首页> 美国卫生研究院文献>Chemical Science >Mechanochemistry allows carrying out sensitive organometallic reactions in air: glove-box-and-Schlenk-line-free synthesis of oxidative addition complexes from aryl halides and palladium(0)
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Mechanochemistry allows carrying out sensitive organometallic reactions in air: glove-box-and-Schlenk-line-free synthesis of oxidative addition complexes from aryl halides and palladium(0)

机译:机械化学允许在空气中进行敏感的有机金属反应:由芳基卤化物和钯(0)合成的无手套箱和席伦克线的氧化加成络合物

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摘要

Organic reactions that employ moisture- and/or oxygen-sensitive reagents or intermediates usually involve the use of glove-box or Schlenk-line techniques as well as dry and degassed solvents. Unfortunately, these requirements may greatly reduce the utility of the targeted organic molecules. Herein, we demonstrate that solvent-free mechanochemical synthetic techniques allow using highly oxygen-sensitive palladium(0) species in air for the stoichiometric oxidative addition of aryl halides. The low diffusion efficiency of gaseous oxygen in crystalline or amorphous solid-state reaction mixtures should be the main reason for the low impact of the presence of atmospheric oxygen on the sensitive oxidative addition reactions under the applied conditions. This study thus illustrates the outstanding potential of mechanochemistry to serve as an operationally simple, glove-box-and-Schlenk-line-free synthetic route to organometallic compounds and other valuable synthetic targets, even when sensitive reagents or intermediates are involved.
机译:使用对湿气和/或氧气敏感的试剂或中间体的有机反应通常包括使用手套箱或Schlenk-line技术以及干燥和脱气的溶剂。不幸的是,这些要求可能大大降低目标有机分子的效用。在这里,我们证明了无溶剂的机械化学合成技术允许在空气中使用高度氧气敏感的钯(0)物种进行化学计量的芳基卤化物氧化加成。气态氧在晶体或非晶态固态反应混合物中的低扩散效率应该是在应用条件下大气氧的存在对敏感的氧化加成反应影响较小的主要原因。因此,这项研究说明了机械化学的巨大潜力,即使涉及敏感的试剂或中间体,也可以作为操作简单,无需手套箱和斯克伦克线的合成途径来有机金属化合物和其他有价值的合成靶标。

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