Institute of Advanced Synthesis, School of Chemistry and Molecular Engineering, Jiangsu National Synergetic Innovation Center for Advanced Materials, Nanjing Tech University, Nanjing 211816, China.
Dalton Trans. 2020 Nov 3;49(42):14815-14825. doi: 10.1039/d0dt02773a.
Density functional theory calculations at the M06-D3/def2-TZVPPD level of the group-13 anion complexes EFe(CO)3- (E = B-Tl) and the isoelectronic neutral and charged boron adducts BTM(CO)3q (TMq = Fe-, Ru-, Os-, Co, Rh, Ir, Ni+, Pd+, Pt+) give tetrahedral (C3v) geometries in the 1A1 electronic ground state as equilibrium structures. The analysis of the bonding situation with the energy decomposition analysis in combination with natural orbital for chemical valence method suggests that the E-TM(CO)3q bonds possess four bonding components: (a) one strong electron-sharing σ bond E-TM(CO)3q; (b) two π backdonations E⇇TM(CO)3q and (c) one weak σ donation E→TM(CO)3q. The relative strength of the four bonding components depends on the charge of the system, the transition metal TM and the group-13 atom E. The σ donation E→TM(CO)3q is in all systems rather weak while the associated charge migration is not negligible. A similar situation of the bonding of terminal group-13 atoms Ga and In is found in Ga-TM(GaCp)4+ and E-Pt(PMe3)3+ (TM = Ni, Pd, Pt; E = Ga, In), which are model compounds for the stable complexes GaTM(GaCp*)4+ (TM = Ni, Pt) and InPt(PPh3)3+. The quadruple bonds E→TML2 are hybrids of electron-sharing and dative bonds.
采用 M06-D3/def2-TZVPPD 理论水平对 Group-13 阴离子配合物 EFe(CO)3-(E=B-Tl)和等电子中性及带电硼加合物 BTM(CO)3q(TMq=Fe-,Ru-,Os-,Co,Rh,Ir,Ni+,Pd+,Pt+)的密度泛函理论计算表明,在 1A1 电子基态下,这些配合物具有四面体(C3v)的几何构型,为平衡结构。通过能量分解分析与自然轨道价键法相结合的成键情况分析表明,E-TM(CO)3q 键具有四个成键成分:(a)一个强的电子共享σ键 E-TM(CO)3q;(b)两个π反馈 E⇇TM(CO)3q 和(c)一个弱的σ供体 E→TM(CO)3q。这四个成键成分的相对强度取决于体系的电荷、过渡金属 TM 和 Group-13 原子 E。在所有体系中,σ供体 E→TM(CO)3q 都相当弱,而相关的电荷迁移则不可忽略。在 Ga-TM(GaCp)4+和 E-Pt(PMe3)3+(TM=Ni,Pd,Pt;E=Ga,In)等末端 Group-13 原子 Ga 和 In 的键合中也发现了类似的情况,这些化合物是稳定配合物 GaTM(GaCp*)4+(TM=Ni,Pt)和 InPt(PPh3)3+的模型化合物。四重键 E→TML2 是电子共享和配位键的混合体。