Department of Physics, Bharathiar University, Coimbatore, India.
Department of Medical Physics, Bharathiar University, Coimbatore, India.
J Mol Model. 2021 Jun 25;27(7):209. doi: 10.1007/s00894-021-04821-1.
Heme, a biomolecule with complex structure and unique properties and strong adsorption of oxygen, is utilized as an adsorbing material for haloalkene gas molecules. It has been systematically investigated employing density functional theory. Among the haloalkene gases chosen in the present study, the interaction energy is maximum for CDFM (-10.66 kcal/mol) and lowest for TFM (-5.02 kcal/mol). The calculated bond stabilization energy for heme-haloalkene complexes correlates with findings of interaction energy. The noncovalent interaction between heme and haloalkenes is confirmed from the topological analysis. The energy gap values decrease on adsorption of haloalkenes along with a decrease in reactivity of the complexes.
血红素是一种具有复杂结构和独特性质以及强氧吸附能力的生物分子,被用作卤代烯烃气体分子的吸附材料。本研究采用密度泛函理论对其进行了系统研究。在所选择的卤代烯烃气体中,CDFM(-10.66 kcal/mol)的相互作用能最大,TFM(-5.02 kcal/mol)的相互作用能最低。血红素-卤代烯烃配合物的键稳定能与相互作用能的计算结果相关。从拓扑分析可以证实血红素与卤代烯烃之间的非共价相互作用。随着配合物反应性的降低,卤代烯烃的吸附导致能隙值降低。