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首页> 外文期刊>Adsorption >The thermodynamic, quantum, AIM and NBO study of the interaction of pyrazinamide drug with the pristine and transition metal-doped B12P12
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The thermodynamic, quantum, AIM and NBO study of the interaction of pyrazinamide drug with the pristine and transition metal-doped B12P12

机译:热力学,量子,AIM和NBO研究吡嗪酰胺药与原始和过渡金属掺杂B12P12的相互作用

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In this work, the interaction of pyrazinamide (Pyr) drug with pristine, Sc, Ti, V and Cr-doped B12P12 nanocage is investigated by using density functional theory (DFT) at the cam-B3LYP/Lanl2DZ level of theory. From optimized structure, the adsorption energy, deformation energy, thermodynamic parameters, quantum parameters, reduced density gradient (RDG), natural bond orbital (NBO) and atom in molecule (AIM) parameters are calculated at the above level of theory. The calculated results demonstrate that with doping Ti atom the adsorption and deformation energy of Pyr/BP nanocage complex increase significantly from original values. The thermodynamic parameters revealed that adsorption of Pyr on the surface of doped models of B12P12 nanocage is more favorable than the pristine model. On the other hand, the Delta Delta G((sol)) values of water and ethanol solvent for adsorption of Pyr drug on the surface of pristine nanocage is negative and for Sc, Ti, V, and Cr doped B12P12 nanocage models are positive. The band gap of all adsorption models are in range 0.97-2.52 eV and the electrical and optical properties of system alter significantly from pristine models. The values of (2)rho and H-BCP for all adsorption models are positive and negative respectively, it refers to medium strength or partially covalent bond and this result is an agreement with RDG and NBO outputs. The calculated results demonstrate that the Sc, Ti, V, and Cr doped B12P12 nanocages are a good candidate for deliver Pyr drug in the biological system.
机译:在这项工作中,通过使用CAM-B3LYP / LANL2DZ理论水平的密度泛函理论(DFT)来研究吡嗪酰胺(Pyr)药物与原始,SC,Ti,V和Cr掺杂的B12P12纳米可以的相互作用。从优化的结构,在上述理论水平上计算吸附能量,变形能量,热力学参数,量子参数,降低密度梯度(RDG),天然键(AIM)参数中的天然键(AIM)参数。计算结果表明,通过掺杂Ti原子,Pyr / BP纳米腔复合物的吸附和变形能量从原始值显着增加。热力学参数表明,Byr在B12P12纳米的掺杂模型表面上的吸附比原始模型更有利。另一方面,在原始纳米处理表面上吸附的水和乙醇溶剂的Delta delta g((sol))值为阴性,对于Sc,Ti,V和Cr掺杂B12P12纳米型模型是阳性的。所有吸附模型的带隙范围为0.97-2.52 EV和系统的电气和光学性质从原始模型中显着改变。所有吸附模型的(2)Rho和H-BCP的值分别是正且阴性的,是指中强或部分共价键,并且该结果是与RDG和NBO输出的协议。计算结果表明,SC,Ti,V和Cr掺杂B12P12纳米病是在生物系统中递送黄铜药的良好候选者。

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