Podchorodecka Pamela, Dziuk Błażej, Junga Robert, Szostak Roman, Szostak Michal, Bisz Elwira
Department of Chemistry, Opole University, 48 Oleska Street, Opole 45-052, Poland.
Department of Chemistry, University of Science and Technology, Norwida 4/6, Wroclaw 50-373, Poland.
Dalton Trans. 2024 Sep 18;53(36):14975-14985. doi: 10.1039/d4dt01468e.
N-Heterocyclic carbenes (NHCs) represent a pivotal class of ligands in coordination chemistry owing to their unique electronic properties. In particular, hemilabile N-heterocyclic carbenes have garnered significant attention over the past decade due to their capacity to transiently coordinate to metals and open coordination sites. However, hemilabile NHC ligands have been predominantly limited to N, O and P donors, while NHC ligands bearing versatile S-donors have been severely underdeveloped. Herein, we report wingtip-flexible, sterically hindered NHC ligands that feature N,C/S,C-chelating thiazole donors in combination with the powerful IPr* (IPr* = (2,6-bis(diphenylmethyl)-4-methylphenyl)imidazol-2-ylidene) scaffold. These ligands are prepared using a highly modular SAr arylation of thiazole derivatives. Full structural and electronic characterization is reported. The ligands feature a high barrier to rotation around the -thiazole axis (10 kcal mol). The ligands are evaluated for their steric, electron-donating and π-accepting properties as well as coordination chemistry to Ag(I), Pd(II), Rh(I) and Se. Preliminary studies on Ag, Pd and Rh catalysis are presented. The efficiency of the approach is highlighted by preparing a library of unsymmetrical imidazolium precursors. The mono-IPr* wingtip provides a highly hindered yet sterically flexible environment adjusting to metal centers, while the -thiazolyl wingtip displays a fluxional behavior that interchanges from the hard/soft N,C to soft/soft S,C coordination. Considering the importance of hemilabile N-heterocyclic carbene ligands in metal stabilization in inorganic and organometallic chemistry, we expect that this class of ligands will be of broad interest.
由于其独特的电子性质,N-杂环卡宾(NHCs)在配位化学中是一类关键的配体。特别是,半不稳定的N-杂环卡宾在过去十年中因其能够与金属瞬时配位并打开配位位点的能力而备受关注。然而,半不稳定的NHC配体主要限于N、O和P供体,而带有通用S供体的NHC配体则严重未得到充分发展。在此,我们报告了具有翼尖柔性、空间位阻的NHC配体,其具有N,C/S,C螯合噻唑供体,并与强大的IPr*(IPr* = (2,6-双(二苯基甲基)-4-甲基苯基)咪唑-2-亚基)骨架相结合。这些配体是通过噻唑衍生物的高度模块化SAr芳基化制备的。报告了完整的结构和电子表征。这些配体围绕噻唑轴的旋转具有高势垒(10千卡/摩尔)。评估了这些配体的空间、给电子和π-接受性质以及与Ag(I)、Pd(II)、Rh(I)和Se的配位化学。展示了对Ag、Pd和Rh催化的初步研究。通过制备不对称咪唑鎓前体库突出了该方法的效率。单-IPr*翼尖提供了一个高度受阻但空间灵活的环境以适应金属中心,而噻唑基翼尖表现出从硬/软N,C到软/软S,C配位的互换的动态行为。考虑到半不稳定的N-杂环卡宾配体在无机和有机金属化学中金属稳定化的重要性,我们预计这类配体将具有广泛的兴趣。