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Synthesis, Structure, and Gas-Phase Fragmentation of Trinuclear Mo3S4 Clusters Bearing Aminophosphine Ligands: A Combined Experimental and Theoretical Study

机译:含氨基膦配体的三核mo3s4团簇的合成,结构和气相断裂:一项综合实验和理论研究

摘要

Aminophosphine [Mo3S4X3(edpp)3]+ cluster complexes, 1+ (X = Cl) and 2+ (X = Br) {edpp = (2-aminoethyl)diphenylphosphine} have been quantitatively prepared by treating the [Mo3S7X6]2– anion with the edpp ligand in a one-pot synthetic procedure. Alternatively, complexes 1+ and 2+ can be synthesized using polymeric {Mo3S7X4}n phases as metal precursors. Their crystal structures show the incomplete cubane-type Mo3S4 cluster core as well as the formation of a unique isomer in which the nitrogen atoms of the amino group and the halide atoms are located above the trimetallic plane. Gas-phase reactivity studies on complexes 1+ and 2+ show the subsequent elimination of neutral HX (X = Cl, Br) molecules under collision induced dissociation (CID) conditions. The fragmentation pattern of 1+ and 2+ in combination with gas-phase DFT calculations are contrary to the general ideas involving the hemilabile character of the aminophosphine ligands and give support to the formation of unsaturated molybdenum/imine Mo=NH species. On the basis of DFT calculations, two competitive mechanisms involving a proton transfer from the amino group to a halide ligand attached to the geminal or to the vicinal molybdenum center are proposed. The first mechanism, which is a proton transfer within the nitrogen and halogen atoms bound to the same metal atom, is energetically favored from a theoretical point of view.
机译:氨基膦[Mo3S4X3(edpp)3] +簇络合物1+(X = Cl)和2+(X = Br){edpp =(2-氨基乙基)二苯基膦}是通过处理[Mo3S7X6] 2-阴离子而定量制备的一锅合成程序中使用edpp配体。或者,可以使用聚合的{Mo 3 S 7 X 4} n相作为金属前体来合成配合物1+和2+。它们的晶体结构显示出不完全的古巴型Mo3S4团簇核,以及独特的异构体的形成,其中氨基的氮原子和卤化物原子位于三金属平面上方。配合物1+和2+的气相反应性研究表明,在碰撞诱导解离(CID)条件下,随后消除了中性HX(X = Cl,Br)分子。 1+和2+的断裂模式与气相DFT计算相结合,与涉及氨基膦配体半不稳定特征的一般思想相反,并为不饱和钼/亚胺Mo = NH物种的形成提供了支持。根据DFT计算,提出了两种竞争机制,涉及质子从氨基转移到与双子或邻位钼中心相连的卤化物配体上。从理论的观点来看,第一种机理是在能量上有利于质子在与相同金属原子键合的氮原子和卤素原子之间的转移。

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