Synthesis, crystal structure, DFT/HF, Hirshfeld surface, and molecular docking analysis of 4-(tert-butyl)-4-nitro-1,1-biphenyl

Neha Kumari, Ruchika Sharma, Archana Yadav, S. A. Sankpal, J. M. Raj, S. Murugavel, R. Kant
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Abstract

4-(tert-Butyl)-4-nitro-1,1-biphenyl has been synthesized, and its structure has been characterized by using some spectroscopic and single-crystal X-ray diffraction techniques. It crystallizes in a monoclinic crystal system with space group P21/n and unit cell parameters: a = 6.4478(3) Å, b = 9.2477(4) Å, c = 23.4572(9) Å, β = 95.114(4)°, V = 1393.11(10) Å3, Z = 4. The molecular structure has been solved by using the intrinsic phasing method. The crystal structure is stabilized by C-H···O interactions. Computational studies were performed using density functional theory (DFT) and Hartree-Fock (HF) methods. The optimized geometry obtained from DFT and HF in the gas phase was compared with solid-phase experimental data retrieved from single-crystal X-ray diffraction results. Frontier molecular orbitals, such as the HOMO/LUMO energy gap, the molecular electrostatic potential, and Mulliken atomic charges, have been investigated. The HOMO LUMO energy gap of 3.97 eV indicates that the molecule is soft and highly reactive. The Hirshfeld surface analysis and their associated fingerprint plots have been used to quantitatively validate the interactions. Further insilico molecular docking studies have been performed with the molecular target Type-II topoisomerase (PDB ID: 1JIJ) and their results suggest that 4-(tert-butyl)-4-nitro-1,1-biphenyl could be considered an anticancer drug.
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4-(叔丁基)-4-硝基-1,1-联苯的合成、晶体结构、DFT/HF、Hirschfeld表面和分子对接分析
合成了4-(叔丁基)-4-硝基-1,1-联苯,并利用光谱和单晶X射线衍射技术对其结构进行了表征。它在单斜晶系中结晶,空间群为P21/n,晶胞参数为:a=6.4478(3)Å,b=9.2477(4)Å、c=23.4572(9)Å和β=95.114(4)°,V=1393.11(10)Å3,Z=4。用本征定相法求解了分子结构。晶体结构通过C-H··O相互作用而稳定。使用密度泛函理论(DFT)和Hartree-Fock(HF)方法进行了计算研究。将从气相中的DFT和HF获得的优化几何结构与从单晶X射线衍射结果获得的固相实验数据进行比较。研究了前沿分子轨道,如HOMO/LUMO能隙、分子静电势和Mulliken原子电荷。3.97eV的HOMO LUMO能隙表明该分子是软的并且具有高反应性。赫什菲尔德表面分析及其相关指纹图已用于定量验证相互作用。对分子靶点Ⅱ型拓扑异构酶(PDB ID:1JIJ)进行了进一步的原位分子对接研究,结果表明4-(叔丁基)-4-硝基-1,1-联苯可以被认为是一种抗癌药物。
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