氮链掺杂swcnts的电子和热电性质研究:从头算研究

R. Takassa, A. E. Mouncharih, O. Farkad, F. Elfatouaki, S. Hassine, A. Ouahdani, E. Ibnouelghazi, D. Abouelaoualim
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引用次数: 0

摘要

在这项工作中,我们研究了在小(3,3)单壁碳纳米管(SWCNT)上分别掺杂氮原子,三个和两个N-之链所产生的CN, c2n2和c4n2纳米管的电子和热电性质。使用WIEN2K代码通过DFT理论进行所有计算。对于电子结构的计算,我们采用TB-mBJ交换势进行GGA,热电计算采用半经典玻尔兹曼输运理论进行。我们的结果表明,所有的结构都是能量稳定的。(3,3) swcnts的电子行为在CN纳米管中从半导体转变为金属,在C2N2和C4N2纳米管中转变为拓扑Weyl半金属(WSM)态。计算了原始纳米管的热电性能,如电导率、塞贝克系数和功率因数,结果表明n掺杂增强了原始纳米管的热电性能。氮掺杂的swcnts的电子和热电性能在电子和热电器件中具有很好的应用前景。
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Investigation of the electronic and thermoelectric properties of nitrogen chains doping SWCNT: Ab initio study
In this work, we investigate the electronic and thermoelectric properties of CN, C 2 N 2 and C 4 N 2 nanotubes resulting from doping of Nitrogen atoms, three and two N-zigzag chains on small (3,3) single walled carbon nanotube (SWCNT) respectivelly. All calculations were performed via DFT theory using WIEN2K code. For the calculations of electronic structure, we perform GGA with TB-mBJ exchange potential and for the thermoelectric calculations were performed in semi-classical Boltzmann transport theory. Our results show that all structures are energetically stable. The electronic behaviour of (3,3) SWCNT transforms from semiconductor to metal in CN nanotube and to topological Weyl semimetal (WSM) state for C2N2 and C4N2 nanotubes. The thermoelectric properties such as electrical conductivity, Seebeck coefficient and power factor are calculated, the results show that the N-doping enhancing the thermoelectric properties of pristine nanotube. The electronic and thermoelectric properties of nitrogen doping SWCNT show promising candidate toward electronic and thermoelectric devices.
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