用DFT方法评价和比较不同阴离子双核二胺配体上钯(II)配合物的热物理、化学和生物性质

Mohammad Jahidul Islam, Md. Nuruzzaman Sarker, A. Kumer, Sunanda Paul
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引用次数: 6

摘要

由于癌症是世界头号杀手,科学家和研究人员一直在寻找新的药物和治疗方法。大多数抗癌药物是FDA批准的有机化合物,而金属药物非常罕见。目前,一些钯铑配合物正被用作抗癌分子。钯(II)配合物对不同的癌细胞具有较高的抗癌活性,这就是为什么用密度泛函理论(DFT)的方法对不同胺配体进行理论研究以合成新分子的原因。测量了自由能、熵、偶极矩、结合能、核能、电子能、生成热等热物性参数。另一方面,利用DFT方法计算了聚合物的化学反应性质,如已占据分子轨道最高(HOMO)、最低未占据分子轨道(LUMO)、HOMO-LUMO间隙、电离势、电负性、硬度、柔软度和电子亲和性,以及电荷密度、表面积网格、体积、LogP、极化率、折射率、分子质量等生物学性质。为了比较生物性能,采用氯化物、硝酸盐、氢氧化物、碳酸盐和硫酸盐等阴离子作为均相和非均相添加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The evaluation and comparison of thermo-physical, chemical and biological properties of palladium (II) complexes on binuclear diamine ligands with different anions using the DFT method
As cancer is the top killer diseases in the world, the scientists and researchers have been searching the new drugs and remedy methods. Most of the anticancer drugs are organic compounds which were approved by the FDA while metallodrugs are very rare. In the present time, some palladium and rhodium complexes are going to use as anticancer molecules. The palladium (II) complex has higher anticancer activity against different cancer cell that is why the different amine ligands are considered under theoretical study by the method of density functional theory (DFT) to make a new molecule. Some thermo-physical parameter was conducted such as free energy, entropy, dipole moment, binding energy, nuclear energy, electronics energy, the heat of formation. On the other hand, the chemical reactivity properties like occupied Molecular Orbital Highest (HOMO), Lowest Unoccupied Molecular Orbital (LUMO), HOMO-LUMO gap, ionization potential, electronegativity, hardness, softness and electron affinity, and biological properties like charge density, surface area grid, volume, LogP, polarizability, refractivity, molecular mass were calculated using the DFT method. To make comparative biological properties, different anions such as chloride, nitrate, hydroxide, carbonate and sulfate ions were used as homogeneous and heterogeneous adding.
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