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Discovery and Development of Organic Super-Electron-Donors

机译:有机超电子捐赠者的发现与发展

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Based on simple ideas of electron-rich alkenes, exemplified by tetrakis(dimethylamino)ethene, TDAE, and on additional driving force associated with aromatization, families of very powerful neutral organic super-electron-donors (SEDs) have been developed. In the ground state, they carry out metal-free reductions of a range of functional groups. Iodoarenes are reduced either to aryl radicals or, with stronger donors, to aryl anions. Reduction to aryl radicals allows the initiation of very efficient transition-metal-free coupling of haloarenes to arenes. The donors also reduce alkyl halides, arenesulfonamides, triflates, and triflamdes, Weinreb amides, and acyloin derivatives. Under photoactivation at 365 nm, they are even more powerful and reductively cleave aryl chlorides. They reduce unactivated benzenes to the corresponding radical anions and display original selectivities in preferentially reducing benzenes over malonates or cyanoacetates. Additionally, they reductively cleave ArC-X, ArX-C (X = N or O) and ArC-C bonds, provided that the two resulting fragments are somewhat stabilized.
机译:基于富含电子的烯烃(以四(二甲基氨基)乙烯,TDAE为例)的简单思想,以及与芳构化相关的其他驱动力,已经开发了非常强大的中性有机超电子给体(SED)系列。在基态下,它们可进行一系列官能团的无金属还原。碘代芳烃被还原为芳基自由基,或以更强的供体还原为芳基阴离子。还原成芳基可以引发卤代芳烃与芳烃的非常有效的无过渡金属的偶联。供体还还原了卤代烷,芳烃磺酰胺,三氟甲磺酸酯和三芳烃,Weinreb酰胺和酰胆碱衍生物。在365 nm的光活化下,它们甚至更强大并且可以还原性裂解芳基氯化物。它们将未活化的苯还原为相应的自由基阴离子,并显示出比丙二酸酯或氰基乙酸酯优先还原苯的原始选择性。此外,只要两个生成的片段在一定程度上稳定下来,它们就会还原性裂解ArC-X,ArX-C(X = N或O)和ArC-C键。

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