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Adsorption of carbon dioxide and ammonia in transition metal-doped boron nitride nanotubes

机译:过渡金属掺杂氮化硼纳米管中的二氧化碳和氨的吸附

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摘要

Density functional theory calculations were carried out to analyze the performance of single-walled boron nitride nanotubes (BNNT) doped with Ni, Pd, and Pt as a sensor of CO2 and NH3. Binding energies, equilibrium distances, charge transference, and molecular orbitals, as well as the density of states, are used to study the adsorption mechanism of the gas species on the surface of the nanotube. Our results suggest a considerable rise in the adsorption potential of BNNTs when the doping scheme is employed, as compared with adsorption in pristine nanotubes. Ni-doped nanotubes are observed to be the best candidates for adsorption of both carbon dioxide and ammonia.
机译:进行密度泛函理论计算,以分析用Ni,Pd和Pt作为CO 2和NH 3传感器掺杂掺杂的单壁氮化硼纳米管(BNNT)的性能。 结合能量,平衡距离,电荷转移和分子轨道以及状态的密度,用于研究纳米管表面上的气体物种的吸附机理。 我们的结果表明,当使用掺杂方案时,在使用掺杂方案时,与原始纳米管中的吸附相比,BNNTS的吸附电位相当大。 观察到Ni掺杂的纳米管是用于吸附二氧化碳和氨的最佳候选者。

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