Mas-Roselló Josep, Cope Christopher J, Tan Eric, Pinson Benjamin, Robinson Alan, Smejkal Tomas, Cramer Nicolai
Laboratory of Asymmetric Catalysis and Synthesis, Institute of Chemical Sciences and Engineering, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
Process Chemistry Research, Syngenta Crop Protection AG, Schaffhauserstrasse 101, 4332, Stein, AG, Switzerland.
Angew Chem Int Ed Engl. 2021 Jul 5;60(28):15524-15532. doi: 10.1002/anie.202103806. Epub 2021 Jun 7.
We found that cyclometalated cyclopentadienyl iridium(III) complexes are uniquely efficient catalysts in homogeneous hydrogenation of oximes to hydroxylamine products. A stable iridium C,N-chelation is crucial, with alkoxy-substituted aryl ketimine ligands providing the best catalytic performance. Several Ir-complexes were mapped by X-ray crystal analysis in order to collect steric parameters that might guide a rational design of even more active catalysts. A broad range of oximes and oxime ethers were activated with stoichiometric amounts of methanesulfonic acid and reduced at room temperature, remarkably without cleavage of the fragile N-O bond. The exquisite functional group compatibility of our hydrogenation system was further demonstrated by additive tests. Experimental mechanistic investigations support an ionic hydrogenation platform, and suggest a role for the Brønsted acid beyond a proton source. Our studies provide deep understanding of this novel acidic hydrogenation and may facilitate its improvement and application to other challenging substrates.
我们发现,环金属化环戊二烯基铱(III)配合物在肟均相氢化制备羟胺产物中是独特高效的催化剂。稳定的铱碳氮螯合至关重要,烷氧基取代的芳基亚胺酮配体具有最佳的催化性能。通过X射线晶体分析对几种铱配合物进行了测绘,以收集可能指导设计更具活性催化剂的空间参数。用化学计量的甲磺酸活化了多种肟和肟醚,并在室温下还原,值得注意的是,脆弱的N-O键未发生断裂。添加剂测试进一步证明了我们氢化体系出色的官能团兼容性。实验机理研究支持离子氢化平台,并表明布朗斯特酸的作用不仅仅是质子源。我们的研究为这种新型酸性氢化提供了深入理解,并可能有助于其改进以及应用于其他具有挑战性的底物。