Article

Synthesis, spectroscopic characterization and quantum chemical computational studies of (S)-N-benzyl-1-phenyl-5-(pyridin-2-yl)-pent-4-yn-2-amine.

Department of Physics, Celal Bayar University, Manisa, Turkey. Electronic address: .
Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy (impact factor: 2.1). 07/2012; 97:435-48. DOI:10.1016/j.saa.2012.06.041 pp.435-48
Source: PubMed

ABSTRACT The synthesis and characterization of a novel compound (S)-N-benzyl-1-phenyl-5-(pyridin-2-yl)-pent-4-yn-2-amine (abbreviated as BPPPYA) was presented in this study. The spectroscopic properties of the compound were investigated by FT-IR, NMR and UV spectroscopy experimentally and theoretically. The molecular geometry and vibrational frequencies of the BPPPYA in the ground state were calculated by using density functional theory (DFT) B3LYP method invoking 6-311++G(d,p) basis set. The geometry of the BPPPYA was fully optimized, vibrational spectra were calculated and fundamental vibrations were assigned on the basis of the total energy distribution (TED) of the vibrational modes, calculated with scaled quantum mechanics (SQM) method and PQS program. The results of the energy and oscillator strength calculated by time-dependent density functional theory (TD-DFT) and CIS approach complement with the experimental findings. Total and partial density of state (TDOS and PDOS) and also overlap population density of state (COOP or OPDOS) diagrams analysis were presented. The theoretical NMR chemical shifts ((1)H and (13)C) complement with experimentally measured ones. The dipole moment, linear polarizability and first hyperpolarizability values were also computed. The linear polarizabilities and first hyper polarizabilities of the studied molecule indicate that the compound is a good candidate of nonlinear optical materials. The calculated vibrational wavenumbers, absorption wavelengths and chemical shifts showed the best agreement with the experimental results.

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Keywords

absorption wavelengths
 
calculated vibrational wavenumbers
 
CIS approach
 
density functional theory
 
experimental findings
 
first hyper polarizabilities
 
first hyperpolarizability values
 
fundamental vibrations
 
ground state
 
nonlinear optical materials
 
novel compound
 
OPDOS
 
oscillator strength
 
PQS program
 
quantum mechanics
 
theoretical NMR chemical shifts
 
time-dependent density functional theory
 
total energy distribution
 
vibrational frequencies
 
vibrational modes