Recent advances in azaborine chemistry.

Recent advances in azaborine chemistry.
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DOI:
10.1002/anie.201200063
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发表时间:
2012-06-18
影响因子:
16.6
通讯作者:
Liu, Shih-Yuan
Liu, Shih-Yuan
中科院分区:
化学1区
文献类型:
--
作者:
Campbell, Patrick G.;Marwitz, Adam J. V.;Liu, Shih-Yuan

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有机硼化合物的化学主要是在合成有机化学中作为强有力的试剂使用。最近,硼作为功能性目标结构的一部分的掺入已经成为产生有机化合物多样性的有用方式。一种常用的策略是用其等电子BN单元代替CC单元。特别是无处不在的芳烃基序的BN/CC电子等排性在过去十年中经历了复兴。1,2-二氢-1,2-氮杂硼杂环家族的母体分子现已分离出来。新的单环和多环BN杂环已被合成,在生物医学和材料科学应用的潜在用途。本文综述了Dewar在50年前首次合成的单环1,2-二氢-1,2-氮杂硼杂环化合物,并讨论了含碳(C)-硼(B)-氮(N)杂环化合物的合成和表征的最新进展。
The chemistry of organoboron compounds has been primarily dominated by their use as powerful reagents in synthetic organic chemistry. Recently, the incorporation of boron as part of a functional target structure has emerged as a useful way to generate diversity in organic compounds. A commonly applied strategy is the replacement of a CC unit with its isoelectronic BN unit. In particular, the BN/CC isosterism of the ubiquitous arene motif has undergone a renaissance in the past decade. The parent molecule of the 1,2-dihydro-1,2-azaborine family has now been isolated. New mono- and polycyclic BN heterocycles have been synthesized for potential use in biomedical and materials science applications. This review is a tribute to Dewar's first synthesis of a monocyclic 1,2-dihydro-1,2-azaborine 50 years ago and discusses recent advances in the synthesis and characterization of carbon(C)-boron(B)-nitrogen(N)-containing heterocycles.
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