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Comparative study on reducing aromatic aldehydes by using ammonia borane and lithium amidoborane as reducing reagents

机译:氨硼烷和氨基硼烷锂还原剂还原芳香醛的比较研究

摘要

Lithium amidoborane (LiNH2BH3) and ammonia borane (NH3BH3) reduce aromatic aldehydes in tetrahydrofuran (THF) through two different pathways. LiNH2BH3 only transfers hydridic hydrogen on boron to aldehydes through a hydroboration process to achieve lithium aminoborate; ammonia borane, on the other hand, transfers both protic and hydridic hydrogens on N and B, respectively, to aldehydes to directly achieve corresponding alcohols. Mechanistic investigations confirm that protic H(N) and hydridic H(B) of ammonia borane participate in the reduction, in which the dissociation of both B-H and N-H bonds is likely to be involved in the rate-determining step.
机译:酰胺基硼烷锂(LiNH2BH3)和氨硼烷(NH3BH3)通过两种不同的途径还原四氢呋喃(THF)中的芳香醛。 LiNH2BH3仅通过硼氢化过程将硼上的氢氢转化为醛,从而获得氨基硼酸锂。另一方面,氨硼烷将N和B上的质子氢和氢氢分别转移到醛中,直接得到相应的醇。机理研究证实,氨硼烷的质子性H(N)和氢化H(B)参与还原,其中B-H和N-H键的解离很可能参与速率确定步骤。

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