Department of Physics, Virginia Commonwealth University , Richmond, Virginia, United States.
J Am Chem Soc. 2017 Feb 8;139(5):1871-1877. doi: 10.1021/jacs.6b09416. Epub 2017 Jan 26.
Clusters with filled electronic shells and a large gap between the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO) are generally energetically and chemically stable. Enabling clusters to become electron donors with low ionization energies or electron acceptors with high electron affinities usually requires changing the valence electron count. Here we demonstrate that a metal cluster may be transformed from an electron donor to an acceptor by exchanging ligands while the neutral form of the clusters has closed electronic shells. Our studies on CoTe(PEt)(CO) (m + n = 6) clusters show that CoTe(PEt) has a closed electronic shell and a low ionization energy of 4.74 eV, and the successive replacement of PEt by CO ligands ends with CoTe(CO) exhibiting halogen-like behavior. Both the low ionization energy CoTe(PEt) and high electron affinity CoTe(CO) have closed electronic shells marked by high HOMO-LUMO gaps of 1.24 and 1.39 eV, respectively. Further, the clusters with an even number of ligands favor a symmetrical placement of ligands around the metal core.
具有满壳电子和最高占据分子轨道 (HOMO) 与最低未占据分子轨道 (LUMO) 之间大间隙的团簇通常在能量和化学上是稳定的。使团簇成为具有低电离能的电子供体或具有高电子亲合能的电子受体通常需要改变价电子数。在这里,我们证明通过交换配体,金属团簇可以从电子供体转变为受体,而团簇的中性形式具有满壳电子。我们对 CoTe(PEt)(CO)(m + n = 6)团簇的研究表明,CoTe(PEt)具有满壳电子和低的电离能 4.74 eV,并且连续用 CO 配体取代 PEt 以 CoTe(CO) 结束,表现出类似卤素的行为。具有低电离能的 CoTe(PEt)和高电子亲合能的 CoTe(CO)都具有满壳电子,HOMO-LUMO 间隙分别高达 1.24 和 1.39 eV。此外,具有偶数配体的团簇有利于配体在金属核周围的对称排列。