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Vertically aligned BCN nanotubes with high capacitance

机译:垂直排列的高电容BCN纳米管

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Figure Persented: Using a chemical vapor deposition method, we have synthesized vertically aligned BCN nanotubes (VA-BCNs) on a Ni-Fe-coated SiO _2/Si substrate from a melamine diborate precursor. The effects of pyrolysis conditions on the morphology and thermal property of grown nanotubes, as well as the nanostructure and composition of an individual BCN nanotube, were systematically studied. It was found that nitrogen atoms are bonded to carbons in both graphitic and pyridinic forms and that the resultant VA-BCNs grown at 1000 °C show the highest specific capacitance (321.0 F/g) with an excellent rate capability and high durability with respect to nonaligned BCN (167.3 F/g) and undoped multiwalled carbon nanotubes (117.3 F/g) due to synergetic effects arising from the combined co-doping of B and N in CNTs and the well-aligned nanotube structure.
机译:图的观点:使用化学气相沉积方法,我们已经从三聚氰胺二硼酸盐前体在镍铁涂层的SiO _2 / Si衬底上合成了垂直排列的BCN纳米管(VA-BCN)。系统地研究了热解条件对生长的纳米管的形态和热性能以及单个BCN纳米管的纳米结构和组成的影响。发现氮原子以石墨形式和吡啶鎓形式键合到碳上,并且在1000°C下生长的所得VA-BCN表现出最高的比电容(321.0 F / g),具有极佳的倍率性能和较高的耐久性。由于CNT中B和N的共掺杂和良好排列的纳米管结构共同产生的协同效应,导致未排列的BCN(167.3 F / g)和未掺杂的多壁碳纳米管(117.3 F / g)。

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