Rastegar Somayeh F, Hadipour Nasser L, Soleymanabadi Hamed
Young Researchers and Elite Club, Central Tehran Branch, Islamic Azad University, Tehran, Iran,
J Mol Model. 2014 Sep;20(9):2439. doi: 10.1007/s00894-014-2439-6. Epub 2014 Sep 9.
Theoretical calculations focused on the ability of an AlN nanosheet to detect O(3) and SO(2) molecules based on the dispersion corrected B3LYP (B3LYP-D) and B97D density functionals. Equilibrium geometries, stabilities, and the electronic properties of O(3) and SO(2) adsorptions on the surface of an AlN sheet were explored. The adsorption energies were calculated to be about -17.80 and -21.51 kcal mol(-1) at B3LYP-D level for O(3) and SO(2) corresponding to the most stable configurations, respectively. It was shown that the electrical conductance of the AlN sheet may be increased after the SO(2) adsorption, being somewhat insensitive to the O(3) adsorption. Thus, the AlN sheet may selectively detect SO(2) molecules in the presence of O(3) molecules.
理论计算聚焦于基于色散校正的B3LYP(B3LYP-D)和B97D密度泛函的AlN纳米片检测O(3)和SO(2)分子的能力。研究了O(3)和SO(2)在AlN片表面吸附的平衡几何结构、稳定性和电子性质。在B3LYP-D水平下,对应最稳定构型的O(3)和SO(2)的吸附能分别计算为约-17.80和-21.51 kcal mol(-1)。结果表明,SO(2)吸附后AlN片的电导率可能增加,而对O(3)吸附有些不敏感。因此,AlN片在存在O(3)分子的情况下可选择性检测SO(2)分子。