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Heterogeneous engineering of MnSe@NC@ReS_(2) core-shell nanowires for advanced sodium-/potassium-ion batteries
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作者 Sheng-Jun Lu Jin-Yi Lin +3 位作者 Cai-Hong Wang Yu-Fei Zhang Yi Zhang Hao-Sen Fan 《Rare Metals》 SCIE EI CAS CSCD 2024年第8期3713-3723,共11页
Sodium-ion batteries(SIBs) and potassium-ion batteries(PIBs) have been attracting great attentions and widely been exploited due to the abundant sodium/potassium resources.Hence,the preparation of high-powered anode m... Sodium-ion batteries(SIBs) and potassium-ion batteries(PIBs) have been attracting great attentions and widely been exploited due to the abundant sodium/potassium resources.Hence,the preparation of high-powered anode materials for SIBs/PIBs plays a decisive role for the commercial applications of SIBs/PIBs in the future.Manganese selenides are a class of potential anode materials for SIBs/PIBs because of their small band gap and high electrical conductivity.In this work,MnSe and ReS_(2) core-shell nanowires connecting by polydopamine derived carbon nanotube(MnSe@NC@ReS_(2)) have been successfully synthesized from growing ReS_(2) nanosheets array on the surface of MnSe@NC nano wires,which present excellent Na^(+)/K^(+) storage performance.While applied as SIBs anode,the specific capacity of 300 mAh·g^(-1) was maintwined after 400 cycles at the current density of 1.0 A·g^(-1).Besides,it could also keep 120 mAh·g^(-1) specific capacity after 900 cycles at 1.0 A·g^(-1) for the anode of PIBs.These heterogeneous engineering and one-dimensional-two-dimensional(1D-2D) hybrid strategies could provide an ideal strategy for the synthesis of new hetero-structured anode materials with outstanding battery performance for SIBs and PIBs. 展开更多
关键词 Heterogeneous engineering Core-shell nanowires MnSe@NC@ReS_(2)nanowires ^na^(+)batteries ^K^(+)batteries
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层状Ti_(2)C对Na储能性能的第一性原理研究
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作者 陈畅 马宁 +1 位作者 牛丽 白丽娜 《哈尔滨师范大学自然科学学报》 CAS 2022年第5期76-80,共5页
MXenes材料由于其独特的物理和化学性质,在低维功能材料研究领域引起了广泛的关注.采用密度泛函理论研究了Ti_(2)C作为层状材料,其层间相互作用对储Na电化学性能的影响,并探讨层状Ti_(2)C作为Na^(+)电池电极的可行性.计算结果表明,Ti_(... MXenes材料由于其独特的物理和化学性质,在低维功能材料研究领域引起了广泛的关注.采用密度泛函理论研究了Ti_(2)C作为层状材料,其层间相互作用对储Na电化学性能的影响,并探讨层状Ti_(2)C作为Na^(+)电池电极的可行性.计算结果表明,Ti_(2)C吸附单层Na^(+)时,吸附能为负值,证明吸附单层Na^(+)是可行的.单层Na^(+)嵌入层状Ti_(2)C结构,可以明显提高层状Ti_(2)C的片层间距,有助于后续Na^(+)的吸附.Ti_(2)C吸附双层Na^(+)时,吸附能仍为负值,且单、双层Na^(+)吸附后结构仍保持类金属特性,从理论上证明了层间Ti_(2)C作为Na^(+)电池电极材料的可行性,为层状Ti_(2)C作为Na^(+)电池电极提供了理论参照. 展开更多
关键词 MXenes ^na^(+)电池 层状材料 密度泛函理论 ^na^(+)电池电极
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