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首页> 外文期刊>Angewandte Chemie >Alkali Metal Carbenoids: A Case of Higher Stability of the Heavier Congeners
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Alkali Metal Carbenoids: A Case of Higher Stability of the Heavier Congeners

机译:碱金属类胡萝卜素:较重同类物更高的稳定性

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摘要

As a result of the increased polarity of the metal-carbon bond when going down the group of the periodic table, the heavier alkali metal organyl compounds are generally more reactive and less stable than their lithium congeners. We now report a reverse trend for alkali metal carbenoids. Simple substitution of lithium by the heavier metals (Na, K) results in a significant stabilization of these usually highly reactive compounds. This allows their isolation and handling at room temperature and the first structure elucidation of sodium and potassium carbenoids. The control of stability was used to control reactivity and selectivity. Hence, the Na and K carbenoids act as selective carbene-transfer reagents, whereas the more labile lithium systems give rise to product mixtures. Additional fine tuning of the M-C interaction by means of crown ether addition further allows for control of the stability and reactivity.
机译:当沿着周期表的基团下降时,由于金属-碳键的极性增加,较重的碱金属有机基化合物通常比其锂同类物具有更高的反应性和稳定性。现在,我们报告碱金属类胡萝卜素的反向趋势。用重金属(Na,K)简单地取代锂会导致这些通常具有高反应性的化合物的显着稳定。这允许它们在室温下隔离和处理,并阐明钠和钾类胡萝卜素的第一结构。稳定性的控制用于控制反应性和选择性。因此,Na和K卡宾充当选择性碳烯 - 转移试剂,而更不稳定锂系统产生产物的混合物。通过冠醚的添加对M-C相互作用的额外的微调进一步允许控制稳定性和反应性。

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