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电化学一锅法合成荧光碳纳米点用于检测过氧化氢(英文) 被引量:3
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作者 邓建辉 林凡波 +1 位作者 张友玉 姚守拙 《湖南师范大学自然科学学报》 CAS 北大核心 2012年第1期43-47,共5页
利用一种简易的电化学一锅法合成了荧光碳纳米点.此种方法没有复杂的后续纯化过程可以一次性获得尺寸均一的纳米碳点(4±1 nm).过氧化氢可以直接将制得的碳纳米点荧光猝灭,当过氧化氢浓度范围在25~300μmol/L时,碳纳米点的荧光猝... 利用一种简易的电化学一锅法合成了荧光碳纳米点.此种方法没有复杂的后续纯化过程可以一次性获得尺寸均一的纳米碳点(4±1 nm).过氧化氢可以直接将制得的碳纳米点荧光猝灭,当过氧化氢浓度范围在25~300μmol/L时,碳纳米点的荧光猝灭强度与过氧化氢浓度呈较好的线性关系,检测限为3μmol/L.本研究为过氧化氢的检测提供了一种新的简易的方法,在生化传感研究中有着巨大的应用前景. 展开更多
关键词 碳纳米点 电化学一锅法 荧光猝灭 过氧化氢
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One-pot synthesis of Li_3VO_4@C nanofibers by electrospinning with enhanced electrochemical performance for lithium-ion batteries 被引量:5
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作者 Ruihuan Qin Gaoqi Shao +3 位作者 Junxian Hou Zhi Zheng Tianyou Zhai Huiqiao Li 《Science Bulletin》 SCIE EI CAS CSCD 2017年第15期1081-1088,共8页
Electrospinning is firstly used to one-pot synthesis of Li3VO4@C nanofibers in a large scale. Although with the presence of organic sources in synthesis process, the pure phase Li3VO4 with superior nanofibrous morphol... Electrospinning is firstly used to one-pot synthesis of Li3VO4@C nanofibers in a large scale. Although with the presence of organic sources in synthesis process, the pure phase Li3VO4 with superior nanofibrous morphology is still successfully obtained through adjusting different heat treatment processes and different vanadium sources. The prepared Li3VO4@C nanofibers exhibit a unique structure in which nanosized Li3VO4 particles are uniformly embedded in amorphous carbon matrix. Compared with LiBVO4/C powder, Li3VO4@C nanofibers display enhanced reversible capacity of 451 mAhg^-1 at 40mAg^-1 with an increased initial coulombic efficiency of 82.3%, and the capacity can remain at 394 mAh g ^-1 after 100 cycles. This superior electrochemical performance can be attributed to its unique structure which ensures a high reactivity by nanosized Li3VO4, more stable electrode/electrolyte interface by carbon encapsulation, improved electronic conductivity and buffered volume changes by flexible carbon matrix. The electrospinning technology provides an effective method to obtain high performance Li3VO4 as a promising anode material for lithium-ion batteries. 展开更多
关键词 Lithium vanadium oxide Electrospinning Lithium-ion batteries Anode Carbon nanocomposite
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