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Carbon nanotube doping mechanism in a salt solution and hygroscopic effect: Density functional theory

机译:盐溶液中碳纳米管的掺杂机理和吸湿作用:密度泛函理论

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The mechanism of doping carbon nanotubes (CNTs) with a salt solution was investigated using the density functional theory. We propose that the anion-CNT complex is a key component in doping CNTs. Although the cations play an important role in ionizing CNTs as an intermediate precursor, the ionized CNTs are neutralized further by forming a stable anion-CNT complex as a final reactant. The anion-CNT bond has a strong ionic bonding character and clearly shows p-type behavior by shifting the Fermi level toward the valence band. The midgap state is introduced by the strong binding of carbon and anion atoms. These localized charged anion sites are highly hygroscopic and induce the adsorption of water molecules. This behavior provides a new possibility for using anion-functionalized CNTs as humidity sensors.
机译:利用密度泛函理论研究了用盐溶液掺杂碳纳米管(CNTs)的机理。我们认为阴离子-CNT复合物是掺杂CNT的关键成分。尽管阳离子在电离作为中间前驱体的CNT中起着重要作用,但通过形成稳定的阴离子CNT复合物作为最终反应物,可进一步中和电离的CNT。阴离子-CNT键具有强的离子键合特性,并且通过将费米能级移向价带而清楚地显示出p型行为。中间能隙状态是通过碳和阴离子原子的牢固结合而引入的。这些局部带电荷的阴离子位点具有高度吸湿性,并引起水分子的吸附。这种行为为使用阴离子官能化的CNTs作为湿度传感器提供了新的可能性。

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