Ward Robert J, Del Rosal Iker, Kelley Steven P, Maron Laurent, Walensky Justin R
Department of Chemistry, University of Missouri Columbia MO 65211 USA
Universite de Toulouse, CNRS, INSA, UMR UMR 5215 LPCNO 135 Avenue de Ranguiel 31077 Toulouse France.
Chem Sci. 2023 Feb 6;14(8):2024-2032. doi: 10.1039/d2sc06375a. eCollection 2023 Feb 22.
The conversion of C1 feedstock molecules such as CO into commodity chemicals is a desirable, but challenging, endeavour. When the U(iii) complex, [(CMe)U(O-2,6- Bu-4-MeCH)], is exposed to 1 atm of CO, only coordination is observed by IR spectroscopy as well as X-ray crystallography, unveiling a rare structurally characterized f element carbonyl. However, using [(CMe)(MesO)U (THF)], Mes = 2,4,6-MeCH, reaction with CO forms the bridging ethynediolate species, [{(CMe)(MesO)U}(μ-OCCO)]. While ethynediolate complexes are known, their reactivity has not been reported in much detail to afford further functionalization. For example, addition of more CO to the ethynediolate complex with heating forms a ketene carboxylate, [{(CMe)(MesO)U}( : : -CO)], which can be further reacted with CO to yield a ketene dicarboxylate complex, [{(CMe)(MesO)U}( : : -CO)]. Since the ethynediolate showed reactivity with more CO, we explored its reactivity further. A [2 + 2] cycloaddition is observed with diphenylketene to yield [{(CMe)U}(OC(CPh)C([double bond, length as m-dash]O)CO)] with concomitant formation of [(CMe)U(OMes)]. Surprisingly, reaction with SO shows rare S-O bond cleavage to yield the unusual [(OCC(O)(SO)] bridging ligand between two U(iv) centres. All complexes have been characterized using spectroscopic and structural methods, and the reaction of the ethynediolate with CO to form the ketene carboxylate has been investigated computationally as well as the reaction with SO.
将一氧化碳等C1原料分子转化为商品化学品是一项令人向往但具有挑战性的工作。当U(iii)配合物[(CMe)U(O - 2,6 - Bu - 4 - MeCH)]暴露于1个大气压的CO中时,通过红外光谱和X射线晶体学仅观察到配位现象,揭示了一种罕见的具有结构表征的f元素羰基化合物。然而,使用[(CMe)(MesO)U(THF)](Mes = 2,4,6 - MeCH),与CO反应形成桥连乙炔二醇盐物种[{(CMe)(MesO)U}(μ - OCCO)]。虽然乙炔二醇盐配合物是已知的,但其反应性尚未有详细报道以实现进一步的官能化。例如,在加热条件下向乙炔二醇盐配合物中加入更多的CO会形成烯酮羧酸盐[{(CMe)(MesO)U}(:: - CO)],它可以进一步与CO反应生成烯酮二羧酸盐配合物[{(CMe)(MesO)U}(:: - CO)]。由于乙炔二醇盐显示出与更多CO的反应性,我们进一步探索了其反应性。观察到与二苯基乙烯酮发生[2 + 2]环加成反应,生成[{(CMe)U}(OC(CPh)C([双键,长度为m破折号]O)CO)],同时形成[(CMe)U(OMes)]。令人惊讶的是,与SO反应显示出罕见的S - O键断裂,在两个U(iv)中心之间生成不寻常的[(OCC(O)(SO)]桥连配体。所有配合物均已通过光谱和结构方法进行表征,并且对乙炔二醇盐与CO反应形成烯酮羧酸盐以及与SO的反应进行了计算研究。