Ilkhechi Alireza Haghiri, Mercero Jose M, Silanes Iñaki, Bolte Michael, Scheibitz Matthias, Lerner Hans-Wolfram, Ugalde Jesus M, Wagner Matthias
Institut für Anorganische Chemie, J.W. Goethe-Universität Frankfurt, Marie-Curie-Strasse 11, D-60439 Frankfurt (Main), Germany.
J Am Chem Soc. 2005 Aug 3;127(30):10656-66. doi: 10.1021/ja051544+.
A systematic study of cation-pi interactions between alkali metal ions and the cyclopentadienyl ring of ferrocene is presented. The alkali metal (Li+, Na+, K+, Rb+, Cs+) salts of the ditopic mono(pyrazol-1-yl)borate ligand [1,1'-fc(BMe2pz)2]2- crystallize from dimethoxyethane as multiple-decker sandwich complexes with the M+ ions bound to the pi faces of the ferrocene cyclopentadienyl rings in an eta5 manner (fc = (C5H4)2Fe; pz = pyrazolyl). X-ray crystallography of the lithium complex reveals discrete trimetallic entities with each lithium ion being coordinated by only one cyclopentadienyl ring. The sodium salt forms polyanionic zigzag chains where each Na+ ion bridges the cyclopentadienyl rings of two ferrocene moieties. Linear columns -CpR-Fe-CpR-M+-CpR-Fe-CpR-M+- (R = [-BMe2pz]-) are established by the K+, Rb+, and Cs+ derivatives in the solid state. According to DFT calculations, the binding enthalpies of M+-eta5(ferrocene) model complexes are about 20% higher as compared to the corresponding M+-eta6(benzene) aggregates when M+ = Li+ or Na+. For K+ and Rb+, the degree of cation-pi interaction with both aromatics is about the same. The binding sequence along the M+-eta5(ferrocene) series follows a classical electrostatic trend with the smaller ions being more tightly bound.
本文对碱金属离子与二茂铁环戊二烯基环之间的阳离子-π相互作用进行了系统研究。双齿单(吡唑-1-基)硼酸酯配体[1,1'-fc(BMe2pz)2]2-的碱金属(Li+、Na+、K+、Rb+、Cs+)盐从二甲氧基乙烷中结晶出来,形成多层夹心配合物,其中M+离子以η5方式与二茂铁环戊二烯基环的π面结合(fc = (C5H4)2Fe;pz = 吡唑基)。锂配合物的X射线晶体学研究表明,其为离散的三金属实体,每个锂离子仅由一个环戊二烯基环配位。钠盐形成多阴离子锯齿链,其中每个Na+离子桥连两个二茂铁部分的环戊二烯基环。固态下,K+、Rb+和Cs+衍生物形成线性柱-CpR-Fe-CpR-M+-CpR-Fe-CpR-M+-(R = [-BMe2pz]-)。根据密度泛函理论计算,当M+ = Li+或Na+时,M+-η5(二茂铁)模型配合物的结合焓比相应的M+-η6(苯)聚集体高约20%。对于K+和Rb+,与两种芳烃的阳离子-π相互作用程度大致相同。沿着M+-η5(二茂铁)系列的结合顺序遵循经典的静电趋势,较小的离子结合更紧密。