Ienco Andrea, Ruffo Francesco, Manca Gabriele
Istituto di Chimica dei Composti Organometallici, Consiglio Nazionale delle Ricerche, Via Madonna del Piano 10, 50019, Sesto Fiorentino, Firenze, Italy.
Dipartimento di Scienze Chimiche, Università degli Studi di Napoli Federico II, Complesso Universitario di Monte Sant'Angelo, via Cintia 21, Napoli, Italy.
Chemistry. 2023 Oct 23;29(59):e202301669. doi: 10.1002/chem.202301669. Epub 2023 Sep 18.
Platinum complexes are ubiquitous in chemistry and largely used as catalysts or as precursors in drug chemistry, thus a deep knowledge of their electronic properties may help in planning new synthetic strategies or exploring new potential applications. Herein, the electronic structure of many octahedral platinum complexes is drastically revised especially when they feature electronegative elements such as halogens and chalcogens. The investigation revealed that in most cases the five d platinum orbitals are invariably full, thus the empty antibonding orbitals, usually localized on the metal, are mainly centered on the ligands, suggesting a questionable assignment of formal oxidation state IV. The analysis supports the occurrence of the inverted ligand field theory in all cases with the only exceptions of the Pt-F and Pt-O bonding. The trends for the molecular complexes are mirrored also by the density of states plots of extended structures featuring octahedral platinum moieties in association with chalcogens atoms. Finally, the oxidative addition of a Se-Cl linkage to a square platinum complex to achieve an octahedral moiety has been revised in the framework of the inverted ligand field.
铂配合物在化学领域广泛存在,在药物化学中主要用作催化剂或前体,因此深入了解其电子性质有助于规划新的合成策略或探索新的潜在应用。本文中,许多八面体铂配合物的电子结构被大幅修正,尤其是当它们含有卤素和硫族元素等电负性元素时。研究表明,在大多数情况下,铂的五个d轨道总是满的,因此通常位于金属上的空反键轨道主要集中在配体上,这表明形式氧化态IV的归属存在疑问。分析支持在所有情况下(Pt-F和Pt-O键合除外)都存在反位配体场理论。分子配合物的趋势也反映在具有八面体铂部分与硫族原子结合的扩展结构的态密度图中。最后,在反位配体场的框架下,对硒-氯键与方形铂配合物的氧化加成以形成八面体部分进行了修正。