Tapala Kgaugelo C, Ndlangamandla Nqobile G, Ngoepe Mpho P, Clayton Hadley S
Chemistry Department, University of South Africa, Unisa Science Campus, Johannesburg 1709, South Africa.
Bioinorg Chem Appl. 2024 May 29;2024:6697523. doi: 10.1155/2024/6697523. eCollection 2024.
X-ray crystallography, spectroscopy, computational methods, molecular docking studies, and DNA-binding studies have been useful in the investigations of intermolecular and intramolecular interactions of osmium-cymene oxalato complexes with aryl phosphine and aryl phosphonium groups in both primary and secondary coordination spheres, respectively. Molecular structures of the novel complexes PPh[Os(--cymene)Br(--CO)] () and [Os(--cymene) (--CO)PPh] () were resolved by single-crystal X-ray diffraction (XRD). Primary and secondary coordination sphere contacts were investigated using Hirshfeld surface analysis which was supported by molecular docking (MD) studies. The MD data obtained predicted significant differences in binding energy across three receptors for the two osmium complexes. An DNA-binding study was accomplished using UV-Vis spectroscopy which showed that both and bond with DNA through an intercalation approach. The optimized molecular geometry, frontier molecular orbital (E and E) energies, global electrophilicity index (), chemical hardness (), chemical potential (), and the energy band gap (E-E) were calculated utilizing density functional theory (DFT) methods. Computed structural parameters (bond lengths and angles) support the experimental single-crystal XRD data.
X射线晶体学、光谱学、计算方法、分子对接研究以及DNA结合研究,分别在研究锇-异丙苯草酸酯配合物与芳基膦和芳基鏻基团在一级和二级配位球中的分子间和分子内相互作用方面发挥了作用。新型配合物PPh[Os( - 异丙苯)Br( - CO)] () 和 [Os( - 异丙苯) ( - CO)PPh] () 的分子结构通过单晶X射线衍射(XRD)得以解析。利用Hirshfeld表面分析研究了一级和二级配位球接触情况,分子对接(MD)研究为其提供了支持。获得的MD数据预测了这两种锇配合物在三种受体上结合能的显著差异。使用紫外可见光谱进行了DNA结合研究,结果表明 和 均通过插入方式与DNA结合。利用密度泛函理论(DFT)方法计算了优化后的分子几何结构、前沿分子轨道(E和E)能量、全局亲电性指数()、化学硬度()、化学势()以及能带隙(E - E)。计算得到的结构参数(键长和键角)支持了实验单晶XRD数据。