Li Wan-Lu, Lu Jun-Bo, Zhao Lili, Ponec Robert, Cooper David L, Li Jun, Frenking Gernot
Department of Chemistry and Key Laboratory of Organic Optoelectronics & Molecular Engineering of Ministry of Education , Tsinghua University , Beijing 100084 , China.
Institute of Advanced Synthesis, School of Chemistry and Molecular Engineering, Jiangsu National Synergetic Innovation Center for Advanced Materials , Nanjing Tech University , Nanjing 211816 , China.
J Phys Chem A. 2018 Mar 15;122(10):2816-2822. doi: 10.1021/acs.jpca.8b01335. Epub 2018 Mar 5.
Quantum chemical calculations using ab initio methods at the CCSD(T) level and density functional theory have been carried out for the title molecules. The electronic structures of the molecules were analyzed with a variety of charge and energy decomposition methods. The equilibrium geometries of the MO rhombic clusters exhibit very short distances between the transannular metal atoms M = Be, Mg, Ca. The calculated distances are close to standard values between double and triple bonds, but there are no chemical M-M bonds. The metal atoms M carry large positive partial charges, which are even bigger than in diatomic MO. The valence electrons of M are essentially shifted toward oxygen in MO, which makes it possible that there is practically no electronic charge in the region between the metal atoms. The bond dissociation energies for fragmentation of MO into two metal oxides MO are very large. The metal-oxide bonds in the rhombic clusters are shorter and stronger than in diatomic MO. A detailed analysis of the electronic structure suggests that there is no significant direct M-M interaction in the MO rhombic clusters, albeit weak three-center M-O-M bonding.
已使用CCSD(T)水平的从头算方法和密度泛函理论对标题分子进行了量子化学计算。用各种电荷和能量分解方法分析了分子的电子结构。MO菱形簇的平衡几何结构显示,跨环金属原子M = Be、Mg、Ca之间的距离非常短。计算出的距离接近双键和三键之间的标准值,但不存在化学M-M键。金属原子M带有很大的正部分电荷,甚至比双原子MO中的电荷还要大。M的价电子在MO中基本上向氧转移,这使得金属原子之间的区域实际上几乎没有电子电荷。MO分解为两种金属氧化物MO的键解离能非常大。菱形簇中的金属-氧化物键比双原子MO中的键更短更强。对电子结构的详细分析表明,尽管存在弱的三中心M-O-M键,但在MO菱形簇中不存在显著的直接M-M相互作用。