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Redox Couple Involving NOx in Aerobic Pd-Catalyzed Oxidation of sp3CH Bonds: Direct Evidence for PdNO3/NO2 Interactions Involved in Oxidation and Reductive Elimination

机译:涉及NOx的氧化还原夫妇在有氧PD催化的SP3CHCH键的氧化:PDNO3 / NO2相互作用的直接证据参与氧化和还原消除

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摘要

NaNO3 is used in oxidative Pd-catalyzed processes as a complementary co-catalyst to common oxidants, e.g., CuII salts, in C−H bond activation and Wacker oxidation processes. NaNO3 and NaNO2 (with air or O2) assist the sp3-C−H bond acetoxylation of substrates bearing an Ndirecting group. It has been proposed previously that a redox couple is operative. The role played by NOx anions is examined in this investigation. Evidence for an NOx anion interaction at PdII is presented. Palladacyclic complexes containing NOx anions are competent catalysts for acetoxylation of 8-methylquinoline, with and without exogenous NaNO3. The oxidation of 8-methylquinoline to the corresponding carboxylic acid has also been noted at PdII. 18O-Labeling studies indicate that oxygen derived from nitrate appears in the acetoxylation product, the transfer of which can only occur by interaction of 18O at Pd with a coordinating-acetate ligand. Nitrated organic intermediates are formed under catalytic conditions, which are converted to acetoxylation products, a process that occurs with(50 °C) and without Pd (110 °C). A catalytically competent palladacyclic dimer intermediate has been identified. Head-space analysis measurements show that NO and NO2 gases are formed within minutes on heating catalytic mixtures to 110 °C from room temperature. Measurements by in situ infrared spectroscopy show that N2O is formed in sp3-C−H acetoxylation reactions at 80 °C. Studies confirm that cyclopalladated NO2 complexes are rapidly oxidized to the corresponding NO3 adducts on exposure to NO2(g). The investigation shows that NOx anions act as participating ligands at PdII in aerobic sp3-C−H bond acetoxylation processes and are involved in redox processes.
机译:纳米3用于氧化PD催化方法,作为互补助催化剂,例如C-H键活化和涂料氧化过程中的常见氧化剂,例如Cuii盐。纳米3和纳米2(空气或o2)辅助含有Ndirectining组的底物的SP3-C-H键乙酰氧基化。以前提出了氧化还原夫妇是手术的。在这次调查中审查了NOX阴离子所扮演的作用。提出了PDII NOx阴离子相互作用的证据。含有NOx阴离子的钯氰基复合物是8-甲基喹啉的乙酰氧基化,具有和无外纳米3的能量催化剂。在PDII下还注意到了8-甲基喹啉的氧化在相应的羧酸。 18O-标记研究表明,衍生自硝酸盐的氧气出现在乙酰氧基化产物中,其转移只能通过用邻乙酸配体在Pd的18O中的相互作用而发生。在催化条件下形成硝化有机中间体,该催化条件转化为乙酰氧基化产物,该方法用(50℃)和没有Pd(110℃)。已经鉴定了催化态钯钯二聚体中间体。头空间分析测量表明,在将催化混合物到110℃的几分钟内没有形成NO和NO 2气体。通过原位红外光谱测量表明,N2O在80℃下在SP3-C-H乙酰氧基化反应中形成。研究证实,环保化的NO2复合物在暴露于NO 2(G)上的相应NO 3加合物中迅速氧化。该研究表明,NOx阴离子作为PDII的参与配体在有氧SP3-C-H键乙酰氧基化方法中,并参与氧化还原方法。

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