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首页> 外文期刊>Journal of nanoscience and nanotechnology >Preparation and Growth of N-Doped Hollow Carbon Nanospheres and Their Application as Catalyst Support in Direct Borohydride Fuel Cell
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Preparation and Growth of N-Doped Hollow Carbon Nanospheres and Their Application as Catalyst Support in Direct Borohydride Fuel Cell

机译:N掺杂空心碳纳米球的制备,生长及其在直接硼氢化物燃料电池中的催化剂支持作用

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摘要

N-doped hollow carbon nanospheres (HCNSs) were prepared by electric arc discharge method in N-2 atmosphere. X-ray Photoelectron Spectroscopy (XPS) analysis shows that their nitrogen content reaches up to 4.9 atom%. Both the low thermal conductivity of N-2 and the doping of nitrogen atom make carbon unit bend to form hollow nanosphere structure. High-resolution transmission electron microscopy (HRTEM) and X-ray diffusion (XRD) analysis prove the presence of detected defects and a poor crystallinity on the HCNSs shell. Moreover, annealing treatment of HCNSs was carried out at 1100 degrees C/10 h and 1400 degrees C/2 h to research their fracture extension. It is found that HCNSs could grow into closed-tubes even with a shell at high annealing temperature. HCNSs were applied in direct borohydride fuel cell (DBFC) to evaluate their catalytic performance. The electrochemical results show that pure HCNSs doesn't have any catalysis effect, but they can greatly promote the catalytic performance of CoO, and the largest polarization current density of which achieves 1.845 A.cm(-2) at -0.7 V (vs. Hg/HgO electrode).
机译:在N-2气氛下,通过电弧放电法制备了N掺杂的空心碳纳米球。 X射线光电子能谱(XPS)分析表明,它们的氮含量高达4.9原子%。 N-2的低导热性和氮原子的掺杂都使碳单元弯曲形成中空的纳米球结构。高分辨率透射电子显微镜(HRTEM)和X射线扩散(XRD)分析证明HCNSs外壳上存在检测到的缺陷和较差的结晶度。此外,HCNSs的退火处理是在1100摄氏度/ 10小时和1400摄氏度/ 2小时进行的,以研究其断裂扩展。结果发现,即使具有高退火温度的壳,HCNS仍可能长成密闭管。 HCNS用于直接硼氢化物燃料电池(DBFC)中以评估其催化性能。电化学结果表明,纯HCNSs没有任何催化作用,但是它们可以大大提高CoO的催化性能,并且最大的极化电流密度在-0.7 V(vs. Hg / HgO电极)。

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