Vidondo Javier, Urdániz Laura, Sanz Miguel Pablo J, Rodríguez Ricardo, Macías Ramón
Departamento de Química Inorgánica, Instituto de Síntesis Química y Catálisis Homogénea (ISQCH), Universidad de Zaragoza-CSIC, Zaragoza 50009, Spain.
Inorg Chem. 2024 Oct 21;63(42):19593-19606. doi: 10.1021/acs.inorgchem.4c02652. Epub 2024 Oct 8.
The reaction of the 11-vertex rhodathiaborane [8,8,8-(H)(PPh)-3-(NCH)--7,8-RhSBH] () with 1,2-bis(diphenylphosphine)benzene (dppbz) and ()-(-)-2,2'-bis(diphenylphosphino)-1,1'-binaphthyl (binap) affords [1,1-(η-dppbz)-3-(NCH)--1,2-RhSBH] () and [1,1-(η-binap)-3-(NCH)--1,2-RhSBH] (). These 11-vertex -rhodathiaborane chelates result from PPh ligand substitution at the rhodium center and a -to- structural cluster transformation driven by H loss. Treating compounds and with triflic acid (TfOH) leads to the formation of cationic clusters and . The hydrons bind to the polyhedral clusters, acquiring hydride character and providing chemical nonrigidity that manifests through metal vertex-to-thiaborane -rotations and concomitant hydron tautomerisms. The resulting cations react with hydrogen to form mixtures of hydrons, hydrogen, and hydridorhodathiaboranes in equilibrium. The reaction products are the result of heterolytic cleavage of the H-H bond, with full participation of the clusters and the addition of hydrogen atoms to the cages. In these reactions, there is a conversion of electrons and hydrons into hydrogen, and hydrogen into hydride ligands, demonstrating that these boron-based metal compounds act as electron reservoirs, capable of promoting multielectron processes.
11个顶点的铑硫硼烷[8,8,8-(H)(PPh)-3-(NCH)--7,8-RhSBH]()与1,2-双(二苯基膦)苯(dppbz)和()-(-)-2,2'-双(二苯基膦基)-1,1'-联萘(联萘酚)反应生成[1,1-(η-dppbz)-3-(NCH)--1,2-RhSBH]()和[1,1-(η-联萘酚)-3-(NCH)--1,2-RhSBH]()。这些11个顶点的 -铑硫硼烷螯合物是由于铑中心的PPh配体取代以及由氢损失驱动的 -到 -结构簇转变而产生的。用三氟甲磺酸(TfOH)处理化合物 和 会导致阳离子簇 和 的形成。氢离子与多面体簇结合,获得氢化物特征并提供化学非刚性,这通过金属顶点到硫硼烷的 -旋转和伴随的氢离子互变异构表现出来。所得阳离子与氢反应形成处于平衡状态的氢离子、氢和氢化铑硫硼烷的混合物。反应产物是H-H键异裂的结果,簇完全参与其中,并且氢原子加到笼上。在这些反应中,电子和氢离子转化为氢,氢转化为氢化物配体,表明这些硼基金属化合物充当电子库,能够促进多电子过程。