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掺杂PVK薄膜的荧光谱及掺杂机制 被引量:2
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作者 李宏建 彭景翠 +1 位作者 黄生祥 夏辉 《半导体技术》 CAS CSCD 北大核心 2000年第6期45-47,共3页
根据PVK掺杂后荧光谱的改变,提出了PVK掺杂的掺杂机制,沿PPV链是极化子和双极化子态,而链间是由于双极化子的跃迁。实践结果与模型相符。
关键词 荧光谱 掺杂极化子 薄膜 掺杂机制
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MoSe_(2)@N, P-C composites for sodium ion battery 被引量:2
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作者 PENG Tao LUO Yu-hong +6 位作者 TANG Lin-bo HE Zhen-jiang YAN Cheng MAO Jing DAI Ke-hua WU Xian-wen ZHENG Jun-chao 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第9期2991-3002,共12页
The conversion reaction-based anode materials of sodium ion batteries have relatively high capacity;however,the application of these materials is limited by their structural collapse due to the poor structure stabilit... The conversion reaction-based anode materials of sodium ion batteries have relatively high capacity;however,the application of these materials is limited by their structural collapse due to the poor structure stability.In this work,MoSe_(2) nanosheets were synthesized by a solvothermal method.An organic solvent was intercalated into the MoSe_(2) materials to enlarge the interlayer spacing and improve the conductivity of the material.The MoSe_(2) material was coated with an organic pyrolysis carbon and then a uniform carbon layer was formed.The surface carbon hybridization of the nanosheet materials was realized by the introduction of heteroatoms during the sintering process.The as-prepared MoSe_(2)@N,P-C composites showed a superior rate performance as it could maintain the integrity of the morphology and structure under a high current density.The composites had a discharge specific capacity of 302.4 mA·h/g after 100 cycles at 0.5 A/g,and the capacity retention rate was 84.96%. 展开更多
关键词 sodium ion battery MoSe_(2) anode materials atomic doping electrochemical performance
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