An Experimental and Computational Exploration on the Electronic, Spectroscopic, and Reactivity Properties of Novel Halo-Functionalized Hydrazones

被引:22
|
作者
Ali, Akbar [1 ]
Khalid, Muhammad [2 ]
Rehman, Muhammad Abdul [1 ]
Anwar, Farooq [1 ]
Zain-Ul-Aabidin, Hafiz [1 ]
Akhtar, Muhammad Nadeem [3 ]
Khan, Muhammad Usman [4 ]
Carmo Braga, Ataualpa Albert [5 ]
Assiri, Mohammed A. [6 ]
Imran, Muhammad [6 ]
机构
[1] Univ Sargodha, Dept Chem, Sargodha 40100, Pakistan
[2] Khwaja Fareed Univ Engn & Informat Technol, Dept Chem, Rahim Yar Khan 64200, Pakistan
[3] Islamia Univ Bahawalpur, Dept Chem, Baghdad ul Jadeed Campus, Bahawalpur 63100, Pakistan
[4] Univ Okara, Dept Chem, Okara 56300, Pakistan
[5] Univ Sao Paulo, Inst Quim, BR-05508000 Sao Paulo, Brazil
[6] King Khalid Univ, Dept Chem, Fac Sci, Abha 61413, Saudi Arabia
来源
ACS OMEGA | 2020年 / 5卷 / 30期
关键词
NONLINEAR-OPTICAL PROPERTIES; BIOLOGICAL-ACTIVITIES; MOLECULAR DOCKING; CRYSTAL-STRUCTURE; DERIVATIVES; 2ND-ORDER; DIFFRACTION; INHIBITION; POLYIMIDE; SPECTRA;
D O I
10.1021/acsomega.0c02128
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Herein, halo-functionalized hydrazone derivatives "2-[(6'-chloroazin-2'-yl)oxy]-N'-(2-fluorobenzylidene) aceto-hydrazone (CPFH), 2-[(6'-chloroazin-2'-yl)oxy]-N'-(2-chlorobenzylidene) aceto-hydrazones (CCPH), 2-[(6'-chloroazin-2'yl)oxy]-N'-(2-bromobenzylidene) aceto-hydrazones (BCPH)" were synthesized and structurally characterized using FTIR, H-1-NMR, C-13-NMR, and UV-vis spectroscopic techniques. Computational studies using density functional theory (DFT) and time dependent DFT at CAM-B3LYP/6-311G (d,p) level of theory were performed for comparison with spectroscopic data (FT-IR, UV-vis) and for elucidation of the structural parameters, natural bond orbitals (NBOs), natural population analysis, frontier molecular orbital (FMO) analysis and nonlinear optical (NLO) properties of hydrazones derivatives (CPFH, CCPH, and BCPH). Consequently, an excellent complement between the experimental data and the DFT-based results was achieved. The NBO analysis confirmed that the presence of hyper conjugative interactions was pivotal cause for stability of the investigated compounds. The energy gaps in CPFH, CCPH, and BCPH were found as 7.278, 7.241, and 7.229 eV, respectively. Furthermore, global reactivity descriptors were calculated using the FMO energies in which global hardness revealed that CPFH was more stable and less reactive as compared to BCPH and CCPH. NLO findings disclosed that CPFH, CCPH, and BCPH have superior properties as compared to the prototype standard compound, which unveiled their potential applications for optoelectronic technology.
引用
收藏
页码:18907 / 18918
页数:12
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