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首页> 外文期刊>ACS nano >Design and Synthesis of Bubble-Nanorod-Structured Fe2O3-Carbon Nanofibers as Advanced Anode Material for Li-Ion Batteries
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Design and Synthesis of Bubble-Nanorod-Structured Fe2O3-Carbon Nanofibers as Advanced Anode Material for Li-Ion Batteries

机译:气泡-纳米棒结构的Fe2O3-碳纳米纤维作为锂离子电池高级负极材料的设计与合成

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摘要

A structure denoted as a "bubble-nanorod composite" is synthesized-by introducing the Kirkendall effect into the electrospinning method. Bubble-nanorod-structured Fe2O3-C composite nanofibers, which are composed of nanosized hollow Fe2O3 spheres uniformly dispersed in an amorphous Carbon Matrix, are synthesized as the target material. Post-treatment of the electrospun precursor nanofibers at 500 degrees C under 10% H-2/Ar mixture gas atmosphere produces amorphous FeOx-carbon composite nanofibers. Post-treatment of the FeOx-carbon composite nanofibers at 300 degrees C under air atmosphere produces the bubble-nanorod-structured Fe2O3-C composite nanofibers. The solid Fe nanocrystals formed by the reduction of FeOx are converted into hollow Fe2O3 nanospheres during the further heating process by the well-known Kirkendall diffusion process: The discharge capacities of the bubble-nanorod-structured,Fe2O3-C composite nanofibers and hollow bare Fe2O3 nanofibers for the 300th cycles at a current density of 1.0 A g(-1) are 812 and 285 mA h g(-1), respectively,
机译:通过将Kirkendall效应引入电纺丝法,可以合成称为“气泡-纳米复合材料”的结构。以均匀分布在非晶态碳基体中的纳米级空心Fe2O3球体为材料,合成了气泡-纳米管结构的Fe2O3-C复合纳米纤维。在10%H-2 / Ar混合气体气氛下,在500摄氏度下对电纺前驱体纳米纤维进行后处理,生成无定形的FeOx-碳复合纳米纤维。 FeOx-碳复合纳米纤维在空气中于300摄氏度下进行后处理,产生了气泡-纳米结构的Fe2O3-C复合纳米纤维。由FeOx还原形成的固态Fe纳米晶体在进一步加热过程中,通过众所周知的Kirkendall扩散过程转化为空心Fe2O3纳米球:气泡-纳米结构的Fe2O3-C复合纳米纤维和空心裸Fe2O3的放电容量在电流密度为1.0 A g(-1)时,第300个循环的纳米纤维分别为812和285 mA hg(-1),

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