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Contributions from orbital-orbital interactions to nucleus-independent chemical shifts and their relation with aromaticity or antiaromaticity of conjugated molecules

机译:轨道-轨道相互作用对与核无关的化学位移的贡献及其与共轭分子的芳香性或抗芳香性的关系

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摘要

The out-of-plane components of the nucleus-independent chemical shifts (NICS) for a group of aromatic and antiaromatic [n]-annulenes have been separated into several contributions on the basis of the gauge-including atomic orbital (GIAO) method. The analysis of the orbital interactions responsible of the NICS(pi)(zz) values shows that the large and positive values found for antiaromatic compounds are due to the predominance of pi -> pi* rotational transitions that overcome the diamagnetic and gauge contributions. However, NICS(pi)(zz) for aromatic compounds are dominated by contributions arising from the gauge transformation and no significant contributions are found from occupied-unoccupied orbital mixing. This analysis has been compared with previous work about ring currents in the same compounds.
机译:在包括原子轨道(GIAO)方法的基础上,一组芳香族和抗芳香族[n]环核的独立于核的化学位移(NICS)的平面外成分已被分成几个部分。对引起NICS(pi)(zz)值的轨道相互作用的分析表明,发现的抗芳族化合物的正值较大且正值是由于pi-> pi *旋转跃迁的优势,克服了反磁性和轨距的影响。但是,用于芳族化合物的NICS(pi)(zz)主要由量规转换引起的贡献所控制,而未占用和未占用的轨道混合都没有发现重要的贡献。将该分析结果与以前关于相同化合物中环电流的研究进行了比较。

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