Tsipis Athanassios C, Gkarbounis Dimitrios N
Department of Chemistry, Tsipis Laboratory of Inorganic and General Chemistry, University of Ioannina, Ioannina, 45110, Greece,
J Mol Model. 2015 Jun;21(6):153. doi: 10.1007/s00894-015-2661-x. Epub 2015 May 23.
A series of coinage metalated benzenes formulated as C6H6-nMn (M = Cu, Ag, Au, n = 1-5) were investigated by means of density functional theory (DFT) calculations. The structural, energetic, magnetotropic and spectroscopic properties of the coinage metalated benzenes were analyzed thoroughly and compared to the respective properties of the archetype aromatic benzene molecule. In contrast to the latter, the C6H6-nMn (M = Cu, Ag, Au, n = 1-5) molecules are predicted to be aromatic even in their excited triplet state. Excellent linear correlations between (I) the zz component of the nucleus independent chemical shift [NICSzz(1)] values and the total negative natural charge acquired by the carbocyclic ring, and (ii) the NICSzz(1) vs wavelength (λ) of the HOMO → LUMO transitions in the absorption spectra of the coinage metalated benzenes were established. The emission spectra of the coinage metalated benzenes were characterized by high [Formula: see text] values, particularly for the di-substituted - and p-isomers, with the highest [Formula: see text] value of 67 kcal mol(-1) calculated for the m-M6H4Au2 species. The bonding pattern of the coinage metalated benzenes was analyzed thoroughly by means of a multitude of electronic structure calculation methods [natural bond orbital (NBO), atoms-in-molecules (AIM), electron localization function (ELF), reduced density gradient (RDG) and Sign(λ 2(r))ρ(r) functions]. Our findings indicate whole classes of new coinage metalated benzenes (mono-, di-, tri-, four- and five-substituted) opening a new chemistry for the coinage metalated benzenes, indicating that their chemistry will be worthwhile studying both experimentally and theoretically in the future. Graphical Abstract The complete series of coinage metalated benzenes were investigated by density functional theory methods. The structural, energetic, bonding, magnetotropic and spectroscopic properties of the coinage metalated benzenes were analyzed thoroughly. In contrast to the archetype aromatic benzene molecule, the coinage metalated benzenes are predicted to be aromatic even in their excited triplet state.
通过密度泛函理论(DFT)计算研究了一系列化学式为C6H6-nMn(M = Cu、Ag、Au,n = 1 - 5)的金属化苯。对金属化苯的结构、能量、磁各向异性和光谱性质进行了全面分析,并与原型芳香苯分子的相应性质进行了比较。与后者不同,预测C6H6-nMn(M = Cu、Ag、Au,n = 1 - 5)分子即使在其激发三重态下也是芳香性的。建立了(I)核独立化学位移[NICSzz(1)]值的zz分量与碳环获得的总负自然电荷之间,以及(ii)金属化苯吸收光谱中HOMO→LUMO跃迁的NICSzz(1)与波长(λ)之间的良好线性相关性。金属化苯的发射光谱以高[公式:见原文]值为特征,特别是对于二取代和对异构体,间位-M6H4Au2物种计算出的最高[公式:见原文]值为67 kcal mol(-1)。通过多种电子结构计算方法[自然键轨道(NBO)、分子中的原子(AIM)、电子定位函数(ELF)、约化密度梯度(RDG)和Sign(λ 2(r))ρ(r)函数]对金属化苯的键合模式进行了全面分析。我们的研究结果表明,有几类新型金属化苯(单取代、二取代、三取代、四取代和五取代)为金属化苯开辟了新的化学领域,表明它们的化学性质在未来无论是实验上还是理论上都值得研究。图形摘要 通过密度泛函理论方法研究了完整系列的金属化苯。对金属化苯的结构、能量、键合、磁各向异性和光谱性质进行了全面分析。与原型芳香苯分子不同,预测金属化苯即使在其激发三重态下也是芳香性的。