Sharmila Tagore S, Swaminathan J, Manikandan D, Gomathi S, Sabarinathan N, Ramalingam M, Sethuraman V
Department of Chemistry, M.R. Govt. Arts College, Mannargudi, Tamilnadu, India.
Department of Chemistry, A.V.C. College of Engineering, Mayiladuthurai, Tamilnadu, India.
Heliyon. 2021 Apr 29;7(4):e06593. doi: 10.1016/j.heliyon.2021.e06593. eCollection 2021 Apr.
In this study, (R)-9-(2-hydroxy propyl)adenine (HPA) is the molecule of interest for investigation. The XRD from single crystal of HPA has been used to extract its structural features. Since HPA crystallised in a non-centro symmetric space group P222, its NLO property was studied and it was found to exhibit very good SHG activity. To explore the intermolecular interactions the generated Hirshfeld surface has been investigated along with 2D-fingerprint plots. The experimental electronic and NMR spectra taken in the UV-visible and radio frequency regions respectively for HPA have been corroborated in correlation with theoretical predictions at Density Function Theory using 6-311++g (d, p) basis set. The experimental XRD geometrical parameters, chemical shifts of C and H and λ values of HPA fit satisfactorily with the corresponding theoretically obtained numerical values as well as the stimulated spectrograms with the experimental ones. Further to explore the electronic structure, the MESP surface has been generated and investigated. The thermodynamic, kinetic and chemical reactivity features have been explored by means of frontier molecular orbitals of HPA.
在本研究中,(R)-9-(2-羟丙基)腺嘌呤(HPA)是感兴趣的研究分子。HPA单晶的X射线衍射已被用于提取其结构特征。由于HPA结晶于非中心对称空间群P222,对其非线性光学性质进行了研究,发现它表现出非常好的二次谐波产生活性。为了探索分子间相互作用,研究了生成的 Hirshfeld 表面以及二维指纹图谱。分别在紫外-可见和射频区域获取的HPA实验电子光谱和核磁共振光谱,已与使用6-311++g(d,p)基组的密度泛函理论的理论预测相关联得到证实。HPA的实验XRD几何参数、C和H的化学位移以及λ值与相应的理论获得的数值以及与实验光谱图的模拟光谱图吻合良好。进一步探索电子结构,生成并研究了分子静电势(MESP)表面。通过HPA的前沿分子轨道探索了其热力学、动力学和化学反应活性特征。