首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >The Li+ affinities of a series of substituted acetophenones in their low-lying excited triplet state: A DFT study
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The Li+ affinities of a series of substituted acetophenones in their low-lying excited triplet state: A DFT study

机译:DFT研究:一系列处于低位激发三重态的取代苯乙酮的Li +亲和力

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A detailed study of Li+ affinities or a series or para-substituted acetophenones and their O-Li+ counterparts was performed using density functional theory (Becke, Lee, yang and part [B3LYP]) method using 6-311G(d,p) basis sets with complete geometry optimization in the relevant excited state. The gas phase O-Li+ complex formation turns out to be exothermic case and the local stereochemical disposition of the Li+ is found to be almost the same in each case. The presence of para-substituent is seen to cause Very little change of the Li+ affinity relative to the unsubstituted acetophenones. Electron releasing p-substituents increase it by 0.028 hartree and electron withdrawing p-substituents decrease it by 0.006 hartree. Computed Li+ affinities are sought to be correlated with a number of computed system parameters such as the net charge on the Li+ and the carbonyl oxygen of the Li+ complexes and the net charge on the carbonyl oxygen of the free bases and also the computed hardness or the free bases. The Li+ ion-induced shifts are in general red shifts for the low-lying excited triplet state. The energetics, structural and electronic properties of the complexes indicate that in the lowest excited triplet state the interaction between the Li+ ion and a carbonyl base is predominantly an ion-dipole attraction and the ion-induced dipole interaction as well rather than a covalent interaction.
机译:使用密度泛函理论(贝克,李,杨和部分[B3LYP])方法,使用6-311G(d,p)基集,对Li +亲和力或一系列或对位取代的苯乙酮及其O-Li +对应物进行了详细研究。在相关的激发态下进行完整的几何优化。气相O-Li +络合物的形成证明是放热的情况,并且在每种情况下发现Li +的局部立体化学布置几乎相同。相对于未取代的苯乙酮,可以看到对位取代基的存在导致Li +亲和力的变化很小。电子释放的p-取代基使它增加0.028 hartree,而吸电子的p-取代基使它减少0.006 hartree。试图将计算出的Li +亲和力与许多计算出的系统参数相关联,例如Li +上的净电荷和Li +配合物的羰基氧以及游离碱的羰基氧的净电荷以及计算出的硬度或免费基地。 Li +离子诱导的位移通常是低位激发三重态的红移。配合物的能量,结构和电子性质表明,在最低激发三重态下,Li +离子与羰基之间的相互作用主要是离子-偶极子的吸引和离子诱导的偶极子的相互作用,而不是共价的相互作用。

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