绍P2-Na 2/3Ni1/3 Mn2/3O2材料。针对影响P2-Na2/3Ni1/3 Mn2/3O2材料电化学性能的因素,重点介绍元素掺杂对于材料充放电机制的影响和电化学性能的提升效果。
关键词 钠离子电池 正极材料 p2-Na2/3Ni1/3Mn2/3O2 p2-o2相转变 有序结构 掺杂
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晶核剂P_2 O_5对Li_2 O-ZnO-SiO_2微晶玻璃析晶性能的影响 被引量:2
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作者 吴守平 田清波 王锐 《建筑技术开发》 2011年第1期23-25,共3页
应用DSC(差热分析)、X-射线衍射、SEM(扫描电镜)等分析手段,研究了晶核剂P_2O_5含量对Li_2O-ZnO-SiO_2系玻璃析晶的影响。结果表明,在所研究的微晶玻璃体系中,析出晶相为方石英、磷石英以及少量的Li_2O·ZnO·SiO_2和SiO_2相。... 应用DSC(差热分析)、X-射线衍射、SEM(扫描电镜)等分析手段,研究了晶核剂P_2O_5含量对Li_2O-ZnO-SiO_2系玻璃析晶的影响。结果表明,在所研究的微晶玻璃体系中,析出晶相为方石英、磷石英以及少量的Li_2O·ZnO·SiO_2和SiO_2相。晶核剂P_2O_5的加入促进了玻璃中方石英晶体的析出,当P_2O_5添加量增加到4.0%时,该体系玻璃中析出的方石英相对含量达到最高。当进一步提高P_2O_5的含量达到5.1%时,促进了玻璃在低温下的析晶,基础玻璃在535℃的较低温度下可以析出晶体。 展开更多
关键词 微晶玻璃 晶核剂 p2O5 Li2O-ZnO-SiO2系统
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