Li Ruiping, Barel Nitsan, Subramaniyan Vasudevan, Cohen Orit, Tibika Françoise, Tulchinsky Yuri
Institute of Chemistry, The Hebrew University of Jerusalem Jerusalem 9190401 Israel
Chem Sci. 2022 Mar 14;13(17):4770-4778. doi: 10.1039/d2sc00588c. eCollection 2022 May 4.
More than a century old, sulfonium cations are still intriguing species in the landscape of organic chemistry. On one hand they have found broad applications in organic synthesis and materials science, but on the other hand, while isoelectronic to the ubiquitous tertiary phosphine ligands, their own coordination chemistry has been neglected for the last three decades. Here we report the synthesis and full characterization of the first Rh(i) and Pt(ii) complexes of sulfonium. Moreover, for the first time, coordination of an aromatic sulfonium has been established. A thorough computational analysis of the exceptionally short S-Rh bonds obtained attests to the strongly π-accepting nature of sulfonium cations and places them among the best π-acceptor ligands available today. Our calculations also show that embedding within a pincer framework enhances their π-acidity even further. Therefore, in addition to the stability and modularity that these frameworks offer, our pincer complexes might open the way for sulfonium cations to become powerful tools in π-acid catalysis.
锍阳离子已有一个多世纪的历史,在有机化学领域仍然是引人关注的物种。一方面,它们在有机合成和材料科学中得到了广泛应用,但另一方面,尽管它们与无处不在的叔膦配体等电子,但在过去三十年里,它们自身的配位化学却一直被忽视。在此,我们报道了首例锍的Rh(i)和Pt(ii)配合物的合成及全面表征。此外,首次确定了芳基锍的配位情况。对所得到的异常短的S-Rh键进行的深入计算分析证明了锍阳离子具有很强的π-接受性质,并使其跻身于当今可用的最佳π-受体配体之列。我们的计算还表明,嵌入钳形框架会进一步增强它们的π-酸性。因此,除了这些框架所提供的稳定性和模块化之外,我们的钳形配合物可能为锍阳离子成为π-酸催化中的有力工具开辟道路。