丙烯醛与原生和掺ga磷化硼纳米管相互作用的DFT、NBO、RDG、MEP和热力学研究

M. Sameti
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引用次数: 1

摘要

本研究利用密度泛函理论(DFT)研究了丙烯醛(Acr)分子与原始和掺ga的磷化硼纳米管(BPNTs)的相互作用。计算并分析了所有模型的电学、量子、热力学性质、自然键轨道(NBO)、还原密度梯度(RDG)、原子与分子(AIM)和分子静电势(MEP)。结果表明,各模型的热力学参数(∆H和∆G)值均为负值,从热力学角度看是有利的。通过掺杂Ga原子和吸附Acr分子,纳米管的HOMO、LUMO、间隙能、电导率和光学性能与原始值相比略有改变。而体系整体硬度和化学势较原始状态略有上升,体系活度较原始状态略有下降。此外,AIM参数和RDG结果表明,Acr与bpnt之间的共价键相互作用非常强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A DFT, NBO, RDG, MEP and thermodynamic sudy of acrolein interaction with pristine and Ga‒doped boron phosphide nanotube
In this research, the interaction of the acrolein (Acr) molecule with the pristine and Ga‒doped boron phosphide nanotube (BPNTs) was investigated using the density functional theory (DFT). The electrical, quantum, thermodynamic properties, natural bond orbital (NBO), reduced density gradient (RDG), atom in molecule (AIM), and molecular electrostatic potential (MEP) for all studied models were calculated and analyzed. The results revealed that the thermodynamic parameters (∆H and ∆G) values for all studied models were negative and favorable in thermodynamic point of view. By doping the Ga atom and adsorbing Acr molecule, the HOMO, LUMO, gap energy, conductivity, and optical properties of the nanotube altered slightly from the original values. Whereas, the global hardness and chemical potential of the Ga-doped increased slightly from pristine state and the activity of system decreased slightly from the original state. In addition, the AIM parameters and RDG results showed that the covalent bonding interaction between Acr and BPNTs was so strong.
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