Kosińska Aneta, Jamroz Daria, Rybarczyk-Pirek Agnieszka J, Wojtulewski Sławomir, Palusiak Marcin, Zakrzewski Janusz, Rudolf Bogna
University of Lodz, Faculty of Chemistry, Department of Organic Chemistry, Tamka 12, 91-403 Lodz, Poland.
University of Lodz, Faculty of Chemistry, Department of Physical Chemistry, Pomorska 163/165, 90-236 Lodz, Poland.
Dalton Trans. 2024 Jun 10;53(23):9732-9740. doi: 10.1039/d4dt00416g.
We have found that amines significantly accelerate iodide substitution in CpFe(CO)I (1) (Cp = -cyclopentadienyl) with phosphines and allow the synthesis of new complexes that are not available through reactions carried out without an amine. The reaction of equimolar amounts of 1 and triphenylphosphine in toluene containing DIPA afforded [CpFe(CO)PPh]I within 5 min at room temperature in 72% yield (90% after 24 h). DIPA and pyrrolidine gave the highest yields of the tested amines. We performed a similar reaction using model bisphosphines 1,3-bis(diphenylphosphino)ethane (dppe) and 1,1'-bis(diphenylphosphino)ferrocene (dppf). The products depended on the reagent ratio and bore the CpFe(CO) moiety coordinated to one or two phosphine phosphorus atoms. Chelates [CpFe(CO)(dppe)]I (4) and [CpFe(CO)(dppe)]2I (5) were formed in 72% and 98% yield, respectively. We also performed the DIPA-catalyzed reaction of 1 with triethyl phosphite and obtained the product of an Michaelis-Arbuzov-like rearrangement, CpFe(CO)[P(O)(OCHCH)] (11). All complexes were characterized with spectroscopic analysis by NMR, FT-IR, and ESI-MS, and by XRD for three complexes. To clarify the reaction mechanism, we performed theoretical calculations of the intermolecular interactions between 1 and amine molecules. We propose two possible reaction mechanisms to explain the formation of products.
我们发现,胺能显著加速CpFe(CO)I (1)(Cp = η⁵-环戊二烯基)与膦之间的碘取代反应,并能合成一些通过无胺参与反应无法得到的新型配合物。等摩尔量的1与三苯基膦在含有二异丙胺(DIPA)的甲苯中反应,在室温下5分钟内即可得到[CpFe(CO)PPh₃]I,产率为72%(24小时后为90%)。在所测试的胺中,DIPA和吡咯烷的产率最高。我们使用模型双膦1,3-双(二苯基膦基)乙烷(dppe)和1,1'-双(二苯基膦基)二茂铁(dppf)进行了类似反应。产物取决于试剂比例,且含有与一个或两个膦磷原子配位的CpFe(CO)部分。螯合物[CpFe(CO)(dppe)]I (4)和[CpFe(CO)(dppe)]₂I (5)的产率分别为72%和98%。我们还进行了DIPA催化的1与亚磷酸三乙酯的反应,得到了类似迈克尔is - 阿尔布佐夫重排的产物CpFe(CO)[P(O)(OCH₂CH₃)₂] (11)。所有配合物均通过NMR、FT-IR和ESI-MS光谱分析以及三种配合物的XRD进行了表征。为了阐明反应机理,我们对1与胺分子之间的分子间相互作用进行了理论计算。我们提出了两种可能的反应机理来解释产物的形成。