|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | 简单合成连续介孔结构的T-Nb_2O_5纳米纤维用作锂离子电池负极(英文)显示文摘五氧化二铌Nb_2O_5由于其良好的倍率性能和安全性,作为锂离子电池负极材料被广泛研究.但是其固有的低电子电导率在很大程度上限制了其电化学性能的发挥.在本论文中,我们通过静电纺丝和后续空气热处理构建了具有连续介孔结构的T-Nb_2O_5纳米纤维.介孔结构彼此互连,确保高表面积的同时也促进了电解液的渗透.当用作锂离子电池负极时在电压窗口为0.01–3.0 V,电流密度为1 A g^(-1)的条件下,循环1000圈后可逆比容量达到238 mA h g^(-1).即使提高电压窗口到1.0–3.0 V,在循环200圈后仍然有166 mA h g^(-1)的可逆比容量.此外,电极材料还表现出优异的倍率性能.多孔纳米纤维结构和T-Nb_2O_5独特晶体结构的协同效应,增大了电极和电解质的接触面积,改善了电子传导性,从而使电化学性能得到提高. | 楼林震 孔祥忠 朱挺 林建德 梁叔全 刘菲 曹国忠 潘安强 | 2019 | Science China Materials2019,62,4: | 6 |
| 2 | 多孔碳负载五氧化二铌及其在超级电容器中的应用显示文摘以间苯二酚、甲醛和草酸铌为原料,通过原位聚合和高温煅烧,制备出多孔碳负载的五氧化二铌(Nb2O5)材料。X射线粉末衍射和扫描电镜分析表明,负载在多孔碳表面上的五氧化二铌具有三维纳米凸起结构,属于正交晶型。循环伏安测试表明该复合材料的比电容达到290 F·g-1,并具有良好的大电流放电能力,5 A·g-1的放电电流下,容量可以达到108 F·g-1。0.5 A·g-1的首次放电容量为355 F·g-1(1.0~3.0 V vs.Li+/Li),100次循环后容量保持率为82%。通过对交流阻抗图谱和等效电路的模拟分析,对其电化学赝电容特性进行了讨论。该复合材料降低了电解液中离子在充放电过程中的迁移路径和扩散阻力,实现Nb2O5活性材料的多维度接触,提高了Nb2O5的导电性,改善了其超级电容特性。 | 李和顺 高立新 张大全 林童 | 2016 | 化工学报2016,67,7: | 4 |
| 3 | Graphene oxide assisted facile hydrothermal synthesis of LiMn_(0.6)Fe_(0.4)PO_4 nanoparticles as cathode material for lithium ion battery显示文摘Assisted by graphene oxide(GO),nano-sized LiMn_(0.6)Fe_(0.4)PO_4 with excellent electrochemical performance was prepared by a facile hydrothermal method as cathode material for lithium ion battery.SEM and TEM images indicate that the particle size of LiMn_(0.6)Fe_(0.4)PO_4(S2)was about 80 nm in diameter.The discharge capacity of LiMn_(0.6)Fe_(0.4)PO_4 nanoparticles was 140.3 mAh-g^1 in the first cycle.It showed that graphene oxide was able to restrict the growth of LiMn_(0.6)Fe_(0.4)PO_4 and it in situ reduction of GO could improve the electrical conductivity of LiMn_(0.6)Fe_(0.4)PO_4 material. | Changchang Xu Li Li Fangyuan Qiu Cuihua An Yanan Xu Ying Wang Yijing Wang Lifang Jiao Huatang Yuan | 2014 | Journal of Energy Chemistry2014,23,3: | 3 |
| 4 | Fabrication of Nb2O5/C nanocomposites as a high performance anode for lithium ion battery显示文摘Nb_2O_5/C nanosheets are successfully prepared through a mixing process and followed by heating treatment.Such Nb_2O_5/C based electrode exhibits high rate performance and remarkable cycling ability,showing a high and stable specific capacity of ~380mAhg^(-1) at the current density of 50 mAg^(-1)(much higher than the theoretical capacity of Nb_2O_5).Further more,at a current density of 500mAg^(-1),the nanocomposites electrode still exhibits a specific capacity of above 150 mAh g^(-1) after 100 cycles.These results suggest the Nb_2O_5/C nanocomposite is a high performance anode material for lithium-ion batteries. | Gan-Ying Zeng Hao Wang Jing Guo Li-Mei Cha Yu-Hai Dou Jian-Min Ma | 2017 | Chinese Chemical Letters2017,28,4: | 3 |
| 5 | “绣球”状中空C/Nb2O5微球的制备及其电化学性能研究显示文摘以草酸铌为铌源,空心碳球为模板,采用简单的水热法合成了具有独特形貌的“绣球”状中空C/Nb2O5微球。采用X射线衍射(XRD)、扫描电子显微镜(SEM)和透射电子显微镜(TEM)表征了所制备中空C/Nb2O5微球的微观结构,并采用电化学工作站研究了其作为负极材料的锂离子电池的电化学性能。研究结果表明,直径约为1μm的空心碳球被Nb2O5包覆,中空C/Nb2O5微球呈现出独特的“绣球”形状,使其比表面积明显增大;在电流密度为40 mA/g下,中空C/Nb2O5微球和Nb2O5微球作为负极材料的锂离子电池的初始放电比容量分别为402.26 mA·h/g和336.44 mA·h/g,经过50次充放电循环后,当电流密度返回40 mA/g时,中空C/Nb2O5微球的放电容量为192.38 mA·h/g,而Nb2O5微球的放电容量仅为4.86 mA·h/g。说明这种特殊的“绣球”状中空结构有效地增加了Nb2O5的表面积,并使得中空C/Nb2O5微球负极材料具有高的比容量和良好的可逆性能。 | 周伟 吴泽斌 曾癸霖 郑佳玲 | 2021 | 湖南工业大学学报2021,35,1: | 1 |