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Feasibility of Pristine and Decorated AlN and SiC Nanotubes in Sensing of Noble Gases: A DFT study

机译:原始和装饰的Aln和SiC纳米管在感应贵重气体中的可行性:DFT研究

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The periodic boundary condition density functional theory framework was recruited in order to study the reactivity and electronic sensitivity of aluminium nitride(AlN)and silicon carbide(SiC)nanotubes as well as the gallium-doped aluminium nitride(AlN(Ga))and germanium-doped silicon carbide(SiC(Ge))nanotubes toward noble gases(NGs).In this respect,the adsorption possibility of the He,Ne,Ar,and Kr NGs onto the exterior surface of AlN,SiC,AlN(Ga)and SiC(Ge)nanotubes in the form of single-walled armchair(5,5)was comprehensively and comparatively investigated.All possible configurations were considered and optimized at B3LYP/6-311G(d)level of theory for each unit cells.Moreover,the single point energy calculations were applied on the completed nanotube/gas systems using different functionals including B3LYP,WB97X-3D,M062X,and CAM?? B3LYP in combination with 6–311G(d)and DEF2-TZVP basis sets.It was found that,there are tiny differences between any possible configurations of gas and nanotube systems,and therefore,the most stable configuration of each system was chosen for further analyses such as density of state,natural bond orbital,and quantum theory of atoms in molecules in order to better understand the intermolecular interaction between NGs and nanotubes.The obtained results indicate that,the Ga-doped and Ge-doped nanotubes are more profound in the sensing of NGs compared to the pristine nanotubes.
机译:募集了周期性边界条件密度的功能理论框架,以研究氮化铝(ALN)和碳化硅(SIC)纳米管的反应性和电子敏感性以及磷酸盐掺杂的氮化铝(GA)和德国铝(GA))和德国 - - - - - - - - 掺杂的碳化硅(SIC(GE))纳米管朝向贵重气体(NGS)。在这种方面,HE,NE,AR和KR NGS的吸附可能性可能是ALN,SIC,SIC,ALN(GA)和SIC和SIC的外表面(GE)全面研究并相对研究。以单壁扶手椅形式(5,5)的纳米管(5,5)。在B3LYP/6-311G(d)的理论水平上考虑了所有可能的配置,并在每个单位单元格中进行了优化。单点能量计算使用包括B3LYP,WB97X-3D,M062X和CAM在内的纳米管/气体系统上应用了? B3LYP与6-311G(D)和DEF2-TZVP基集结合在一起。发现,气体和纳米管系统的任何可能的配置之间存在很小的差异,因此,选择了每个系统的最稳定配置以进一步为了更好地了解NGS和纳米管之间的分子间相互作用,诸如状态密度,天然键轨道和原子的量子理论等分析。获得的结果表明,GA掺杂的纳米管和Ge掺杂的纳米管更为深刻。与原始纳米管相比,NGS的感测。

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