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Exploring the performance of nanostructured reagents with organic-group-defined morphology in cross-coupling reaction

机译:探索具有有机基团定义形态的纳米结构试剂在交叉偶联反应中的性能

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摘要

The great impact of the nanoscale organization of reactive species on their performance in chemical transformations creates the possibility of fine-tuning of reaction parameters by modulating the nano-level properties. This methodology is extensively applied for the catalysts development whereas nanostructured reactants represent the practically unexplored area. Here we report the palladium- and copper-catalyzed cross-coupling reaction involving nano-structured nickel thiolate particles as reagents. On the basis of experimental findings we propose the cooperative effect of nano-level and molecular-level properties on their reactivity. The high degree of ordering, small particles size, and electron donating properties of the substituents favor the product formation. Reactant particles evolution in the reaction is visualized directly by dynamic liquid-phase electron microscopy including recording of video movies. Mechanism of the reaction in liquid phase is established using on-line mass spectrometry measurements. Together the findings provide new opportunities for organic chemical transformations design and for mechanistic studies.
机译:活性物质的纳米级组织对其在化学转化中的性能的巨大影响创造了通过调节纳米级性质来微调反应参数的可能性。该方法学广泛用于催化剂的开发,而纳米结构的反应物则代表了实际未开发的领域。在这里我们报告钯和铜催化的交叉偶联反应,其中涉及纳米结构的硫醇镍颗粒作为试剂。根据实验结果,我们提出了纳米级和分子级性质对其反应性的协同作用。取代基的高度有序性,小粒径和给电子性质有利于产物的形成。反应物颗粒在反应中的演化可通过动态液相电子显微镜直接观察,包括视频电影的录制。液相反应的机理是通过在线质谱测量确定的。这些发现共同为有机化学转化设计和机理研究提供了新的机会。

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