首页> 外文期刊>Oriental Journal of Chemistry: An International Research Journal of Pure & Applied Chemistry >Quantum Mechanical Investigation of Bond Gaps of n-acceptor Ligand Alone and Affected Nanoring Field: EPR and NMR study
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Quantum Mechanical Investigation of Bond Gaps of n-acceptor Ligand Alone and Affected Nanoring Field: EPR and NMR study

机译:n受体配体的键隙和受影响的纳米环场的量子力学研究:EPR和NMR研究

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摘要

We studied non-bonded interaction of the [Co(CN)6]~(3-) complex Situated B_(24)N_(24) nanoring. Early, the geometry of [Co(CN)6]~(3-) and B_(24)N_(24) have been optimized at B3LYP method with Def2-SV(P)/ LANL2DZ(ECP) and EPR-II basis set respectively. To confirmation the structural stability of the B_(24)N_(24)-[Co(CN)6]~(3-) nano system, delocalization of electrons between donor and acceptor bonds and LUMO and HOMO for the lowest energy have been computed by DFT/ B3LYP method. Then we investigated NBO data such as coefficients and hybrids of orbitals, second order perturbation theory analysis of fock matrix, and "E in different loops of the nanoring have been calculated at B3LYP method.
机译:我们研究了[Co(CN)6]〜(3-)配合物位于B_(24)N_(24)纳米环的非键相互作用。早期,已使用Def2-SV(P)/ LANL2DZ(ECP)和EPR-II基集在B3LYP方法中优化了[Co(CN)6]〜(3-)和B_(24)N_(24)的几何形状分别。为了确认B_(24)N_(24)-[Co(CN)6]〜(3-)纳米系统的结构稳定性,计算了供体和受体键之间的电子离域以及最低能量的LUMO和HOMO通过DFT / B3LYP方法。然后,我们调查了NBO数据,例如轨道的系数和混合信号,fock矩阵的二阶微扰理论分析,以及“已通过B3LYP方法计算了纳米环不同环中的E”。

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