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Protonation Sites in Benzimidazolyl-Chalcones Molecules: An ab Initio and DFT Investigation

机译:苯并咪唑基-Chalcones分子的质子化位点:从头算和DFT研究

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In this work, we have focused our investigations on the protonation sites predilection in the benzimidazolyl- chalcones (BZC) derivatives. Particularly, we are interested in the study of geometrical and energetical parameters. BZC are well known for their particularly nematicidal activity. Ten (10) BZC derivatives coded BZC-1 to BZC-10, with various larvicidal concentrations, have been selected for this work. They all are different one from another by the phenyl ring which is substituted by electron modulators such as alkyl, hydroxyl, alkoxy, aminoalkyl, halogen and nitro or replaced by the furan. Quantum chemical methods, namely HF/6-311 + G(d,p) and MPW1PW91/6- 311 + G(d,p) theory levels have been used to determine the geometrical and energetical parameters by the protonation on each heteroatom of the BZC derivative. An accuracy results with relatively less time consuming has been obtained using Hartree-Fock (HF) and Density Functional Theory methods (DFT/MPW1PW91). The calculations results allow identifying the sp2 nitrogen as the preferential site of protonation in BZC derivative compounds.
机译:在这项工作中,我们将研究重点放在苯并咪唑基-查耳酮(BZC)衍生物的质子化位点偏爱上。特别地,我们对几何和能量参数的研究感兴趣。 BZC以其特别的杀线虫活性而闻名。已选择十种(10)编码为BZC-1至BZC-10的BZC衍生物,具有不同的杀幼虫剂浓度。它们之间的苯环彼此不同,苯环被电子调节剂(例如烷基,羟基,烷氧基,氨基烷基,卤素和硝基)取代或被呋喃取代。量子化学方法,即HF / 6-311 + G(d,p)和MPW1PW91 / 6- 311 + G(d,p)理论水平已用于通过原子的每个杂原子上的质子化确定几何和能量参数。 BZC衍生物。使用Hartree-Fock(HF)和密度泛函理论方法(DFT / MPW1PW91)获得了耗时较少的精度结果。计算结果可以确定sp2氮是BZC衍生物化合物中质子化的优先位点。

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